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1. 南海大型经济海藻数据库 2. 小紫金牛(Ardisia chinensis Benth)石油醚萃取部位的化学成分和抗病毒活性研究
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摘要
本文对南海大型经济海藻数据库的构建以及瑶药小紫金牛(Ardisia chinensis Benth)石油醚萃取部位的化学成分和抗病毒活性进行了初步的探讨。
     南海大型经济海藻数据库是在实地调查,收集和整理60余种大型经济海藻的研究资料和实验数据的基础上构建起来的,其前台查询网址为:http://course.jnu.edu.cn/sky/haizao/。数据库信息系统采用ASP+ACCESS设计,分为数据查询和后台管理两个模块。数据查询模块(即前台)主要包括首页、海藻概论、海藻资源、信息检索、海藻论坛、科研项目、相关网站等7项功能。其中海藻资源是整个数据库的核心部分,每种海藻的研究内容由化学成分、生物活性、营养成分、应用开发、参考文献等12个方面构成,其收录和研究的数据较完整、丰富。后台管理模块可对数据、图片进行录入、修改和删除等操作。该数据库系统属原创性的研究成果,是基于我校对南海大型经济海藻进行研究的基础上,建立起来的国内外首个数据库,对促进海藻的高值化综合利用具有特殊的作用和意义。
     本数据库提供了原始的实验研究数据:对南海海域数种海藻进行了营养成分分析及评价:
     Ⅰ.采用气相色谱—质谱联用(GC-MS)测定了南海海域16种海藻的脂肪酸组成及其含量,结果表明:海藻中所含棕榈酸(C_(16:0))的相对含量较高;多数红藻和褐藻中含有十五碳酸和十七碳酸这两种陆生植物中罕见的奇数碳脂肪酸;褐藻和绿藻中含有较多的多烯不饱和脂肪酸,其中以褐藻铁钉菜中的亚油酸(C_(18:2))和花生四烯酸(C_(20:4))含量最高,分别为22.35%和10.76%,绿藻刺松藻的亚麻酸(C_(18:3))含量较高,为16.26%。
     Ⅱ.采用全谱直读等离子体发射光谱仪测定了19种矿物质无机元素的含量,其中常量元素Ca、K、Mg、Na,微量元素Fe、Mn、Zn等7种元素的相对含量较高,而在Cd、Pb、As3种毒性元素测定中,以As的含量最高;
     Ⅲ.采用酸水解法测定了17种氨基酸的组成和含量,14种海藻的氨基酸总量范围为4.40%~21.75%,必需氨基酸的含量占总量的32.74%~49.21%。相对含量较多的氨基酸是天门冬氨酸、谷氨酸、丙氨酸、亮氨酸及缬氨酸,而半胱氨酸和组氨酸的含量则相对较少;
     Ⅳ.采用索氏抽提法、酸性洗涤剂法、KDN-08A凯氏定氮仪、常压干燥法、560℃马弗炉中煅烧法及差减法测定了脂肪、纤维、蛋白质、水分、灰分及碳水化合物的含量,其含量分别为:0.09%~5.83%、1.70%~43.52%、4.08%~23.70%、5.48%~19.72%、5.02%~35.10%和6.68%~56.21%。
     Ⅴ.对海藻的乙醇提取物进行了红外光谱分析,其红外图谱具有较高的可重复性和可比性,可以作为传统外部形态鉴别方法的重要补充。
     研究结果表明:多数海藻含有丰富的脂肪酸和氨基酸,以及人体必需的矿物质元素、纤维素和蛋白质等,为海藻食品的开发,提供了营养评价的参考依据。
     采用细胞病变抑制法和四甲基偶氮唑盐比色法,测定了数种海藻的乙醇提取物和水提取物的体外抗柯萨奇病毒B组3型(Cox B3)和单纯疱疹病毒1型(HSV-1)的活性。实验结果表明,各样品对Cox B3病毒的抑制作用普遍强于对HSV-1病毒的作用;其中,海藻乙醇提取物对HeLa、Vero细胞具有较强的细胞毒性,但海蒿子的乙醇提取物对Cox B3和HSV-1病毒具有较强的抑制活性;海藻水提取物则呈现不同程度的抗Cox B3和HSV-1病毒活性,其中异枝麒麟菜和总状蕨藻盾叶变种的水提物抗Cox B3和HSV-1病毒活性均较强。由此证明,海藻多糖是海藻抗病毒活性的主要成分。在抗病毒活性实验的基础上,对数种海藻的抗肿瘤活性进行了初步探讨,选择不同极性的溶剂进行提取,比较不同溶剂下海藻提取物的抗肿瘤活性效果。
     对小紫金牛石油醚萃取部位进行了分离,采用光谱分析和文献对照的方法对分离所得的化合物结构进行确定。从中分离和鉴定出2组甾醇混合物。它们是:①.胆甾—5,23-二烯-甲醇,3-羟基-α-甲基-3β-醇、(3β,5α)-胆甾-8,24-二烯-3β-醇、豆甾-5,22-二烯-3β-醇(豆甾醇);②.3β-羊毛甾-8,24-二烯-3β-醇、β-香树脂醇、3β-羊毛甾-7,9(11),24-三烯-3β-醇。体外抗病毒的活性测定表明,这两组甾醇混合物对Cox B3和HSV-1病毒无明显的抑制作用。
The construction of databases in large economic seaweeds from the South ChinaSea and the chemical constituents and antiviral activities of petroleun ether fractionfrom Ardisia chinensis Benth were studied.
     The databases of large economic seaweeds from the South China Sea wereconstructed by field investigation, collection and arrangement more than 60 seaweedsresearch data, the web address was: http://course.jnu.edu.cn/sky/haizao/. Databaseswas designed by ASP+ACCESS, the database query of databases was included ofhome, summary, resource, information search, BBS, scientific research project andcorrelated links. In the seven contents, the seaweeds resource was the key in thewhole databases, which contained twelve aspects, such as chemical constituents,bioactivities, nutrient components, application development and reference and so on.The research data of was integrated, abundant. The background management ofdatabases was entered, modified and deleted data or photos. The databases were firstbuilt in seaweeds at home and abroad, which were based on the research works for theseaweeds, it had special function and meaning for promoting high value of theseaweeds.
     The database provided original experiment data: nutrient components of anumber of seaweeds from South China Sea were analyzed and evaluated.
     Ⅰ. Fatty acids compositions and contents of sixteen seaweeds were determinedby GC-MS. The result indicated that the content of C_(16:0) was higher than othersaturated fatty acids; the most of Rhodophyta and Phaeophyta were contained C_(15:0)and C_(17:0), the two kinds odd number fatty acids were seldom seen on the terrestrialplants; Phaeophyta and Chlorophyta were rich in polyunsaturated fatty acids (PUFAs),among them, the content of C_(18:2) and C_(20:4) of Ishige okamurae was the highest, being22.35% and 10.76%, Codium fragile contained high level of C_(18:3), the content was16.26%.
     Ⅱ. Nineteen elements in seaweeds were determined by inductively coupledplasma atomic emission spectrometry (ICP-AES). The relative contents of constantelements Mg, Ca, P, K and trace elements Fe、Mn、Zn were higher than the other ones.In these three poisonous elements, the content of As was higher than Cd, Pb.
     Ⅲ. Seventeen kinds of amino acid compositions and contents were determinedby acid hydrolyzed. The content of amino acid was about 4.40%~21.75%, and thecontent of essential amino acid (EAA) occupied 32.74%~49.21% of the total aminoacid (TAA). The higher content was contained Asparic acid, Glutamic acid, Alanine,Leucine and Valine; and the poorer content was contained Cysteine and Histidine.
     Ⅳ. Fat was determined by Soxhlet extraction; Fiber was tested by acidicdetergent; protein was measured by Kjeldahl's method; Moisture was determined bydesiccation method at atmospheric; Ash was tested by burning method. The contentsof them were 0.09%~5.83%, 1.70%~43.52%, 4.08%~23.70%, 5.48%~19.72%,5.02%~35.10% and 6.68%~56.21% respectively.
     Ⅴ. The ethanol extract from seaweeds were analyzed by IR spectra. Thespectrum had strong repeatability and comparability, which was important supplementfor traditional identification of external morphology.
     The results showed that seaweeds contained a plenty of fatty acids and aminoacids; rich in minerals elements, fiber and protein which all were required by body.These provided the basis of nutrient evaluation for development of seaweeds food.
     The antivirus activities of ethanol extracts and aqueous extracts from seaweedswere tested by cytopathic effect reduction assay and MTT assay. As a result, theextracts and fractions exhibited anti-Cox B3 virus activity stronger than anti-HSV-1virus activity, the ethanol extracts had strong cytotoxic activities for HeLa and Verocells, while Sargassum pallidum possessed the most potent anti-Cox B3 virus activityand anti-HSV-1 virus activity; Notably, aqueous extracts showed antiviral activitiesagainst Cox B3 virus and HSV-1 virus to different extent, Eucheuma striatum andCaulerpa racemosa var peltata exgibited more potent anti-Cox B3 virus activity and anti-HSV-1 virus activity, all these suggested that the antiviral constituents inseaweeds maybe its polysaccharide. On the basis of antivirus activities data, antitumoractivities were discussed, the method was chose different polar solvents to extract,and compared antivirus activities of seaweeds extracts under different solvents.
     The chemical constituents of petroleun ether fraction of Ardisia chinensis wereisolated. Their structures were elucidated by spectroscopic analysis and comparisonwith published data. Two groups compounds were obtained and characterized. Theywere:①.Cholesta-5,23-dien-methanol, (3β,5a)-Cholesta-8,24-dien-3β-oxy, stigma-sterol;②. (3β-lanosta-8, 24-dien-3-yl)-oxy,β-amyrin, [(3β)-lanosta-7,9(11), 24-trien-3-yl]-oxy. The result of anti-Cox B3 and anti-HSV-1 virus indicated that none ofthem showed obvious antiviral activities.
引文
[1] 芮春兰.浅淡海洋药物的研究与开发,时珍国医国约,2006,17(7):1362-1363.
    [2] http://www.cnfoods.org/article/default.asp?classid=4
    [3] 岑颖洲,蔡利铃,刘明正等.海藻生理活性物质的研究进展,暨南大学学报(自然科学版),1998,19(5):78-86.
    [4] 张翼,李晓明,王斌贵.海藻生物活性物质研究的回顾与展望,科技前沿与学术评论,2005,27(5):56-63.
    [5] 黄丽波,岑颖洲,徐石海等.海藻中植物生长激素Gaulerpin的研究进展,天然产物研究与开发,2000,13(2):74-78.
    [6] 张莉.论我国南海资源的特点及开发利用对策,湛江海洋大学报,2002,22(2):13-17.
    [7] 周镇宏,胡日章.21世纪中国海洋开发战略[M].北京:海洋出版社,2001,44-53.
    [8] 杨宇峰,宋金明等.大型海藻栽培及其在近海环境中的生态作用,海洋环境科学,2005,24(3):77-80.
    [9] http://www.ntm.gov.tw/seaweeds/home.asp
    [10] 谭洁怡,王一飞,钱垂文.超声波法提取裙带菜中褐藻多糖硫酸酯的工艺研究,食品与发酵工业,2006,32(1):115-117.
    [11] 王维香,邢雪琳.复合酶解-热水浸提法提取裙带菜硫酸多糖的研究,辽宁师范大学学报(自然科学版),1998,21(4):315-318.
    [12] 王维香,王关林,方宏筠.复合酶解法提取裙带菜硫酸多糖的研究,食品科学,1999,11:26-30.
    [13] 朱良,王一飞,朱艳梅.裙带菜孢子叶多糖含量的测定,食品科学,2005,26(10):184-186.
    [14] 门晓媛,王一飞,朱艳梅等.裙带菜多糖的研究,中草约,2006,37(3):362-365.
    [15] 赖晓芳,沈善瑞,徐士军.裙带菜褐藻糖胶的分离及部分理化性质研究,水产科学,2006,25(11):556-558.
    [16] 赖晓芳,沈善瑞,徐士军.裙带菜褐藻糖胶的提取,淮海工学院学报(自然科学版),2006,15(1):63-65.
    [17] 宗虎民,刘长发,韩蕾.裙带菜假根中褐藻糖胶的提取,天然产物研究与 升发,2006,18:1003-1006.
    [18] 康琰琰,王一飞,熊盛等.裙带菜茎中褐藻糖胶的组成及生物活性研究,中国药学杂志,2006,41(22):1748-1750.
    [19] 康琰琰,王一飞,朱良等.裙带菜茎中硫酸多糖的分离纯化及分析鉴定,中药材,2005,28(9):769-771.
    [20] 康琰琰,王一飞,门晓媛等.裙带菜茎中硫酸多糖的提取工艺,暨南大学学报(自然科学版),2006,27(1):141-144.
    [21] 门晓嫒,王一飞,康琰琰等.裙带菜硫酸多糖的制备及其性质研究,食品科学,2006,27(3):156-161.
    [22] 朱良,张青,朱钦昌等.正交设计优化裙带菜孢子多糖提取工艺,中国海洋药物杂志,2006,25(6):42-45.
    [23] 李丹彤,崔铁军,赵元凤等.裙带菜凝集素的分离及性质研究,大连水产学院学报,2002,17(2):84-88.
    [24] 赖晓芳,沈善瑞,李杰.裙带菜褐藻酸钠的脱色工艺研究,水产品加工,2006,3:70-71.
    [25] 苏秀榕,李太武,丁明进.裙带菜孢子叶营养成分分析,营养学报,1994,16(2):236-238.
    [26] 吕建洲,张冬玲,李品.海带和裙带菜碘及微量元素含量的测定,微量元素与健康研究,2005,22(2):33-34.
    [27] 李爱芬,段舜山,刘振乾等.两种电泳系统分离裙带菜色素-蛋白复合物的比较,生态科学,2004,23(1):32-34.
    [28] 王雪,邹向刚,郭莲英.裙带菜多糖抗肿瘤作用的研究,大连医科大学学报,2006,28(2):98-100.
    [30] 朱艳梅,王一飞,张美英.褐藻裙带菜孢子叶粗提物体外抗单纯疱疹病毒Ⅱ型活性研究.天然产物研究与开发,2006,18:38-42.
    [31] 门晓媛,王一飞,郑文杰等.纳米硒化裙带菜多糖的制备及其体外抗CVB3病毒作用研究,中国卫生检验杂志,2005,15(10):1153-1155.
    [32] 付小梅,高淑清,孙侠等.裙带菜的生理药理作用研究进展,癌变·畸变·突变,2004,16(4):254-256.
