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杜仲化学成分研究及两种新药制剂学研究
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摘要
本文由三部分组成,第一部分为杜仲化学成分的分离分析和高速逆流色谱在杜仲化学成分分离中的应用;第二部分为秦艽地上部分龙胆总苷的提取及薄膜衣片生产工艺和质量标准的研究;第三部分为清热消炎灵薄膜衣片质量标准和生产工艺的研究。
     在第一部分中,运用传统的柱层分离方法从杜仲树皮用有机溶剂萃取后的水层中分离得到七个化合物,分别是桃叶珊瑚苷、松脂醇二葡萄糖苷、中脂素二葡萄糖苷、丁香脂素二葡萄糖苷、橄榄脂素单糖苷、松脂醇单糖苷、地黄普内酯。研究了简便、快速、规模制备松脂醇二葡萄糖苷的新工艺。同时应用高效液相色谱法对杜仲原生皮与再生皮中松脂醇二葡萄糖苷的含量进行了测定,评价再生皮的质量,指出杜仲同一植株剥皮再生可进行两次,每次间隔不少于5年,第三次再生皮的有效成分有待提高。该研究为杜仲剥皮再生技术的开展提供了实验依据,解决了人们对再生皮质量的疑惑。通过对杜仲新鲜树皮在放置过