    [33] 刘承初,周颖,邬英睿等.羊栖菜和裙带菜中抗凝血活性物质的初步筛选,水产学报,2004,28(4):473-476.
    [34] 张健,苏秀榕,张士达.裙带菜降血脂及抗氧化活性的研究,辽宁师范大 学学报(自然科学版),1998,21(2):148-151.
    [35] 肖红波,胡亚平,谭超等.裙带菜纤维对高脂血症大鼠降血脂作用的研究,中兽医医药杂志,2004,2:12-13.
    [36] Lee JB. Chem Pharm Bull.-2004, 52(9): 1091-1094.
    [37] 高淑清,程桂花,陈嘉丽等.裙带菜水提液的免疫调节及对肿瘤细胞增殖作用的研究,癌变·畸变·突变,2005,17(6):360-362.
    [38] 高淑清,单保恩,赵泽贞等.四种常见海藻水溶性提取液的免疫调节活性,癌变·畸变·突变,2004,16(1):36-38.
    [39] 郭连英,苏秀榕,杨文新等.海带和裙带菜对鼠乳腺发育调控的研究,辽宁师范大学学报(自然科学版),2001,24(1):65-69.
    [40] 肖红波,卢向阳,孙志良等.可溶性裙带菜膳食纤维对小鼠糖代谢的影响,中国临床营养杂志,2006,14(3):179-182.
    [41] 肖红波,许建平,刘进辉等.裙带菜膳食纤维的性能及毒理评价,中国临床康复,2006,10(11):100-103.
    [42] 周可炎,肖红波,孙志良等.裙带菜膳食纤维对大鼠红细胞膜及血小板细胞膜流动性的影响,中兽医医药杂志,2006,6:12-14.
    [43] 许建平,肖红波,胡亚平等.裙带菜膳食纤维对小鼠肠蠕动及血液流变学的影响,中兽医医药杂志,2006,3:8-10.
    [44] 李大鹏,熊艳.裙带菜(Undaria pinnatfida)配子体对四种抗生素的敏感性研究,海洋与湖沼,2005,36(3):255-260.
    [45] 郑文杰,黄亮,杨芳等.降解裙带菜多糖对纳米硒的形成与稳定作用,高等学校化学学报,2007,28(2):208-211.
    [46] 张静,李丹彤,范庆华等.裙带菜凝集素对鲫的免疫诱导,大连水产学院学报,2006,21(2):193-195.
    [47] 冯咏梅,王文华,常秀莲等.裙带菜吸附重金属镍离子的研究,水处理技术,2004,30(5):276-278.
    [48] 王文华,冯咏梅,刘大锋等.裙带菜吸附水溶液中镍离子的特性及吸附平衡模型,水处理技术,2005,31(4):14-16.
    [49] 王文华,冯咏梅,刘大锋.裙带菜吸附水溶液中镉离子的吸附特性和吸附平衡模型,烟台大学学报(自然科学版),2005,18(4):276-282.
    [50] 邓志峰,纪明侯.龙须菜和扁江蓠多糖的组成及其抗肿瘤效果.海洋与湖沼,1995,26(6):575.
    [51] 张学成,程晓杰,隋正红,等.江蓠属藻胆体的研究-Ⅰ藻胆体的分离及吸收光谱特性[J].青岛海洋大学学报,1999,29(2):265-269.
    [52] Noguch i T, M atsui T, M iyazawa K, etal. Poisoning by the red alga 'ogonori' (Gracilaria verrucosa) on the Nojima Coast, Yokohama, Kanagawa P refecture, Japan [J]. Toxicon, 1994, 32 (12): 1533-1538.
    [53] SajikiJ, akim iH. Identification of eicosanoids in the red algae, Gracilaria asiatica, using highperformance liquid chromatography and electrospray ionization mass spectrometry [J]. J Chromatgr A, 1998, 795 (2): 227-237.
    [54] 华玉琴,孙建华,李会轻等.我国真江蓠生物活性物质PG的检出[J].中国海洋药物,2000,(3):31-32.
    [55] Kanoh H, Kitamura T, Kobayashi Y. A sulfated proteoglycan from the red alga Gracilaria verrucosa is ahemagglutinin. Comp Biochem Physiol (B) [J], 1992, 102 (3): 445-449.
    [56] Chiles T C, Bird K T.Gracilaria tikvahiae agglutinin-Partialpurfica-tion and preliminary characterization of its carbohydrate specificity[J]. CarbohydrRes, 1990, 207 (2): 319-326.
    [57] Okamoto R, HoriK, Miyazawa K, etal. Isolation and characterization of a new hemagglutinin from the red alga Gracilaria bursapastoris [J]. Experientia, 1990, 46 (9): 975-977.
    [58] 赵谋明,刘通讯,吴晖,彭志英.江蓠藻的营养学评价.营养学报,1997(19):64-69.
    [59] 周建政,吴葆杰,张岫美.鱼油中EPA和DHA对麻醉大鼠左室功能的影响[J].中国海洋药物,1995,(3):5-8.
    [60] 张侃,韩蓁,黎海芪.必需脂肪酸对脑发育和功能的影响[J].国外医学·妇幼保健分册,1996,7(3):99-101.
    [61] 郑怡,余萍,刘艳如.脆江蓠凝集素的部分性质及细胞凝集作用,应用与环境生物学报,2002,8(1):66-70.
    [62] 郑怡,刘艳如,余萍等.三种海藻凝集素细胞凝集活性的比较,应用与环境生物学报,2002,8(5):511-513.
    [63] 许忠能,林小涛.江蓠的资源与利用,中草药,2001,32(7):654-657.
    [64] Ratnasooriya W D, Premakumara G A, Tillekeratne LM. Postcoital contraceptive activity of crude extracts of Sri Lankan marine red algae [J]. Contraception, 1994, 50 (3):291-299.
    [65] 李米好,李刘冬,石红等.4种海藻膳食纤维清除自由基的比较研究,中国水产科学,2005,12(4):471-476.
    [66] 牛荣丽,范晓,韩丽君.海藻提取物抗炎活性的筛选,海洋与湖沼,2003,2(34):150-154.
    [67] 牛荣丽,范晓,韩丽君,等.海藻抗A-549和HL-60肿瘤细胞及抗菌活性研究[J].中国海洋药物,2003,22(4):1.
    [68] 李凌绪,翟梅枝,林奇英等.海藻乙醇提取物抗真菌活性,福建农林大学学报(自然科学版),2006,35(4):342-345.
    [69] 李来好,杨贤庆等.3种藻类膳食纤维的功能及毒理评价,中国水产科学,2001,7(4):69-72.
    [70] 李刘冬,李来好等.海藻膳食纤维对雌激素吸附作用的研究,中国海洋药物杂志,2005,24(3):1-5.
    [71] 李来好,杨贤庆等.4种海藻膳食纤维对NO~(2-)吸附作用的研究,中国海洋药物杂志,2006,25(1):28-31.
    [72] 陈润智,岑颖洲,王庆荣等.细江蓠硫酸酯多糖的提取工艺优化.2006,26(3):490-492.
    [73] 刘慧燕,赵谋明.江蓠低分子量多糖的提取以及抗氧化活性研究,食品工业科技,2005,3(26):67-69.
    [74] 周歧存,叶富良等.细基江蓠繁枝变种和细基江蓠营养成分的比较研究,海洋科学,2001,25(4):11-13.
    [75] 徐世平,盛国英等.细基江蓠脂肪酸组成研究,热带海洋,1993,12(3):1-9.
    [76] 陈美珍,张永雨等.龙须菜藻胆蛋白的分离及其清除自由基作用的初步研究,食品科学,2005,25(3):159-162.
    [77] 张永雨,陈美珍等.龙须菜藻胆蛋白抗突变与抗肿瘤作用的研究,中国海洋药物杂志,2005,24(3):36-38.
    [78] 李冠武,王广策,温博贵等.藻红蛋白介导的光敏反应可诱导人肝癌7721细胞凋亡[J].肿瘤防治杂志,2002,9(2):144.
    [79] 陈美珍,余杰等.龙须菜藻胆蛋白免疫功能和抗氧化作用的研究,食品科学,2005,26(9):156-159.
    [80] 陈美珍,余杰等.龙须菜多糖抗突变和清除自由基作用的研究,2005,26(7):219-222.
    [81] 梅文莉,戴好富,徐军田.龙须菜的有机酸组成及其细胞毒活性,中国海洋药物杂志,2006,25(2):45-47.
    [82] 余杰,王欣,陈美珍等.潮汕沿海龙须菜的营养成分和多糖组成分析,食品科学,2006,27(1):93-96.
    [83] Simon-Colin, Christelle; Kervarec, Nelly; Pichon, Roger; Deslandes, Eric.Purification and characterization of 4-methanesulfinyl-2 -methylamino butyric acid from the red alga Grateloupia doryphora howe. Phytochemistry Reviews 2005, Volume Date 2004, 3(3): 367-370.
    
    [85] Simon-Colin, Christelle; Kervarec, Nelly; Pichon, Roger; Bessieres,Marie-Anne; Deslandes, Eric.Characterization of N-methyl-L- methionine sulfoxide and isethionic acid from the red alga Grateloupia doryphora. Phycological Research , 2002, 50(2): 125- 128.
    
    [86] Nagahisa, Eizoh; Kanno, Nobuhiro; Sato, Minoru; Sato, Yoshikazu.Occurrence of free D-aspartic acid in marine macrolgae. Biochemistry International ,1992, 28(1): 11-19.
    [87] Matsutani, Hidejiro; Setogawa, Kuniyuki; Nakamoto, Hidetaka; Wakamiya,Tateaki; Shiba, Tetsuo. Isolations of citrulline peptides and (R)-3-methylsulfinyl propylamine from red alga Grateloupia filicina.Nippon Suisan Gakkaishi ,1985, 51(2): 247-251.
    
    [88] Wakamiya, T.; Kobayashi, Y.; Shiba, T.; Setogawa, K.; Matsutani, H. Isolations and structures of new ureido amino acids, lividine and grateloupine, from red algae Grateloupia C. agardh genus. Tetrahedron ,1984, 40(1): 235-240.
    
    [89] Nozaki, Hiroshi; Ohira, Susumu; Shirane, Fukue.Two new methyl sulfones from the red alga Grateloupia filicina J. Agardh. Fisheries Science , 1998,64(3): 494.
    
    [90] Nozaki, Hiroshi; Minohara, Ko; Miyazaki, Ichiro; Kondo, Hirokiyo;Shirane, Fukue; Nakayama, Mitsuru.Two new pyrogallols from the marine alga, Grateloupia filicina (Wulfen) J. Agardh. Agricultural and Biological Chemistry ,1988, 52(12): 3229-3230.
    
    [91] Matsutani, Hidejiro; Setogawa, Kuniyuki; Wakamiya, Tateaki; Nakamoto, Hidetaka; Shiba, Tetsuo. Isolation of L-gigartinyl-L-gigartinine from red alga Grateloupia livida. Nippon Suisan Gakkaishi ,1987, 53(3): 509.
    
    [92] Miyazawa, Keisuke; Ito, Keiji; Matsumoto, Fumio. Aminosulfonic acids in six species of marine algae. Nippon Suisan Gakkaishi, 1969, 35(12):1215-1219.
    
    [93] Wakamiya, Tateaki; Nakamoto, Hidetaka; Shiba, Tetsuo. Structural determination of carnosadine, a new cyclopropyl amino acid, from red alga Grateloupia carnosa. Tetrahedron Letters ,1984, 25(39): 4411-4412.
    
    [94] Evstigneev, V. B.; Cherkashina, N. A. Isolation of chlorophylld from the alga Grateloupia dichotoma. Biokhimiya (Moscow) , 1970, 35(1): 48-52.
    [95] Sen, A. K., Sr.; Das,etal. A new sulfated polysaccharide with potent blood anticoagulant activity from the red seaweed Grateloupia indica.International Journal of Biological Macromolecules,1994, 16(5): 279-280.
    [96] Ooishi, Kunio. Polysaccharides from algae as reverse transcriptase inhibitor.1990, 5 pp.
    [97] Efimov, V. S.; Usov, A. I.; Ol'skaya, T. S.; Baliunis, A.; Rozkin, M. Ya. Comparative study of anticoagulant activity of sulfate polysaccharides obtained from red sea algae. Farmakologiya i Toksikologiya (Moscow), 1983, 46(3): 61-67.
    [98] Zheng, Yi; Lu, Hai-sheng. Screening of agglutinins in marine algae from Fujian coast of China. Chinese Journal of Oceanology and Limnology , 2002, 20(3): 256-260.
    [99] Yan, Xiaojun; Chuda, Yoshihiro; Suzuki, Masahiro; Nagata, Tadahiro. Fucoxanthin as the major antioxidant in Hijikia fusiformis, a common edible seaweed. Bioscience, Biotechnology, and Biochemistry ,1999, 63(3),605-607.
    [100] Perez-Lorenzo,Sonia; Levy-Benshimol, Abraham; Gomez-Acevedo,Santiago. Presence of lectins, tannins and protease inhibitors in Venezuelan marine algae. Acta Cientifica Venezolana , 1998, 49(3): 144-151.
    
    [101] Athukorala, Yasantha; Lee, Ki-Whan; Shahidi, Fereidoon; Heu, Min Soo;Kim, Hung-Tae; Lee, Jung-Suck; Jeon, You-Jin. Antioxidant efficacy of extracts of an edible red alga (Grateloupia filicina) in linoleic acid and fish oil. Journal of Food Lipids, 2003, 10(4): 313-327.
    [102] Zheng, Yi; Chen, Yin-shan; Lu, Hai-sheng. Screening for antibacterial and antifungal activities in some marine algae from the Fujian coast of China with three different solvents. Chinese Journal of Oceanology and Limnology ,2001, 19(4):327-331.
    [103] Athukorala, Yasantha; Lee, Ki-Wan; Song, Choonbok; Ahn, Chang-Bum;Shin, Tai-Sun; Cha, Yong-Jun; Shahidi, Fereidoon; Jeon, You-Jin. Potential antioxidant activity of marine red alga Grateloupia filicina extracts. Journal of Food Lipids, 2003, 10(3): 251-265.
    [104] Kamimoto, Kazuhiko. Antibacterial substances extracted from seaweeds. II. Effect of extracts from seaweeds on the growth of some acid fast bacteria.Nippon Saikingaku Zasshi, 1956, 11: 307-313.
    
    [105] Miller, Ian J. The structure of the polysaccharide from Grateloupia intestinalis in New Zealand. Botanica Marina, 2005, 48(2): 143- 147.
    [106] Xu, Zuhong; Shi, Shengyao; Li, Zhien; Guo, Yucai; Liu, Waqing; Zhang, Xingjun. Study on carrageenan from Grateloupia filicina, Grateloupia filicina var. lomentaria and Pachymeniopsis elliptica. Haiyang Yu Huzhao, 1996, 27(5): 499-504.
    [107] Baeza, P.; Matsuhiro, Betty. Polysaccharides from Chilean seaweeds. IV. A sulfated galactan from Grateloupia lanceola. Botanica Marina,1977, 20(6): 355-357.
    [108] Hirase, Susumu; Araki, Choji; Watanabe, Kyoko. Component sugars of the polysaccharide of the red seaweed Grateloupia elliptica. Bulletin of the Chemical Society of Japan, 1967, 40(6): 1445-1448.
    [109] Usov, A. I.; Miroshnikova, L. I.; Barbakadze, V. V. Polysaccharides of algae. ⅩⅦ. Water-soluble polysaccharides of the red algae Grateloupia divaricata and Grateloupia turuturu. Zhurnal Obshchei Khimii,1975, 45(7): 1618-1624.
    [110] 刘红兵,崔承彬,顾谦群等.东京枫杨的甾体等化学成分及其体外抗肿瘤活性.中国药学杂志,2005(6):414-416.
    [111] Miyazawa, Keisuke; Ito, Keiji. Fac. Fish. Anim. Hush. Isolation of a new peptide, L-citrullinyl-L-arginine, from a red alga Grateloupia turuturu. Nippon Suisan Gakkaishi,1974, 40(8), 815-818.
    [112] Miyazawa, Keisuke; Ito, Keiji. Isolation of L-methionine-1-sulfoxide and N-methylmethionine sulfoxide from a red alga Grateloupia turuturu. Nippon Suisan Gakkaishi, 1974, 40(7): 655-660.
    [113] Hellio, Claire; Simon-Colin, Christelle; Clare, Anthony; Deslandes, Eric. Isethionic acid and floridoside isolated from the red alga, Grateloupia turuturu, inhibit settlement of Balanus amphitrite cyprid larvae. Biofouling, 2004, 20(3):139-145.
    [114] 张颖,黄日明,洪爱华.南澳海域七种海藻的多糖组成分析,暨南大学学报(自然科学版),2006,27(3):455-459.
    [115] 张尔贤,肖湘.几种南海海藻的氨基酸分析,氨基酸杂志,1989,37-39.
    [116] 任育红,杨加华等.5种藻类金属硫蛋白的初步研究,生物技术,11(6):9-11.
    [117] 张颖,岑颖洲,黄日明等.南海七种海藻多糖的抗病毒活性初步研究,暨南大学学报(自然科学版),2006,22(4):282-285.
    [118] 张丽娟,吴志明等.三十烷醇对小石花菜藻体生长发育的影响研究,中国生态农业学报,2004,12(4):117-118.
    [119] 王盛,钟伏弟等.一种新的藻红蛋白的亚基组成分析,福建农林大学学报,33(1):68-71.
    [120] 胡国胜.红外线对皮肤的影响及珊瑚藻的防护作用,日用化学工业,1998,1:34-35.
    [121] 袁兆慧,韩丽君等.红藻小珊瑚藻化学成分研究,中国中药杂志,2006,31(21):1787-1790.
    [122] Ishida Ryoichi, Shirahama Haruhisa, Matsumoto Takeshi. A new glycosphingolipid from the red alga Corallina pilulifera [J]. Chem Lett, 1993, (1): 9.
    [123] Awad N E.珊瑚藻中脂样物质的季节变化及降血脂活性,国外医药·植物药分册,2004,19(3):119.
    [124] 余杰,颜璐璐,陈美珍.海萝的研究进展,食品研究与开发,2004,25(4):97-100.
    [125] 陶平,许庆陵等.大连沿海13种食用海藻的营养组成分析.辽宁师范大学学报(自然科学版),2001,24(1):406-410.
    [126] 范晓,韩丽君等.中国沿海经济海藻化学成分的测定,海洋与湖沼,1995,26(2):199-207.
    [127] 李宪璀,范晓等.中国黄、渤海常见大型海藻的脂肪酸组成.海洋与湖泊,2002,33(2):215-223.
    [128] 宋玉娟,崔铁军等.海萝凝集素的分离纯化及性质,中国水产科学,2005,12(3):167-172.
    [129] 何洁等.4种药用海藻有效成分的分析与比较.中国海洋约物,1996,3(59):23-27.
    [130] Kanno N et at. Purification and properties of adenosine 5'-phosphosulfate deaminating enzyme from marine macroalga Gloiopeltis furcata. Biochem. Int, 1991, (23)5: 845-853.
    [131] Kurihara H., Goto Y., Aida H, Hosokawa M., Takahashi K.Antibacterial activity against cariogenic bacteria and inhi-bition of insoluble glucan production by free fatty acids obtained from dried Gloiopeltis furcata. Fisheries science, 1999,65 (1):129-132.
    [132] Saeki. Y.,Kato. T., Okuda, K. Inhibitory effects of funoran on the adherence and colonization of oral bacteria. Bulletin of Tokyo Dental College.Bull Tokyo Dent Coll, 1996,(37)2: 77-92.
    [133] 牛荣丽等.海藻提取物抗炎活性的筛选,海洋与湖泊,2003,(34)2:150-154.
    [134] 殷丽明等.青岛沿海常见海藻抗肿瘤及抗菌活性初报,中国海洋药物,1988,(7):39-41.
    [135] 徐年军等.山东沿海海藻抗肿瘤活性的筛选,海洋与湖沼,2001.32(4):408-413.
    [136] 牛荣丽等.海藻抗A-49和HL-60肿瘤细胞及抗菌活性研究,中国海洋药物,2003,(94)4:1-4.
    [137] 许实波等.海萝藻水提物的药理作用,中药材,1998,21(4):202-203.
    [138] Mizukoshi S et al. Search for bioactive substances from marine algae. Bull. Fac. Bioresour. Mie Univ. Miedai Seibut-sushigen Kiyo, 1992, 8: 27-34.
    [139] 黄岩等.几种海洋红藻中的R-藻红蛋白对胰岛素抗体的免疫反应研究,生物化学与生物物理学报,1993,5(25):469-473.
    [140] Sekita K etal. Fukuronori(Gloiopeltis furcata) extract: 90-day dietary toxicity study in F344 rats. Shokuhin eiseigaku zasshi. 2001, (42)2: 96-101.
    [141] ZHENG Yi etal. Screening of agglutinins in marine algae from FuJian coast of China. Chinese Journal of Oceanologyand Limnology. 2002, 20(3): 256-260.
    [142] 岑颖洲,王庆荣,许少玉等.海藻麒麟菜Eucheuma muricatum中的新糖脂化合物的结构测定,分析试验室,2003,22:64-65.
    [143] 杨宜婷,岑颖洲等.麒麟菜中蕨藻红素抗肿瘤活性研究,中国病理生理杂志,2002,18(7):851-852.
    [144] 吕扬,卢多等.蕨藻红素Caulerpin的结构分析,结构化学,1994,13(6):472-476.
    [145] 刘秋英,孟庆勇,刘志辉.两种海藻多糖的提取分析及其体外抗肿瘤作用,广东药学院学报,2003,19(4):336-337.
    [146] 李来好,杨贤庆等.3种藻类膳食纤维的功能及毒理评价,中国水产科学,2001,7(4):69-72.
    [147] 李来好,杨少玲等.酶法提取麒麟菜膳食纤维工艺的研究,食品科学,2006,27(10):292-296.
    [148] JINGYU SU,YINGZHOU CHEN. Chemistry of Chinese marine organisms.Book of chemical and biological basis for the diresity of marine life. 1997,10.
    [149] 李来好,戚勃等.麒麟菜膳食纤维对SD大鼠30天喂养实验和致畸作用,中国水产科学,2006,13(1):65-72.
    [150] 李锋,唐凤翔等.耳突麒麟菜多糖的提取分离及表征,福州大学学报(自然科学版),2003,31(1):106-110.
    [151] 梁智渊,岑颖洲等.琼枝和异枝麒麟菜中硫酸酯基多糖不同提取方法的化学分析比较,暨南大学学报(自然科学版),2005,26(3):380-385.
    [152] 王庆荣,岑颖洲等.异枝麒麟菜活性硫酸粗多糖的提取工艺优化,暨南大学学报(自然科学版),2005,25(3):386-389.
    [153] 马夏军,岑颖洲等.超声波辅助过氧化氢氧化降解制备相对低分子质量异枝麒麟菜硫酸多糖,中国海洋药物杂志,2005,24(4):10-13.
    [154] 郭凌,包惠燕等.琼枝麒麟菜和异枝麒麟菜硫酸多糖及其水解产物的抑菌作用,暨南大学学报(自然科学版),2002,23(3):79-83.
    [155] 史升耀,张星君等.异枝麒麟菜和扇形叉枝藻卡拉胶的研究,海洋与湖沼,1996,27(6):646-650.
    [156] 戚勃,李来好等.麒麟菜的营养成分分析及评价,现代食品科技,2005,21(1):115-118.
    [157] 张桂和.几种热带海藻营养成分的分析,海南大学学报自然科学版,2002,20(4):324-327.
    [158] 李来好,杨贤庆,陈培基等.麒麟菜高活性膳食纤维的提取与功能性试验,湛江海洋大学学报,2000,20(2):28-33.
    [159] 叶绍明,岑颖洲,邱玉明等.异枝麒麟菜多糖的体外抗病毒作用的初步研究[A].2003南京生化药学与多糖类药物国际学术研讨会论文集[C].2003:397-400.
    [160] 岑颖洲,叶绍明,王凌云等.海藻麒麟菜和羊栖菜硫酸多糖体外抗单纯疱疹病毒Ⅰ型(HSV-Ⅰ)作用的初步研究[A].第八届中国海洋药物学术研讨会论文集[C].2002:295-299.
    [161] 邓穗平,吴秀梅,欧阳健明等.海藻异枝麒麟菜多糖抑制尿石盐草酸钙海藻异枝麒麟菜多糖抑制尿石盐草酸钙海藻异枝麒麟菜多糖抑制尿石盐草酸钙晶体生长的研究,高等学校化学学报,2006,27(4):595-598.
    [162] 邓穗平,欧刚健明,吴秀梅等.海藻硫酸多糖抑制草酸钙结石形成的化学模拟,化学学报,2006,64(7):589-592.
    [163] 史升耀,刘万庆等.用13C-NMR分析几种中国麒麟菜卡拉胶,海洋与湖沼,1987,18(3):265-272.
    [164] 郑淑贞,陈欣权等.麒麟菜多糖的研究琼枝多糖的性质及其红外光谱,水产学报,1988,7(4):325-330.
    [165] 郑淑贞,林瑞洵等.麒麟菜多糖的研究琼枝多糖溶液的流变性质,水产学报,1984,8(1):45-53.
    [166] 郑淑贞,林慧贞.琼枝多糖凝胶的结构和性质,水产学报,1989,13(4):333-338.
    [167] 黄丽波,沈伟哉等.红藻琼枝麒麟菜中凝集素的提取、纯化及其性质研究,华西药学杂志,2002,17(6):406-408.
    [168] 杨尚军,左春旭,吴知行.铁钉菜化学成分的研究[J].中草药,1996,27(8):460.
    [170] 汤海峰,易杨华,姚新生,等.褐藻铁钉菜中的甾醇成分,中国海洋药物,2002,21(1):1.
    [171] 汤海峰,易杨华,姚新生,等.褐藻铁钉菜化学成分的研究(Ⅱ),中国海洋药物,2003,22(4):8-12.
    [172] 汤海峰,易杨华,姚新生,等.铁钉菜化学成分的研究(3),中国中药杂志,2002,27(4):269-272.
    [173] Toume, Kazufumi; Miyata, Masahiko; etc., Isolation of diphlorethohydroxy-carmalol from a brown alga Ishige okarnurae. Natural Medicines. 2004, 58(2): 79-80.
    [174] Ahn,Mi-Jeong; Yoon,Kee-Dong; etc,. Inhibition of HIV-1 reverse transcriptase and HIV-1 integrase and antiviral activity of Korean seaweed extracts. Journal of Applied Phycology,2002, 14(5): 325-329.
    [175] Zheng, Yi; Chen, Yin-shan; etc., Screening for antibacterial and antifungal activities in some marine algae from the Fujian coast of China with three different solvents. Chinese Journal of Oceanology and Limnology, 2001, 19(4): 327-331.
    [176] Fujimoto, Kenshiro; Kaneda, Takashi. Antioxygenic activity of marine algae. I. Screening test for antioxygenic compounds from marine algae and fractionation from Eisenia bicyclis and Undaria pinnatifida. Nippon Suisan Gakkaishi, 1980, 46(9):1125-1130.
    [177] Maeda, Masaakira; Nisizawa, Kazutosi. Laminaran of Ishige okarnurai. Carbohydrate Research,1968, 7(1): 97-99.
    [178] Nishide, E.; Anzai, H.; Uchida, N.; Nisizawa, K.,Sugar constituents of fucose-containing polysaccharides from various Japanese brown algae. Japan. Hydrobiologia, 1990, 204-205.
    [179] Nishide, Eiichi; etc., Studies on sulfated polysaccharides from brown algae-Ⅳ. A comparative investigation on the contents of fucose-containing polysaccharides from various Japanese brown algae. Nippon Suisan Gakkaishi, 1987, 53(6): 1083-1088.
    [180] Ren, Dalin; Noda, Hiroyuki; Amano, Hideomi; Nishino, Takahiro; etc., Study on antihypertensive and antihyperlipidemic effects of marine algae. Fisheries Science, 1994, 60(1): 83-85.
    [181] 李德远,张声华.海带岩藻糖胶对小鼠的高胆固醇血症防治作用.食品科学,1999,20(1):45
    [182] 中国人民解放军总后勤部卫生部,上海医药工业研究所编.中国药用海洋生物.上海:上海人民出版社,1977,27-28.
    [183] 叶盛英,李宏.海带药用研究进展,天津药学,2003,15(6):58-61.
    [184] 钱风云,傅德贤,欧阳藩.海带多糖功用研究进展,精细与专用化学品,2003,(7):11-15.
    [185] 许凤清,吴皓.海带多糖的研究进展,中国中医药信息杂志,2005,12(6):106-108.
    [186] 赖晓芳,沈善瑞.海带多糖生物活性的研究进展,生物技术通讯,2003,14(5):436-438.
    [187] 邓长江,朱希强,郭学平.海带多糖药理作用的研究进展,食晶与药品,2006,8(04A):30-32.
    [188] 谢露,刘爱群等.海带多糖L01对人脐静脉内皮细胞表达和分泌t_PA的影响,中药药理与临床,2006,22(3,4):78-80.
    [189] 刘爱群,谢露等.海带多糖L01对人脐静脉内皮细胞表达和分泌PAI_1的影响,中药新药与临床药理,2006,17(1):9-12.
    [190] 钱风云,傅德贤,欧阳藩.海带多糖生物功能研究进展,中国海洋药物,2003,(1):55-59.
    [191] 徐中平,孙卫东,姜振芳.海带多糖FGS体内外抗癌作用的研究,曲阜师范大学学报,2006,32(2):103-106.
    [192] 高淑清,单保恩等.裙带菜和海带提取液体外抑瘤实验研究,营养学报,2004,2691):79-80.
    [193] 梁桂宁,谢露等.海带多糖对应激小鼠肾组织抗氧化能力的影响,现代医药卫生,2006,22(18):2783-2784.
    [194] 梁桂宁,谢露等.海带多糖对应激小鼠脑组织SODMDA的影响,右江民族医学院学报,2006,28(3):333-334.
    [195] 韩华,周海燕等.三种藻类硫酸多糖的提取及其清除自由基活性研究,中国海洋药物杂志,2006,25(3):33-36.
    [196] 苗本春.蒋捍东.海带酸性聚糖类物质J201A抑制肺成纤维细胞增殖活性的探讨.中国海洋药物,2002,21(3):1.
    [197] 范晓等.海带中褐藻酸盐组成的研究[J],海洋与湖沼,1988,19(1):64-69.
    [198] 耿美玉等.褐藻多糖GS201对脑神经细胞生存的影响[J],中国海洋药物,2001,1:20-22.
    [199] 朱海波.硫酸多糖抗血管平滑肌细胞增殖作用机理的研究进展[J].中国海洋药物,2001,20(5):35.
    [200] 黎静,谢露等.海带多糖L01对血管内皮细胞表达血管性假血友病因子影响的体内外实验,中国临床康复,2006,10(9):99-101.
    [201] 吴金华.褐藻及褐藻胶的研究现状和进展[J].盐城工学院学报,1999,12(4):52.
    [202] 杨为中.藻酸双酯钠对眼睑黄色瘤的疗效评价[J].临床眼科杂志,1995,3(3):157.
    [203] 刘莉.藻酸双酯钠的临床新用途[J].天津医学,1996,8(4):27.
    [204] 朱立俏,何伟,袁万瑞.昆布化学成分与药理作用研究进展,食品与药品,2006,8(03A):9-12.
    [205] 杜斌,韩华云,张秋荣.昆布多糖的提取分离及F1的纯化与鉴定,中国药学杂志,2002,37(9):657-659.
    [206] 小菅卓夫等.昆布的强心成分,药学杂志,1983,103(6):683(日文).
    [207] 朱良,张青,王一飞等.昆布多糖的含量测定,中国海洋药物杂志,2005,24(6):47-48.
    [208] 朱琰琰,王一飞,门晓嫒等.昆布多糖提取工艺及理化性质分析,食品研究与开发,2006,27(1):59-61.
    [209] 黄俊辉,曾庆孝,佘纲哲.南海海域数种海藻总脂质及脂肪酸含量的比较,湛江海洋大学学报,2001,21(2):23-29.
    [210] 刘玉,丁彦青,梁莉,等.昆布多糖硫酸酯的抑制血管生成和抗肿瘤作用[J],中国临床康复,2003,26(7):3588-3589.
    [211] 肖青,董蒲江,胡妮妮,等.昆布多糖硫酸酯抑制BxPC-3细胞增殖的实验研究[J].重庆医学,2004,33(3):417-418.
    [212] 徐中平,李福川.昆布多糖硫酸酯的抑制血管生成和抗肿瘤作用[J].中草药,1999,30(7):551-553.
    [213] 刘德纯,党诚学,白纪纲等.硫酸昆布多糖在仓鼠胰腺癌肝转移模型中抑制作用的研究,中华肝胆外科杂志,2004,10(12):831-833.
    [214] 董浦江,姚榛祥.昆布多糖硫酸酯对乳癌细胞化疗药物的增敏作用[J].重庆医科大学学报,2004,29(3):398.
    [215] 董浦江,姚榛祥.昆布多糖硫酸酯对化疗药物治疗肝癌细胞的增敏作用[J].现代医药卫生,2003,19(3):255.
    [216] 肖青,唐宗山,黄宗干,等.昆布多糖硫酸酯对急性髓性白血病HL-60细胞株NF-κB表达的实验研究及CD11b在HL-60细胞株的表达[J].中国现代医学杂志,2003,13(24):47.
    [217] Nishino T, Aizu Y, Nagumo T. Antithrombin activity of a fucan sulfate from the brown seaweed Ecklonia Kurome [J].Thromb Res, 1991, 62(6): 765-773.
    [218] Nishino T, Fukuda T, Nagumo T, et al. Inhibition of the generation of thrombin and factor Xa by a fucoidan from brown seaweed Ecklonia kurome [J]. Thromb Res, 1999, 96 (1): 37-49.
    [219] Nishino T, Aizu Y, Nagumo T. The influence of sulfate contentand molecular weight of a fucan sulfate from the brown seaweed Ecklonia Kurome on its antithrombin activity[J]. Thromb Res, 1991, 64(6): 723-731.
    [220] Chevolot L, Foucault A, Chaubet F, et al. Further data on the structure of brown seaweed fucans: relationships with anticoagulant activity[J]. Carbohydr Res, 1999, 319(1-4): 154-165.
    [221] Collies S, Fischer AM, Tapon BJ, et al. Anticoagulantand properties of a fucoidan fraction[J]. Thromb Res, 1991, 64(2): 143-154.
    [222] Frankc C, James BM, Rita ET, et al. Antithrombinactivity of fucoidan [J]. J Biol Chem, 1989, 264: 3618-3623.
    [223] Nishino T, Kiyohara H, Yamada H, et al. An anticoagulant fucoidan from the brown seaweed Ecklonia Kurome [J]. Phytochemistry, 1991, 30(2): 535-539.
    [224] 李志民等.辨证治疗慢性非特异性溃疡性结肠炎34例临床疗效观察.福建中医药,1991,(6):7.
    [225] 邵磊,辛现良,耿美玉.昆布多糖药理作用的研究进展,中国海洋约物杂志,2005,24(2):57-60.
    [226] 刘圣.昆布药理作用与临床应用概况,中国中医药信息杂志1998,5(3):24-25,33.
    [227] Chang-Mok. Effects of sea tangle (Laminaria japonica) extract and fucoidan components on lipid metabolism of stressed mouse[J]. Journal of the Korean Fisheries Society,2000,32 (2):124.
    [228] 孙炜,王慧铭.昆布多糖对高脂血症大鼠降胆固醇作用及其机理的研究[J].中国中药杂志,2004,29(10):1015.
    [229] 黄兆胜,王宗伟,刘明平,等.昆布对实验性高脂血症大鼠脂质代谢的影响[J].中国海洋药物,1998,17(1):35.
    [230] 林文荣等.加味乌梅汤治疗慢性非特异性溃疡结肠炎33例,北京中医,1995,(6):27.
    [231] 钱永昌,朱世臣,丁安伟.昆布多糖的免疫药理学研究[J],江苏药学与临床研究,1997,5(1):12-14.
    [232] 薛静波,刘希英,张鸿芬.海带多糖对小鼠腹腔巨噬细胞的激活作用[J].中国海洋药物,1999,18(3):23.
    [233] 杨晓林,孙菊云,许汉年,等.海带多糖的免疫调节作用,中国海洋药物,1995,14(3):9.
    [234] 孙炜.昆布多糖对实验性高血糖大鼠治疗作用的研究[J].浙江中西医结合杂志,2004,14(11):667.
    [235] 薛唯建,杨文,陈琼华.昆布多糖和猴头多糖对实验性高血糖的防治作用,中国药科大学学报,1989,20(6):378-380.
    [236] 孔俐君,黄作顺,秦城.昆布浸出液对常见皮肤癣菌抑菌效果的实验观察[J].大连医学院学报,1994,163:212.
    [237] Suzuki N, Fujimura A, Nagai T, et al. Antioxidative activity of animal and vegetable dietary fibers[J]. B iofactors,2004,21 (1-4):329.
    [238] Huang HL, Wang BG. Antioxidant capacity and lipophilic content of seaweeds collected from the Qingdao coastline[J]. J AgricFood Chem,2004,52 (16):4993.
    [239] 余世望,肖小年,范青生等.60种药食两用植物抗氧化作用研究,食品科学,1995,16(11):3-5.
    [240] 王丽娜,蒋捍东.昆布提取物J201对大鼠肺纤维化的抑制作用,山东医药,2006,46(4):24-25.
    [241] 赵宁,李志富等.海蒿子多糖的提取方法研究,泰山医学院学报,2004,25(5):429-430.
    [242] 李俊卿,赵宇等.海蒿子多糖DEI、DEII组分分离纯化、结构及抗癌活性研究,天然产物研究与开发,2005,17(5):564-567.
    [243] 赵宁,张立新等.中药海蒿子多糖的分离纯化及结构研究,山东农业大学学报(自然科学版),2005,36(2):247~250.
    [244] 王景禄,胡永明等.中药海蒿子脂肪酸类成分分析,中国海洋药物,2001,1:40-41.
    [245] 李相仁,胡永明等.海蒿子中脂肪酸组成的研究,青岛大学师范学院学报,1998,15(2):43-44.
    [246] 李玉山,崔征等.7种马尾藻属海藻碘及微量元素的含量测定,中国海洋药物,1996,4:35-37.
    [247] 崔征,李玉山等.中药海藻及数种同属植物的药理作用,中国海洋药物,1997,3:5-8.
    [248] 杨晓峰,李升刚.六种海洋生物提取液对凝血与纤溶系统的影响,山东省青岛市药品检验所.
    [249] 郭立民.中药海藻海蒿子Sargassum pallidum(Turn.)C.Ag.抗肿瘤活性成分研究,中国海洋大学研究生学位论文,2006.
    [250] 徐石海,岑颖洲.羊栖菜Sargassum fusiforme化学成分的研究,中草药,2004,24(7):491-492.
    [251] 钱浩,胡巧铃.羊栖菜的化学成分研究[J],中国海洋药物,1998,(3):33-34
    [252] 岑颖洲,马夏军等.羊栖菜多糖提取工艺及其单糖组成研究,2004,11(6):373-375.
    [253] 陈帆,占舟.海洋药物羊栖菜中单糖的毛细管色谱分离研究[J],温州师范学院学报(自然科学版),2001,22(6):35-36.
    [254] 戴志远,洪泳平,张燕平等.羊栖菜的营养成分分析与评价[J],水产学报,2002,26(4):382-384.
    [255] 李丽,陶平等.羊栖菜(Sargassum fusiforme)的营养组分分析[J],中国公共卫生管理,2002,18(6):548-550.
    [256] 陈帆,程亚倩,叶明德.毛细管区带电泳分离药用海藻羊栖菜中氨基酸[J].分析化学,2003,31(1):122.
    [257] Lou Qingxiang, Fan Xiao. Iodine concent of Sargassum in Southern [J]. Chinese Journal of Oceanology and Limnology, 1999,(2): 56-58.
    [258] 陈帆,陈世理.海洋药用羊栖菜中总砷含量的分析[J].温州师范学院学报[自然科学版),2002,23(6):37-39.
    [259] 陈群,许宁.羊栖菜活性成分和药理作用研究进展,中国药业,2005,14(6):95-96.
    [260] 季宇彬,杨书良,谷春山等.羊栖菜多糖对L615小鼠LPO含量及GR、GSH-PX、CAT和SOD活性的影响[J],中国海洋药物,1994,50(2):20-23.
    [261] 崔征,李玉山等.中药海藻和数种同属植物的药理作用海洋药物[J],1997.63(3):5-8.
    [262] 岑颖洲,马夏军等.羊栖菜多糖的制备及其对Hep G2细胞的抑制作用,中国海洋药物杂志,2005,24(1):21-24.
    [263] Ji YB, Oan SY, Kong Q, et al. Effects of alga polysaccharides on P53 gene expression of tumor cells[J]. J Herbin Commer Lni, 2001, 17(2):1-3.
    [264] 高世勇,季宇彬.羊栖菜多糖对SGC-7901人胃癌细胞内[Ca~(2+)]i的影响[J],天津中医药,2003,20(4):62.
    [265] 季宇彬,高世勇.羊栖菜多糖体外抗肿瘤作用及其作用机制的研究[J].中草药,2003,34(12):111~1114.
    [266] 季宇彬,高世勇,张秀娟.羊栖菜多糖诱学肿瘤细胞调亡的研究[J],中国中药杂志,2004,29(3):245~247.
    [267] 梁倩,李继承,张华芳.羊栖菜多糖诱学HL-60细胞调亡的研究[J],实验生物学报,2004,37(2):125-130.
    [268] Ogawa A, Murakami C, et al. Pseudodeflectusin, a novel isochroman derivative from spergillus pseudodeflectus a parasite of the seaweed, Sargassum fusiform, as a selective human cancer cytotoxin[J]. Bioorg Med Chem Lett, 2004, 14 (13): 3539-3543.
    [269] 王建光,杨新宇.羊栖菜多糖诱导MCF-7细胞凋亡机制的研究,中国老年学杂志,2005,25(5):567-569.
    [270] 严璘璘,梁倩等,羊栖菜多糖诱导lovo细胞凋亡及其机理探讨,2005,38(5):447-455.
    [271] 张华芳.羊栖菜研究进展概述,时针国医国药,2005,16(6):480-481.
    [272] 季宇彬,吕育齐,杨玉山等.羊栖菜多糖对荷瘤小鼠红细胞免疫功能的影响[J],中国海洋药物,1995,54(2):10-14.
    [273] 季宇彬,孔琪等.羊栖菜多糖对P388小鼠免疫功能的影响[J],中国海洋药物,1998,52(3):14-17.
    [274] 陈绍缓,莫卫民,潘远江等.海洋药物研究(Ⅲ)一羊栖菜多糖[J].兰州人学学报,1998,34(4):110-113.
    [275] Yasuji Okai etal. Possible immunomodulsing activities in an extract of edible brown algae, Hizikia fusiforme[J]. J.Sci Food Agric,1998, 76(1): 56-62.
    [276] 王扬,何良强等.羊栖菜多糖对小鼠免疫功能的影响,宁波人学学报(理工版),2003,16(3):245-247.
    [277] 岑颖洲,王凌云等.羊栖菜多糖体外抗病毒作用研究,中国病理胜利杂志,2004,20(5):765-768.
    [278] 李凌绪,翟梅枝等.海藻乙醇提取物抗真菌活性,福建农林大学学报(自然科学版),2006,35(40):343-345
    [279] 陈灼华,郑怡等.10中红枣和褐藻抗细菌抗真菌活性的研究,福建师范大学学报(自然科学版),1994,10(4):75-79.
    [280] 林雄平,郑怡等.三种褐藻乙醇提取物抗动植物病原菌活性,福建师范大学(自然科学版),2005,21(1):112-116.
    [281] 王兵,李靖,马舒冰等.羊栖菜多糖降血糖作用的实验研究[J],中国海洋药物,2000,(3):33-35.
    [282] 章荣华,王芳,徐彩菊等.海麦素降糖作用观察[J],中药药理与临床,2002,18(4):36-38.
    [283] 冯磊,浓健等.羊栖菜降血糖的作用,中华预防医学杂志,2001,35(5):324.
    [284] 李八方,毛文君,曹立民.羊栖菜多粉对高血脂模型人鼠血脂的影响[J],中国水产科学,2000,7(2):56-58.
    [285] 程志清,严建伟等.海藻提取物对实验性高脂血人鼠模型的药效学研究[J],中国现代应用药学杂志,1998,15(5):9-10.
    [286] 张信岳,程敏,孟倩超,等.羊栖菜多糖降血脂作用[J],中国海洋药物杂志,2003,95(5):27-31.
    [287] 李亚娜,彭志英.羊栖菜多糖的减肥功能评价,广州食品工业科技,2004,20(2):63-64.
    [288] 刘雪莲,么宗利.羊栖菜营养成分及保健功效,中国水产,2005,10:79-80.
    [289] 贾之慎,邬建敏,郑海龙等.羊栖菜褐藻多糖硫酸酯的分离和组分分析[J],浙江农业人学学报,1998,24(6):670-673.
    [290] 张燕平,张虹等.羊栖菜提取物体外自由基清除能力的研究,郑州工程学院学报,2003,24(3):50-55.
    [291] 李八方,毛文君,胡建英.羊栖菜水提取物及其复方食品对机体生长发育的影响[J],中国海洋药物,1999,18(7):35-39.
    [292] 雷作熹,罗仁等.羊栖菜对UUO大鼠肾间质纤维化的影响,中药药理与临床,2006,22(1):46-48.
    [293] 史永富.羊栖菜的研究现状及前景,现代渔业信息,2006,21(5):20-23.
    [294] 赵肖为,周茂洪等.羊栖菜吸附重金属的研究,海洋湖沼通报,2006,1:64-67.
    [295] 海藻(羊栖菜)干预高脂饲养大鼠脂肪肝的量效研究,浙江临床医学,2005,8(5):452-453.
    [296] 马夏军,洪爱华,梁智渊,岑颖洲.中国南海总状蕨藻中脂肪酸和甾醇GC-MS分析,广东化工,2005,4:19-21.
    [297] J.G.Schwede, J.H.Cardellina 11, S.H.Grode,T.R.James,JR. and A.J. Blackman. Distribution of the pigment caulerpin in species of the green alga caulerpa.Phytochemistry. 1987,26(1),155-158.
    [298] R. J.Capon,E.L.Ghisalberti,P.R.Jefferies.Metabolites of the green algae, Caulerpa species.Phytochemistry. 1983,22(6), 1465-1467.
    [299] 吕扬,卢多,郑启泰,廉斌,苏镜娱,岑颖洲.蕨藻红素(Caulerpin)的结构分析.结构化学,1994,13(6),472~476.
    [300] A.S.R. Anjaneyulu, C.V.S.Prakash, U.V.Mallavadhani. Sterols and terpenes of the marine green algal species Caulerpa racemosa and Codiuns decorticatum. J. Indian Chem.Soc..1991,68:480.
    [301] A.S.R. Anjaneyulu, C.V.S.Parkash, K.V.S.Raju, and U.V. Mallavadhani. Isolation of new aromatic derivatives from a marine algae species Caulerpa raceraosa. Journal of Natural Products.1992, 55 (4): 496-499.
    [302] A. S.R. Anjaneyulu, C.V.S. Parkash, U.V.Mallavadhani. Two caulerpin analogues and a sesquiterpene from Caulerpa racemosa. Phytochemistry. 1991, 30(9),3041-3042.
    [303] P. G.Nielsen, J.S.Carle, C.Christophersen. Final structure of caulerpicin, a toxin mixture from the green alga Caulerpa racemosa. Phytochemistry. 1982, 21(7), 1643-1645.
    [304] M. Mahendran, S.Somasundaram, R.H.Thomson.A revised structure for caulerpicin from Caulerpa racemosa. Phytochemistry. 1979,18, 1885-1886.
    [305] M.Aknin,R.Moellet-Nzaou,J.M.Kornprobst,E.M.Gaydou,A.Samb and J. Miralles. Sterol composition of twelve chlorophyceae from the Senegalese coast and their chemotaxonomic significance. Phytochemistry. 1992,31(12),4167-4169.
    [306] A.M.S. Mayer, V.J.Paul, W.Fenical, J.N.Norris, M.S.de Carvalho& R.S. Jacobs. Phospholipase A2 inhibitors from marine algae. Hydrobiologia. 1993, 260/261, 521-529.
    [307] Blackman,A.J.&R.J.Weils. Flexilin and trifarin,terpene 1,4- diacetoxybuta -1,3-dienes from two Caulerpa species(Chlorophyta). Tetrahedron Lett.,1978, 33:3063-3064.
    [308] A.Guerriero, A.Meinesz,M.D'Ambrosio,F.Pietra.Isolation of toxic and potentially toxic sesqui- and monoterpenes from the tropical green seaweed Caulerpa taxifolia wihich has invaded the region of Cap Martin and Monaco.Helvetica Chimica Acta.1992,75,689-695.
    [309] I.Mancini,C.Guella,A.Defant,M.L.Candenas,C.P.Armesto, D. Depentori and F.Pietra.Polar metabolites of the tropical green seaweed Caulerpa taxifolia which is spreading in the Mediterranean sea:glycoglycerolipids and stable enols(a-keto esters).Helvetica Chimica Acta.1998,81,1681-1691.
    [310] A.Guerriero,F.Marchetti,M.D'Ambrosio,S.Senesi,F.Dini and F. Pietra. New ecotoxicologically and biogenetically relevant terpenes of the tropical green seaweed Caulerpa taxifolia which is invading the Mediterranean. Helvetica Chimica Acta.1993,76:855-864.
    [311] V.Amico,G.Oriente,M.Piattelli,and C.Triugall.Caulerpenyne,an unusual sequiterpenoid from the green alga Caulerpa prolifera. Tetrahedron Letters.1978, 38: 3593-3596.
    
    [312] V.Smyrniotopoulos, D.Abatis, Leto-A. Tziveleka,C.Tsitsimpikou,V. Roussis, A.Loukis, and C.Vagias. Acetylene sesquiterpenoid esters from the green alga Caulerpa prolifera. J.Nat.Prod.. 2003,66,21-24.
    [313] M.M.Hegazi, A.Perez-Ruzafa, L.Almela, M.E.Candela. Separation and identification of chlorophylls and carotenoids from Caulerpa prolifera, Jania rubens and Padina pavonica by reversed phase high-performance liquid chromatography.Journal of Chromatography A.1998,829,153-159.
    [314] Paul,V.J.&W.Fenical.Toxic feeding deterrents from the tropical marine alga Caulerpa bikinensis(Chlorophyta). Tetrahedron Lett., 1982, 23: 5017-5020
    [315] A.J.Blackma, R.J.Weils, Dee Why.Caulerpol, a diterpene alcohol, related to vitamin A, from Caulerpa brownie(algae).Tetrahedron Letters. 1976, 31,2729-2730.
    [316] D. J.Faulkner. Marine natural products. Natural Product Reports. 1987, 1: 540-542.
    [317] V.J.Paul and W. Fenical.Diterpenoid metabolites from pacific marine algae of the order Caulerpales(Chlorophyta). Phytochemistry, 1985, 24(10): 2239-2243.
    [318] Jing-Yu Su,Ye Zhu, Long-Mei Zeng, and Xiao-Hua XU. A new bisindole from alga Caulerpa serrulata. J. Nat.Prod..1997,60, 1043-1044.
    [319] J.T.Handley, A.J.Blackman.Monocyclic diterpenes from the marine alga Caulerpa trifaria(Chlorophyta).Aust. J.Chem..2000,53,67-71.
    [320] 徐石海,岑颖洲,曾陇梅.棒叶蕨藻中红色素的分离及结构确定,化学试剂,1998,20(5):265-266.
    [321] 徐石海,曾陇梅.棒叶蕨藻的化学成分研究.中草药,1998,29(2):80-82.
    [322] 徐石海,曾陇梅,苏镜娱,等.海藻Caulerpa sertularioides中的甾醇化合物.中山大学学报(自然科学版),1997,36(1),113-115.
    [323] 徐石海,曾陇梅,苏镜娱.两种神经酰胺分离与结构鉴定.中山大学学报(自然科学版),1997,36(suppl.2),84-87.
    [324] R. Lemee, D. Pesando, C.lssanchou, &P. Amade. Microalgae: a model to investigate the ecotoxicity of the green alga Caulerpa taxifolia from the Mediterranean sea. Marine Environmental Research. 1997, 44(1), 13-25.
    [325] JINGYU SU, YINGZHOU CEN. Chemistry of Chinese marine organisms. Book of chemical and biological basis for the diresity of marine life. 1997, 10.
    [326] P.Amade, R.Lemee.Chemical defence of the Mediterranean alga Caulerpa taxifolia: variations in caulerpenyne production.Aquatic Toxicology, 1998, 43,287-300.
    [327] Shi Hai XU, Ying Zhou CEN, Long Mei ZENG. Sertularamide from the alga Caulerpa sertularioids. Chinese Chemical Letters. 1997, 8(5), 419-420.
    [328] Capon, R.J.,E.L.Ghisalberti&P. R.Jefferies.New sequiterpenes from Caulerpa flexilis var. muelleri. Aust.J.Chem.,1981b,34:1775-1778.
    [329] D. Pesando, R. Lemee,C.Ferrua, P.Amade, J. P. Girard.Effects of caulerpenyne, the major toxin from Caulerpa taxifolia on mechanisms related to sea urchin egg cleavage. Aquatic Toxicology, 1996,35, 139-155.
    [330] M.Brunelli,M. Garcia-Gil,R. Mozzachiodi,M. Roberto,R.Scuri, G. Traina and M.L.Zaccardi. Neurotoxic effects of caulerpenyne. Prog. Neuro-Psychopharmacol & Biol Psychiat.2000,24,939-954.
    [331] R. Mozzachiodl, R.Scurl, M.Romoberto, M.Brunelli.Caulerpenyne, a toxin the seaweed Caulerpa taxifolia, depresses afterhyper-polarization in invertebrate neurons Neuroscience. 2001, 107 (3), 519-526.
    [332] P.Barbier, S.Guise, P.Huitorel, P.Amade, D.Pesando, C.Briand, V.Peyrot. Caulerpenyne from Caulerpa taxifolia has an antiproliferative activity on tumor cell line SK-N-SH and modifies the microtubule network. Life Sciences.2001,70,415-429.
    [333] M. F.Raub,J.H.Cardellina II,J.G.Schwed.The green algal pigment caulerpin as a plant growth regulator. Phytochemistry. 1987,26(3), 619-620.
    [334] 徐效华,苏镜娱.Caulerpin的分离鉴定及生物活性.中山大学学报(自然科学版),1996,35(2),64-66.
    [335] 黄丽波,岑颖洲,徐石海,李药兰,许少玉,伍秋明.海藻中植物生长激素Caulerpin的研究进展.天然产物研究与开发,2000,13(2),74-78.
    [336] 唐孝礼,许实波,徐石海,曾陇梅.蕨藻素对醋酸所致小鼠扭体反应的影响.中国海洋药物,1997,4,27-30.
    [337] 杨宜婷,岑颖洲,肇静娴,狄静芳.麒麟菜中蕨藻红素抗肿瘤活性研究.中国病理生理杂志,2002,18(7):851-852.
    [338] H.C.Schroder, F.A.Badria, S.N.Ayyad, R.Batel, M.Wiens, H.M.A. Hassanein, B.Kurelec, W.E.G.Miiller.Inhibitory effects of extracts from the marine alga Caulerpa taxifolia and of toxin from Caulerpa racemosa on mulixenobiotic resistance in the marine spong Geodia cydonium. Environmental Toxicology and Pharmacology.1998,5, 119-126.
    [339] Ghosh, Partha; Adhikari, Utpal; Ghosal, Prodyot K.; Pujol, Carlos A.; Carlucci, Maria J.; Damonte, Elsa B.; Ray, Bimalendu. In vitro anti herpetic activity of sulfated polysaccharide fractions from Caulerpa racemosa. Phytochemistry (Elsevier) (2004), 65(23), 3151-3157.
    [340] Ito, Makoto; Yamaguchi, Kuniko; Izumi, Kaya. Xylooligo- saccharide compositions, and cancer cell apoptosis inducers containing them. Jpn. Kokai Tokkyo Koho (2001), 7 pp.
    [341] Mohamed, Wafaa A. H. Chemical composition and biological activities of native and modified polysaccharides from the marine alga Caulerpa racemosa. Bulletin of the National Research Centre (Egypt) (2000), 25(2), 115-122.
    [342] Lee, Jung-Bum; Hayashi, Kyoko; Maeda, Masaakira; Hayashi, Toshimitsu. Antiherpetic activities of sulfated polysaccharides from green algae. Planta Medica (2004), 70(9), 813-817.
    [343] Prasada Rao, N. V. S. A. V.;Venkata Rao, E. Studies on Indian seaweed polysaccharides. Part 3. Structural features of the sulfated polysaccharide from a green seaweed, Caulerpa taxifolia. Phytochemistry (1986), 25(7), 1645-1647.
    [344] Dreher, T. W.; Hawthorne, D. B.; Grant, B. R. The wound response of the siphonous green algal genus Caulerpa Ⅲ: composition and origin of the wound plugs. Protoplasma (1982), 110(2), 129-137.
    [345] Mackie, I. M.; Percival, Elizabeth. Polysaccharides from the green seaweeds of Caulerpa spp. Ⅲ. Detailed study of the H_2O-sol. polysaccharides of C.filiformis-comparison with the polysaccharides synthesized by C. racemose and C. sertularioides. Journal of the Chemical Society, Abstracts (1961), 3010-3015.
    [346] Mackie, I. M.; Percival, Elizabeth. Constitution of xylan from the green seaweed Caulerpa filiformis. Journal of the Chemical Society (1959), 1151-1156.
    [347] Miwa, Tomoo; Iriki, Yoshihiko; Suzuki, Takeo. Mannan and xylan as essential cell wall constituents of some siphonous green algae. Colloques Internationaux du Centre National de la Recherche Scientifique (1961), Volume Date 1960, No. 103 135-144.
    [348] 徐石海,岑颖洲,刘明正等.海藻中两种化学成分的分离和结构鉴定,药学学报,2000,35(1):26-28.
    [349] 孙奕,侯柏玲,杨颖等.石莼的化学成分,沈阳药科大学学报,2006,23(3):148-150.
    [350] 刘朝阳,孙晓庆.石莼的综合开发与利用前景,饲料资源,2006(17):35-37.
    [351] 徐娟华,丁红霞.绿藻石莼多糖的提取工艺,中国医药工业杂志,2002,33(10):476-478.
    [352] 雷晓凌,陈荣等.南海绿藻石莼营养成分的初步研究,海南师范学院学报(自然科学版),2003,16(2):79-84.
    [353] 张起信.浅谈石莼资源的开发与利用,实验与技术,1-2.
    [354] 毛文君,管华诗等.几种海洋生物体内硒含量的测定,海洋湖沼,1995,4:21-25
    [355] 徐娟华,马武翔等.石莼多糖的提取分离及其降血脂作用的初步研究,中国中医药科技,2002,9(3):167-168.
    [356] 徐娟华,赵孟辉等.海藻石莼降血糖作用的实验研究,中国中医药科技,2002,9(3):168-169.
    [357] 陈怡,曾昭晖.海白菜多糖的提取分析及活性测定,首都医科大学学报,1997,18(3):179.
    [358] 刘志峰,宫晓黎等.五种海藻多糖体外抗血小板聚集作用的观察,中国海洋药物,2001,2:36-38.
    [359] Yamada等.J Pharm Sci,1983,72(8):945.
    [360] 苏秀榕,李太武,常少杰.中国海洋.
    [361] 王艳梅,牛锡珍,张虹.孔石莼多糖的分离分析,中国海洋药物,2002,6:4-7,19.
    [362] Shibata H, Kimura-Takagi I, Nagaola M, etal. Inhibitory of Cladosiphon fucoidan on the adhesion of Helicobacter pylori to human [J]. Journal of nutritional science and vitaminology, 1999,45(3):325.
    [363] 吴志军,徐祖红,李智恩.孔石莼热水提取多糖的研究,实验与技术,2003,27(2):5-7.
    [364] 王艳梅,李智恩,徐祖洪等.孔石莼化学组分和药用活性研究进展,科学视野,2000,24(3):25-28.
    [365] 吴志军,熊慧萍,李智恩.孔石莼脂溶性化学成分的分析,海洋科学,2000,24(5):3-4.
    [366] 王艳梅,李智恩,牛锡珍等.孔石莼多糖降血脂活性的初步研究,中国海洋药物,2003,2:33-35.
    [367] 吴志军,徐祖洪,李智恩等.孔石莼Ulva pertusa Kjellm调血脂作用的初步研究,海洋与湖沼,2004,35(2):138-140.
    [368] 刘振宇,谢荔岩,吴祖建等.孔石莼Ulva pertusa中一种抗TMV活性蛋白的纯化及其特性,植物药理学报,2005,35(3):256-261.
    [369] 李丹彤,崔铁军,吕欧等.孔石莼Ulva pertusa凝集素的分离纯化及性质的研究,中国生物化学与分子生物学报,2000,16(6):774-778.
    [370] Muto, Shigeaki, Niimura ctal.
    [371] 蔡恒江,唐学玺,张培玉等.UV_B辐射对孔石莼生长及其生理生化特征的影响,科学技术与工程,2005,5(5):283-287.
    [372] 张翼,冯妍,李晓明等.海藻组分抑制乙酰胆碱酯酶活性研究,海洋与湖沼,2005,36(5):459-463.
    [373] 陶平,贺凤伟.大连沿海3种大型速生海藻的营养组成分析,中国水产科学,2001,7(4):60-63.
    [374] 卢启洪.海藻孔石莼化学成分研究,浙江大学研究生学位论文.2006.
    [375] Pandey, Mithlesh; Garg, H. S.; Bhakuni, D. S. Chemical constituents of Ulva fasciata from Indian coast. Journal of the Indian Chemical Society (1988), 65(9), 675-676.
    [376] Khotimchenko, S. V.; Vysotskii, M. V.; Svetashev, V.1.; Vas'kovskii, V.E. Diacylglycero-4'-O-(N,N,N-trimethyl)homoserine in macro- phytic green algae. Bioorganicheskaya Khimiya (1985), 11(1), 108-112.
    [377] Sakata, Kanzo; Tsuge, Masahiro; Kamiya, Yuji; lna, Kazuo. Chemical studies on phagostimulants for marine gastropods. Part Ⅳ. Isolation of a glycerolipid (DGTH) as a phagostimulant for a seahare, Aplysia juliana, from a green alga, Ulva pertusa. Agricultural and Biological Chemistry (1985), 49(6), 1905-1907.
    [378] Yamada, K.; Shizuri, Y.; Ishida, Y.; Shibata, S. Cardiac inhibitory action of constituents of the marine green alga Ulva pertusa. Journal of Pharmaceutical Sciences (1983), 72(8), 945-946.
    [379] Awad, N. E. Phycochemical and biological investigation on Ulva lactuca Linnaeus and Ulva fasciata Delile from Alexandria seashore of Egypt. Bulletin of the Faculty of Pharmacy (Cairo University) (2002), 40(1), 97-108.
    [380] Pandey, M.; Garg, H. S.; Bhakuni, D. S.; Dhar, M. M. An antiviral agent from Ulva fasciata. Bioact. Compd. Mar. Org. Indo-U. S. Symp. (1991), Meeting Date 1989, 283-287.
    [381] Afzal Rizvi, Muhammad; Shameel, Mustafa. Pharmaceutical Biology of Seaweeds from the Karachi Coast of Pakistan. Pharmaceutical Biology (Philadelphia, PA, United States) (2005), 43(2),
    [382] Kamat, S. Y.; Wahidulla, S.; D'Souza, L.; Naik, C. G.; Ambiye, V.; Bhakuni, D. S.; Goel, A. K.; Garg, H. S.; Srimal, R. C. Bioactivity of marine organisms. Ⅵ. Antiviral evaluation of marine algal extracts from the Indian coast. Botanica Marina (1992), 35(2), 161-164.
    [383] 周慧萍,朱海燕,陈琼华等.浒苔多糖的分离、纯化和分析,生物化学杂志,1995,11(1):91.
    [384] 徐大伦,欧昌荣,黄晓春等.浒苔多糖脱蛋白方法的研究,水产科学,2005,24(5):26-27.
    [385] 徐大伦,欧昌荣,杨文鸽等.纤维素酶法提取浒苔多糖的工艺条件,海洋渔业,2005,27(1):85-88.
    [386] 徐大伦,黄晓春,欧昌荣等.浒苔水溶性多糖提取的工艺研究,浙江海洋学院学报(自然科学版),2005,24(1):67-69.
    [387] 徐大伦,黄晓春,杨文鸽等.浒苔营养成分分析,浙江海洋学院学报(自然科学版),2003,22(4):318-320.
    [388] 窦后松,陈静,张克荣.绿藻浒苔石莼中微量元素铁的含量测定,微量元素与健康研究,2000,17(3):36-37.
    [389] 徐大伦,黄晓春,杨文鸽等.浒苔多糖的分离纯化及其对非特异性免疫功能的体外实验研究,中国食品学报,206,6(5):17-21.
    [390] 徐大伦,黄晓春,欧昌荣等.浒苔多糖对华贵栉孔扇贝血淋巴中SOD酶和溶菌酶活性的影响,水产科学,2006,25(2):72-74.
    [391] 周慧萍,蒋巡天,王淑如等.浒苔多糖的降血脂及其对SOD活力和LPO含量的影响,生物化学杂志,1995,11(2):161-165.
    [392] 陈南岳,赵明伦.PKC抑制剂与六种海洋生物和中草药对鼻咽癌细胞生长的影响,中国病理生理杂志,1996,12(6):596-599.
    [393] 郑怡.福建部分海藻凝集素的检测,福建师范大学学报(自然科学版),1994,10(1):101-105.
    [394] 赵素芬,吉宏武,郑龙颂.三种绿藻多糖的提取及理化性质和活性比较,台湾海峡,2006,25(4):484-489.
    [395] 宋玉娟,崔铁军,李丹彤等.肠浒苔凝集素的分离纯化及性质研究,中国海洋药物杂志,2005,24(1):1-5.
    [396] 贺凤伟.渤海沿海几种速生海藻无机营养元素的分析.锦州师范学院学报(自然科学版),2003,23(1):33-36.
    [397] 刘维刚,林益明,陈贞奋等.福建红树林区4种海藻的营养成分,海洋学报,2002,24(3):88-93.
    [398] 李宪璀,范晓,韩丽君等.海藻提取物中a-葡萄糖苷酶抑制剂的初步筛选,中国海洋药物,2002,2:8-11.
    [399] 吉宏武,赵素芬.南海3种可食绿藻化学成分及其营养评价,湛江海洋大学学报,2005,25(3):19-23.
    [400] 邹定辉,陈雄文.高浓度CO_2~-对条浒苔(Enteromorpha clathrata)生长和一些生理生化特征的影响,海洋通报,2002.21(5):38-45.
    [401] Mahmoud, A. E., etal.-Hydroxybutyric acid polymer from hydroclathrus clathratus. J.Nat. Prod.,1985,48 (5): 809.
    [402] 李筱玲,徐石海等.网胰藻Hydroclathrus clathratus中次级代谢物的分离与结构鉴定,中药材,2004,27(4):254-256.
    [403] 李筱玲,徐石海等.网胰藻 Hydroclathrus clathratus的化学成分研究,有机化学,2004,24(9):8-11.
    [404] 李浩华,徐石海等.网胰藻中的含氮化合物,光谱实验室,2006,23(2):191-193.
    [405] Xiao Hua XU, Xiao CHEN, Jian Hua Lu, etal. A New Diterpenoid from Hydroclathrus tenuis [J]. Chinese Chemical Letters, 2001, 12 (8):709.
    [406] 何冬红,徐石海等.薄叶网胰藻Hydroclathrus tenuis的化学成分研究,中国海洋药物杂志,2005,24(2):6-8.
    [407] 袁兆慧,韩丽君,范晓等.红藻扇形叉枝藻中的降碳倍半萜及其衍生物,中国中药杂志,2006,31(24):2046-2048.
    [408] 徐石海,杨剑萍,廖小建等.海藻Hypnea charoides中新鞘脂糖苷的提取与分离,中药材,2006,29(7):673-675.
    [409] 杨剑萍,徐石海,郭书好等.长枝沙菜乙醇-乙酸乙酯溶出物的化学成分,化学研究与应用,2005,17(1):73-74.
    [410] 杨剑萍,徐石海,郭书好等.长枝沙菜Hypnea Charoides次级代谢物的分离与结构鉴定,光谱实验室,2005,22(2):440-442.
    [411] 赵谋明,李少霞,叶林等.高凝胶性能沙菜卡拉胶碱处理工艺的研究,食晶工业科技,2000,21(5):13-15.
    [412] 赵谋明,林伟锋,杨晓泉等.酶法处理沙菜藻体对卡拉胶得率和品质的影响研究,食品科学,2002,23(6):27-31.
    [413] 赵晟,刘芳,赵谋明等.沙菜卡拉胶生产中碱处理对藻体的影响及工艺条件最优化研究,食品科技,2001,2:43-45.
    [414] 史升耀,徐祖洪.沙菜胶的初步研究,水产学报,1981,5(2):179-185.
    [415] 范丙基,奚干卿,林秀春.沙菜(卡拉)胶的研究-沙菜卡拉胶及其试产品的性能和应用初试,海南大学学报自然科学版,1986,4(1):55-62.
    [416] 范柄基,吴周新,吴世惠等.沙菜(卡拉)胶的研究碱处理引起的SO_4~(2-)含量变化及对产品质量的影响,海南大学学报自然科学版,1991,9(4):22-26.
    [417] 黄俊辉,曾庆孝,佘纲哲.南海海域数种海藻总脂质及脂肪酸含量的比较,湛江海洋大学学报,2001,21(2):23-29.
    [418] 陈素珍,关雄泰,徐美亦.沙菜属三种经济藻类氨基酸与微量元素含量及其意义,广东微量元素科学,1999,6(8):48-51.
    [419] 史大永,韩丽君,孙杰等.海藻基根硬毛藻的化学成分研究,中国中药杂志,2005,30(5):347-350.
    [420] 史大永,韩丽君,孙杰等.绿藻基根硬毛藻的化学成分及其活性,中国中药杂志,2005,30(15):1162-1165.
    [421] Ito.H., Antitumor polysaccharide fraction from Sagassum thunbergi, Chem, Pharm, Bull, 1976, 24 (5): 1114-1115.
    [422] 俞丽君,张尔贤,陈洁辉等.海藻多糖的实验研究-鼠尾藻与铜藻多糖的分离与纯化,汕头大学学报(自然科学版),1990,5(1):55-60.
    [423] 杨方美,王林,胡秋辉.鼠尾藻多糖的制备及其抗氧化活性,食品科学,2005,26(2):224-227.
    [424] 赵兵,王玉春,孙学兵.循环气升式超声破碎鼠尾藻提取海藻多糖,中国海洋药物,1999,4:19-23.
    [425] 魏玉西,李敬,赵爱云等.鼠尾藻多糖的制备及其抗凝血活性的初步研究,中国海洋药物,2006,25(2):41-44.
    [426] 李玉山,崔征,殷军等.7种马尾藻属海藻碘及微量元素的含量测定,中国海洋药物,1996,4:35-37.
    [427] 韩晓弟,李岚萍.鼠尾藻特征特性与利用.特种经济动植物,2005,1:27.
    [428] 张尔贤,俞丽君,肖湘等.鼠尾藻醇提取物的生理活性和生物化学研究,中国海洋药物,1994,3:1-10.
    [429] 张尔贤,俞丽君,范益华等.鼠尾藻醇提取物的生理活性和若干生化性质研究,药物生物技术,1994,1(1):30-34.
    [430] 张尔贤,俞丽君,范益华等.海藻多糖的实验研究-鼠尾藻和铜藻多糖对EC109细胞株的抑制和对cAMP-PDE的影响,汕头大学学报(自然科学版),1987,1:53-57.
    [431] 张尔贤,俞丽君,朱伦等.海藻多糖的实验研究-鼠尾藻多糖对肉S180的抑制和超氧化物歧化酶的影响,汕头大学学报(自然科学版),1985,1:15-21.
    [432] 林超,于曙光,郭道森等.鼠尾藻中褐藻多酚化合物的抑菌活性研究,海洋科学,2006,30(3):94-97.
    [433] 于志洁等.海洋生物抗放效价初步岩石报告,海洋药物通讯,1979,95.
    [434] 刘志峰,宫晓黎等.五种海藻多糖体外抗血小板聚集作用的观察,中国海洋药物,2001,2:36-38.
    [435] 张尔贤,俞丽君.鼠尾藻多糖清除氧自由基作用的研究Ⅱ.UVc鼠尾藻对 多糖抗氧化作用的影响,中国海洋药物,1997,3:1-4.
    [436] 俞丽君,张尔贤,肖湘等.鼠尾藻多糖清除氧自由基作用的研究Ⅰ对O_2~-·与·OH抑制活性的评价,中国海洋药物杂志,1995,1:1-4.
    [437] 黄智璇,梅雪婷,许东晖等.螺旋藻多糖和鼠尾藻多糖对四氧嘧啶致糖尿病大鼠血管的保护作用,中国中药杂志,2005,30(3):211-215.
    [438] 霍玉书,秦丽雅,唐泽耀等.海产中药-鼠尾藻、角叉菜降糖作用的实验研究,中国中医药科技,1995,2(1):26-28.
    [439] 傅明辉,佘纲哲,许素斌.亨氏马尾藻多糖的分离、纯化和鉴定.中国生化药物杂志,2000,21(2):66-68.
    [440] 卢睿春,刘婉乔,候振建等.酶法提取马尾藻硫酸多糖的研究,中国海洋药物,1997,2:10-13.
    [441] 黄俊辉,成坚,曾庆孝.几种脂肪酶在亨氏马尾藻多不饱和脂肪酸提取中的初步应用研究,仲恺农业技术学院学报,2000,13(4):17-22.
    [442] 汤学军,潘列梅,刘慧铃.马尾藻活性物质对水稻幼苗抗旱性的作用,海洋科学,2000,28(10):45-47.
    [443] 卢睿春,候振建,刘婉乔.亨氏马尾藻硫酸多糖抗肿瘤活性的研究,海洋科学,1998,3:63-64.
    [444] 徐石海,丁立生,王明奎等.匐枝马尾藻的化学成分研究,有机化学,2002,22(2):138-140.
    [445] 王培荣,徐冠军,边立曾等.海黍子马尾藻(Sargassum muticum)中甾醇类化合物的研究,科学通报,2006,51(14):1702-1709.
    [446] 吕志华,于广利,迟连利等.海黍子多酚对亚油酸甲酯氧化的抑制作用,中国海洋药物,2001,6:25-28.
    [447] 魏玉西,于曙光.两种褐藻乙醇提取物的抗氧化活性研究,海洋科学,2002,26(9):49-51.
    [448] 魏玉西,徐祖洪.褐藻中高相对分子质量褐藻多酚的抗氧化活性研究,中草药,2003,34(4):317-319.
    [449] 于广利,吕志华,王曙光.海黍子提取物对不饱和脂质抗氧化作用,青岛海洋大学学报,2000,30(1):75-80.
    [450] 常秀莲,王文华,冯咏梅等.海黍子吸附重金属镉离子的研究,海洋通报,2003,22(4):26-31.
    [451] 袁清香,付铃.铜藻Sargassu Horneri的化学成分研究,广东化工,2006, 33(5):42-43.
    [452] 王作芸,赵学武.铜藻的褐藻糖胶、褐藻淀粉和褐藻胶的分离及提纯,水产学报,1985,9(1):71-77.
    [453] 赵学武,王作芸,郑昆勤等.铜藻的褐藻淀粉的提取和磺化方法,水产学报,1982,6(4):379-384.
    [454] 欧云付,尹平河,赵铃.半叶马尾藻粗糖中单糖的离子色谱法分析,色谱,2006,24(4):411-413.
    [455] 孟庆勇,刘志辉,徐美奕等.半叶马尾藻多糖对[(60)~Co]γ射线损伤小鼠骨髓细胞的影响,中国病理生理杂志,2006,22(9):1850-1851,1870.
    [456] 唐慎华,贾秀红,朱淑霞等.半叶马尾藻多糖对HL-60细胞CD_(11b)和CD_(11a)表达的体外影响,滨州医学院学报,2006,29(5):324-326.
    [457] 刘红兵,崔征,李玉山,半叶马尾藻化学成分的研究Ⅰ.中国药学杂志,1998.33(8):464-466.
    [458] 刘红兵,崔征,李玉山,袁丹.半叶马尾藻化学成分的研究Ⅱ.中国药学杂志,1999,34(8):549.
    [459] 孟庆勇,刘志辉,徐美奕等.半叶马尾藻多糖的提取和分析,光谱学与光谱分析,2004,24(12):1560-1562.
    [460] Meng, Qingyong; Liu, Zhihui; Xu, Meiyi. Effect of Sargassum hemiphyllum polysaccharides on splecocytes in irradiated mice. Hejishu, 2005, 28(7): 542-545.
    [461] Meng, Qingyong; Liu, Zhihui; Zheng, Hui; Xu, Meiyi. Protective effects of Sargassum Hemiphyllum polysaccharides on the oxidative damage induced by γ-rays in mice. Zhongguo Haiyang Daxue Xuebao, Ziran Kexueban (2004), 34(4): 589-593.
    [462] Meng, Qingyong; Liu, Zhihui; Zheng, Hui. Effect of Sargassum hemiphyllum polysaccharides on the colony-forming unit of bone marrow cells in irradiated mice. Zhongguo Haiyang Daxue Xuebao, Ziran Kexueban, (2005), 35(3):503-506.
    [463] 孟庆勇,刘志辉,郑辉等.半叶马尾藻多糖对辐射损伤小鼠骨髓CD_(34)~+细胞和SCFmRNA表达的影响.中国海藻药物杂志,2005,24(6):19-23.
    [464] 孟庆勇,刘志辉,郑辉等.半叶马尾藻多糖对辐射损伤小鼠巨噬细胞功能和胸腺细胞周期进程的影响.辐射防护,2005,25(4):211-216.
    [465] 刘秋英,孟庆勇.半叶马尾藻多糖对S_(180)肉瘤的抑制作用及其机制, 癌症,2005,24(12):1469-1473.
    [466] 刘秋英,需庆勇.半叶马尾藻多糖体内抗肿瘤作用及其机制,第一军医大学学报,2004,24(4):434-436.
    [467] 蒋林斌,谢天俊.从马尾藻中提取褐藻酸钠的漂白工艺条件研究,广西农业生物科学,2000,19(1):49-53.
    [468] Cui, Zheng; Li, Yu-Shan; Liu, Hong-Bing; Yuan, Dan; Lu, BaoRen, sulfoglycolipid from the marine brown alga Sargassum hemiphyllum. Journal of ATIan Hatural Products Research 2001, 3(2): 117-122.
    [469] Takada, Hoboru; Watanabe, Reiko; Suenaga, Kiyotake; Yamada, Kaoru; Uemura, Daisuke, Isolation and structures of hedaols A, B, and C, new bisnorditerpenes from a Japanese brown alga. Journal of Natural Products, 2001, 64(5): 653-655.
    [470] Jang, Kyoung Hwa; Lee, Bong Ho; Choi, Byoung Wook; Lee, Hyi-Seung; Shin, Jongheon.Chromenes from the brown alga Sargassum Tlliquastrum. Journal of Natural Products 2005, 68(5): 716-723.
    [471] Qi, Shu-Hua; Zhang, TI; Huang, Jian-She; Xiao, Zhi-Hui; Wu, Jun; Long, Li-Juan.Glycerol derivatives and sterols from Sargassum parvive TIculosum. Chemical & Pharmaceutical Bulletin 2004, 52(8): 986-988.
    [472] Tang, Haifeng; Yi, Yanghua; Yao, Xinsheng; Xu, Qiangzhi; Zhang, Shuyu; Lin, Houwen. A novel steroid for Sargassum carpophyllum. Zhongguo Haiyang Yaowu, 2003, 22(2): 28-30.
    [473] Ayyad, Seif-Eldin N.; Sowellim, Salah Z. A.; EI-HoTIni, Mohamed S.; Abo-Atia, Amal. The structural determination of a new steroidal metabolite from the brown alga Sargassum asperfolium. Journal of Biosciences, 2003, 58(5/6):333-336.
    [474] Tang, Hai-Feng; Yi, Yang-Hua; Yao, Xin-Sheng; Xu, Qiang-Zhi; Zhang, Shu-Yu; Lin, Hou-Wen. Bioactive steroids from the brown alga Sargassum carpophyllum. Second Military Medical UniverTlty, Shanghai, Peop. Rep. China.Journal of ATIan Hatural Products Research, 2002, 4(2): 95-101.
    [475] Matsunaga, Takayuki; Takahashi, Satoshi; Hasegawa, Chika, etal; Macrocyclic compound. Mori, Jun. PCT Int. Appl. 2002.
    [476] Xu, Shihai; Cen, Yingzhou; Liu, Mingzheng; etal. Isolation and identification of two constituents from algae, Yaoxue Xuebao, 2000, 35(1): 26-28.
    [477] Xu, Shi-Hai; Ding, Li-Sheng; Wang, Ming-Kui;etal. Studies on the hemical constituents of the algae Sargassum polycystum. Chengdu Institute of Biology, Youji Huaxue, 2002, 22(2): 138-140.
    [478] Tsuchiya, Naoko; Sato, Aiya; Haruyama, Hideyuki; Watanabe, Tohru;lijima, Yasuteru. Nahocols and isonahocols, endothelin antagonists from the brown alga, Sargassum autumnale. Phytochemistry, 1998, 48(6):1003-1011.
    [479] Keusgen, Michael; Glombitza, Karl-Werner. Phlorethols, fuhalols and their devivatives from the brown alga Sargassum spinuligerum. Phytochemistry, 1995, 38(4): 975.
    [480] Glombitza, Karl-Werner; Keusgen Michael. Fuhalols and deshydroxyfuhalols from the brown alga Sargassum spinuligerum. Phytochemistry 1995, 38(4): 987.
    
    [481] Keusgen, Michael; Glombitza, Karl-Werner. Pseudofuhalols from the brown alga Sargassum spinuligerum. Phytochemistry 1997, 46(8): 1403-1415.
    [482] Glombitza, Karl-Werner; Keusgen, Michael; Hauperich, Sabine. Fucophlorethols from the brown algae Sargassum spinuligerum and Cystophora torulosa. Phytochemistry, 1997, 46(8): 1417-1422.
    [483] Keusgen, Michael; Falk, Michael; Walter, John A.; Glombitza, Karl-Werner. A phloroglucinol derivative from the brown alga Sargassum spinuligerum. Phytochemistry, 1997,46(2):341-345.
    [484] Tsang, C. K.; Ina, A.; Goto, T.; Kamei, Y. Sargachromenol, a novel nerve growth factor-potentiating substance isolated from Sargassum macrocarpum, promotes neurite outgrowth and survival via distinct TIgnaling pathways in PC12D cells. Neuroscience (Oxford, United Kingdom) 2005, 132(3): 633-643.
    [485] Ryu, Geonseek; Park, Soo Hee; Kim, Eun Sook; Choi, Byoung Wook; Ryu, Shi Yong; Lee, Bong Ho. Cholinesterase inhibitory activity of two farneSPlacetone derivatives from the brown alga Sargassum sagamianum. Archives of Pharmacal Research, 2003, 26(10):796-799.
    [486] Tang, Haifeng; Yi, Yanghua; Yao, Xinsheng; Xu, Qiangzhi; Zhang, Shuyu; Sun, Peng. Studies on chemical constituents from marine brown algae Sargassum carpophyllum. Zhongguo Haiyang Yaowu 2002, 21(6): 11-15.
    [487] Tang, HaiFeng; Yi, YangHua; Yao, XinSheng. Glycerides from marine brown algae Sargassum carpophyllum. Zhongguo Haiyang Yaowu 2002, 21(5): 5-9.
    [488] Xu, Shi Hai; Cen, Ying Zhou; Li, Yao Lan; Xu, Shao Yu. A novel eleven-membered heterocyclic compound from algae Sargassum vachellianum. Chinese Chemical Letters, 1999, 10(5): 401-402.
    [489] Ayyad, Seif-Eldin N.; Slama, M. O.; MoKhtar, A. H.; Anter, A. F.Cytotoxic bicyclic diterpene from the brown alga Sargassum crispum. Bollettino Chimico Farmaceutico, 2001, 140(3): 155-159.
    [490] Iwahori, Yoshihiro; Okada, Yoshihito; Tanaka, Jiro; Okuyama, Toru. Isolation of 24-hydroperoxy-24-vinylcholesterol from Sargassaceae seaweeds using chitin column chromatography. Natural Medicines (Tokyo), 2000, 54(5): 265-269.
    [491] Tsukamoto, Sachiko; Hirota, Hiroshi; Kato, Haruko; Fusetani, Nobuhiro Diphlorotannins and sulfoquinovoSPl diacylglycerols: promoters of larval metamorphoTIs in ascidians, isolated from the brown alga Sargassum thunbergii. Fisheries Science 1994, 60(3): 319-321.
    [492] Kobayashi, Masaru; Hasegawa, Akemi; Mitsuhashi, Hiroshi. Marine sterols. XV. Isolation of 24-vinyloxycholesta- 5,23- dien -3 -ol from the brown alga Sargassum thumbergii. Chemical & Pharmaceutical Bulletin, 1985, 33(9): 4012-4013.
    [493] Numata, Atsushi; Kanbara, Shoichi; Takahashi, Chika; Fujiki, Ryoko; Yoneda, Michiko; Usami, Yoshihide; Fujita, Eiichi. A cytotoxic principle of the brown alga Sargassum tortile and structures of chromenes. Phytochemistry ,1992, 31(4): 1209-1213.
    [494] Kikuchi, Tohru; Mori, Yuji; Yokoi, Toshio; Nakazawa, Shozo; Kuroda, Hiroyuki; Masada, Yoshiro; Structure and absolute configuration of Sargatriol, a new isoprenoid chromenol from a brown alga, Sargassum tortile, Chemical & Pharmaceutical Bulletin, 1983, 31(1): 106-113.
    [495] Kikuchi, Tohru; Mori, Yuji; Yokoi, Toshio; Nakazawa, Shozo; Kuroda, Hiroyuki; Masada, Yoshiro; Kitamura, Keisuke; Umezaki, Isamu. Structure of Sargatriol, a new isoprenoid chromenol from a marine alga, Sargassum tortile. Chemical & Pharmaceutical Bulletin 1975, 23(3): 690-692.
    [496] Kusumi, Takenori; Shibata, Yoshiko; Ishitsuka, Midori; Kino-shita,Takeshi; Kakisawa, Hiroshi. Structures of new plastoquin- ones from the brown alga Sargassum serratifolium. Chemistry Letters, 1979, (3): 277-278.
    [497] Sevilla-Santos, Patrocinio; Aguilar-Santos, Gertrudes; SP, Imelda A.; Castro, Felisa A. Sterols from Sargassum polyceratium and Sargassum confusum. Philippine Journal of Science 1971, 100(3-4): 201-207.
    [498] Fujihara M, Nagumo T. The effect of content of D- mannuronic acid and L-guluronic acid blocks in alginates on anlilumor aclivily. Carbohy. Res., 1992, 224:343-346.
    [499] Hiroyuki N, et al. Antiumor activity of polysaccharides and Lipids from marine algae. Nippon suisan gakkaishi, 1989, 55(7):1265-1271.
    [500] 缪武阳等.马尾藻属海藻对A型肉毒素中毒动物的疗效.中国海洋药物,1985,(3):24-26.
    [501] Yamamoto I, Takahashi M. Antitumor activity of crude extracts from edible marine algae against L-1210 leukemia. Bot.mar.,1982, 25(9): 455-457.
    [502] Hirroyuki N, etal. Studies on the antitumour activity of marine algae. Nippon suisan gakkaishi, 1989, 55(7):1259-1263.
    [503] 王长云,管华诗.多糖抗病毒作用研究进展且硫酸多糖抗病毒作用[J].生物工程进展,2000,20(2):3.
    [504] 汤海峰,易杨华,姚新生.叶托马尾藻中的生物活性甾体成分,中国药学杂志,2002,37(4):262-265.
    [505] 张全斌,徐祖洪.几种褐藻中褐藻多糖硫酸酯的分离及分析,海洋科学,1997,3:55-58.
    [506] Hayat S.褐藻Spatoglossum vatiabile中2个新的肉桂酸酯,Chem Pharm Bull,2002,50(9):1297-1299.
    [507] 杨瑞云,李春远,林永成.Lasiodiplodins系列化合物的NMR研究,分析测试学报,2007,26(1):12-15.
    [508] 杨贤庆,李来好,戚勃.4种海藻膳食纤维对Cd~(2+)、pb~(2+)、Hg~(2+)的吸附作用中国水产科学,2007,14(1):132-138.
    [509] 杨瑞云,李春远,林永成.南海马尾藻(Sargassumsp)内生真菌No.ZZF36中甾醇化合物的研究,中药材,2006,29(9):908-909.
    [510] 吉宏武,何国祥,李剑昆.湛江海域14种主要海藻SOD含量与活力测定,食品研究与开发,2006,27(9):102-106.
    [511] 叶红,吴涛,周春宏.马尾藻多糖提取工艺的优化,食品研究与开发2006,27(7):22-25.
    [512] 王士长,陈静,潘健存.马尾藻多糖的提取及其免疫活性,食品科学,2006,27(9):257-260.
    [513] 叶红,周春宏,卞峰.马尾藻的超临界CO_2脱脂工艺研究,食品工业科技 2006,7:136-137.
    [514] 张锐,龚兴国,郭建军.羊栖菜中岩藻甾醇、马尾藻甾醇以及水溶性多糖的综合提取工艺,农业工程学报,2006,22(4):190-193.
    [515] 朱文,黄荣春,伍泽庚.展枝马尾藻硫酸多糖对呼吸道合胞病毒的抗病毒活性及其机理研究(英文),中国海洋药物杂志,2006,25(1):32-38.
    [516] 王超杰,阎素君,曾陇梅.南中国海海藻叶托马尾藻的化学成分研究,色谱,1997,15(5):396-399.
    [517] 杨堃娴,孙雪芬.马尾藻水提物的成分分析及其固体饮料研制,广东药学院学报,2001,17(1):36-37.
    [518] 候振建,刘婉乔.从马尾藻中提取高粘度海藻酸钠,食品科学,1997,18(9):47-48.
    [519] 候振建,王峰,刘婉乔.马尾藻海藻酸钠漂白的研究,海洋科学,2001,25(5):10-11.
    [560] 邓富文.酶解技术用于马尾藻提取海藻酸工艺的研究,广西化工,1999,28(2):11-13.
    [561] 郑乃余,张燕霞,范晓.海带和马尾藻中褐藻胶的糖醛酸组成与序列结构的研究,海洋与湖沼,1992,23(4):445-453.
    [562] 魏永成,罗福成,刘惠德等.海藻多糖的提取和抗Ⅰ型单纯疱疹病毒研究,天然产物研究与开发,1991,3(1):64-67.
    [563] 李来好,杨贤庆,吴燕燕.马尾藻的营养成分分析和营养学评价,青岛海洋大学学报,1997,27(3):319-315.
    [564] 李来好,杨贤庆,吴燕燕.用正交设计法提取马尾藻高活性膳食纤维,湛江海洋大学学报,1998,18(2):39-43.
    [565] 李来好,李刘冬,杨贤庆.马尾藻的营养组成及其袋泡茶饮料的试制,湛江海洋大学学报,2001,21(1):39-42.
    [566] 陈培基,李刘冬,杨贤庆等.酶处理马尾藻提取膳食纤维的研究,食品与发酵工业,2003,29(12):76-79.
    [567] 黄俊辉,曾庆孝.纤维素酶解法提高海藻脂质抽提率的研究,粮食与油脂,2000,1:9-12.
    [568] 黄俊辉,曾庆孝.纤维素酶酶解法提高海藻脂质抽提率的研究,武汉工业学院学报,2000,2:16-20.
    [569] 关雄泰,徐美亦,杨柄朝等.广东省硇洲岛产两种马尾藻原植物中微量元素的测定,湛江医学院学报,1991,9(3):207-208.
    [570] 候振建,王峰,刘婉乔.马尾藻海藻酸钠抗肿瘤活性的研究,食品科学,2001,22(2):95-97.
    [571] 傅德贤,赵迪,郭澄联.海藻多糖微量元素配合物的生物活性初步研究,热带海洋, 1995,14(1):82-88.
    [572] 陆羡,唐慎华.马尾藻多糖体外对急性髓系白血病细胞株HL-60作用的初步研究,中国小儿血液,2005,10(5):213-216.
    [573] 刘秋英,孟庆勇,刘志辉.两种海藻多糖的提取分析及其体外抗肿瘤作用,广东药学院学报,2003,19(4):336-337.
    [574] 纪明候,徐祖洪,纪祥礼等.褐藻酸钠对放射性锶的阻吸作用研究,水产学报,1982,6(4):321-329.
    [575] 吉长余.马尾藻样品中放射性核素~(110m)Ag测量及探讨,辐射防护,2002,22(2):113-116.
    [576] 陈培基,李来好,李刘冬等.二种褐藻膳食纤维的功能活化及其生理功能的比较,食品科学,2005,26(1):226-230.
    [577] 王新广,张歧,叶飞燕.马尾藻提取液在菠萝果酒酿造中的应用,化学与生物工程,2006,23(6):47-49.
    [578] 徐年军,范晓,韩丽君.山东沿海海藻抗肿瘤活性的筛选,海洋与湖沼2001,32(4):408-412.
    [579] 赵素芬,孙会强,袁振江.硇洲岛春季底栖海藻资源,上海水产大学学报,2006,15(3):321-327.
    [580] 纪明侯.海藻化学.科学出版社,1997.
    [581] 曾呈奎,张德瑞,张俊甫等.中国经济海藻志,科学出版社,1962.
    [582] 夏邦美.中国海藻志,科学出版社,2004.
    [583] 张义浩,赵盛龙,吴常文等.海洋生物系列丛书,海洋生物—藻类,浙江大学出版,2002.
    [584] 王民生.中国古代利用海藻的考证.中国渔业经济,2001,4:51-52
    [585] Bligh E. G,,Dyer W. J.. A rapid method of total lipid extraction and purification. Canadian Journal of Biochemistry and Physiology, 1957, 37: 911-917.
    [586] 黄俊辉,曾庆孝,佘纲哲.南海海域数种海藻总脂质及脂肪酸含量的比较.湛江海洋大学学报,2001,21(2):23-29
    [587] Sturgeon R E, Peter P R.. Determination of trace elements in sea seiments. Anal Chem Acta.1982,134:283-294.
    [588] 宁正祥.食品成分分析手册[M].北京:轻工业出版社,1998,45-47,117-119.
    [589] 朱彦群,倪群.牛乳中蛋白质的快速测定,现代食品科技,2006,22(1):127-128.
    [590] 卫煜英,曹艳平.气相色谱质谱联用法分析海藻脂肪酸及其它成分.营养学报,1995,17(1):53-55.
    [591] 张凤清,宫莉,丁怀宇.酸性洗涤剂法测定花生渣中的粗纤维.粮油食品科技,2004,12(3):42-43.
    [592] 黄伟坤.食品检测与分析[M].北京:轻工业出版社,1997,49-51,17-18.
    [593] 黄伟坤.食品检测与分析[M].北京:轻工业出版社,1987,43
    [594] http://www.bhih.com/html/2004/O6/20040615093447.shtml
    [595] 胡爱军,丘泰球,梁汉华.海藻EPA、DHA含量及分离浓缩方法.海洋通报,2002,21(2):84-91.
    [596] 吕建州,马庆惠,张冬玲等.大连旅顺沿海17种经济海藻微量元素的ICP测定,微量元素与人体健康,2005,22(3):41-43.
    [597] 杨文豪,吕俊华,徐石海.海藻提取物A1和A2抑制肝癌和肺腺癌细胞增殖作用的实验研究,辽宁中医杂志,2005,32(4):371-372.
    [598] 张玉华,叶德胜.微量元素与人体健康,江西化工,2003,3:52-54.
    [599] 王勤,曹继华,李艳丽.微量元素对人体的重要作用,河南中医学院学报,2003,6:81-83.
    [600] 朱梅年.无机元素对人的影响[J].中医杂志,1983,(5):66.
    [601] 赵晶,红昭毅.儿童缺锌现状及其原因探讨[J].中华儿科杂志,1998,36(1):46.
    [602] 孙飚,韩丽君,娄清香.海藻中砷含量的研究Ⅰ.银盐分光光度法.海洋科学集刊,1998,(40):131-138.
    [603] 范晓,韩丽君.我国常见食用海藻的营养成分分析[J].中国海洋药物,1993,12(4):32-48.
    [604] 王尔茂.食品营养与卫生[M].北京:轻工业出版社,1995.3032309.
    [605] 范文洵,李泽英,赵熙荷.蛋白质食物的营养评价[M],北京,人民出版社,1984,7.
    [606] 田进国,娄红祥,认健等.三十种药材对照品红外光谱的研究,中国科技大学学报,1996,27(1):24-28.
    [607] 金骏,林美娇.海藻利用与加工,北京:科学出版社,1993,10-12.
    [608] 范晓,严小军,韩丽君.海藻加工利用研究进展[J].海洋科学,1995,(4):12-15.
    [609] Kujumgier, A., Tsvetkova, I., Serkedjieva, Y., Bar&ova, V., Christov, R., Popov, S. 1999. Antibacterial, antifungal and antiviral activity of propolis of different geographic origin. J. Ethnopharmacol 64: 235-240.
    [610] Hussain, R. E, Nouri, A. M. E., Oliver, R. T. D. 1993. A new approach for measurement of cytotoxicity using colorimetric assay. Immunol Methods 160: 89-96.
    [611] Miyamaki, Y., Yokkosuka, A., Kuroda, M., Sashida, Y., 2001. Cytotoxic activities and structure-cytotoxic relationship of steroidal saponins. Biol. Pharm Bull 24: 1286-1289.
    [612] 邹立红,侯竹美,秦松.抗病毒海洋生物资源研究现状与展望,海洋科学,2004,28(5):63-68.
    [613] 王南洁.虎仗蒽醌化合物抗CVB3病毒的实验研究[J].成都中医药大学学报,1999,2(22):41-43.
    [614] 李智,董彦亮,纪玉兰.胎膜早破与人类单纯疱疹病毒感染.江苏医药,1997,23(5):330-331.
    [615] 杨占秋.抗病毒药物的临床应用现状.中国医药学杂志,1985,(5):13.
    [616] 吴彤.海洋生物中萜类及甾醇化合物研究近况.中国医药工业杂志,2001,32(7):327-334.
    [617] 倪学文.海洋抗病毒活性物质的研究进展,中国热带医学,2006,6(5):871-874.
    [618] 徐年军,范晓,韩丽君等.山东沿海海藻抗肿瘤活性的筛选,海洋与湖沼,2001,32(4):408-414.
    [619] Patterson G M L, Norton T R, Furusawa E et al, 1984. Antineoplastic evaluation of marine algal extracts. Bot Mar, ⅩⅩⅦ:485-488.
    [620] Numata A, Kanbara S, Takahashi C et al, 1991. Cytotoxic activity of marine algae and a cytotoxic principle of the brown alga Sagassum tortile. Chem Pharm Bull, 39(8):2129-2131.
    [621] Harada H, Kamei Y, 1997a. Selective cytotoxicity of marine algae extracts to several human leukemic cell lines. Cytotechnology, 25:213-219.
    [622] 李彤.瑶医医理简述.广西中医药,2003,26(6):39-41.
    [623] 戴斌,丘翠嫦.瑶药资源及其开发利用研究进展.中国民族民间医药杂志,2003(65):314-318.
    [624] 中国植物志.主编:陈介.北京:科学出版社,1979,58:90-92.
    [625] 宋纬文.三明市紫金牛属药用植物的民间效用及鉴别.福建药学杂志,1990,2(7):90-91.
    [626] 戴斌,李钊东,丘翠嫦,陈少锋,周丽娜.瑶医用紫金牛属(Ardisia)植物的研究——资源调查及其形态显微鉴定.中国民族民间医药杂志,1996,22:26-31.
    [627] 李药兰,苏妙贤,岑颖洲等.小紫金牛的化学成分研究,中药材,2006,29(4):331-333.
    [628] 林秋凤.小紫金牛化学成分及部分生物活性研究.暨南大学硕士毕业论文,2003.
    [629] 苏妙贤.小紫金牛(Ardisia chinensis Benth)和猴耳环(Pithecellobium clypearia Benth)的化学成分和生物活性研究.暨南大学硕士毕业论文,2005.

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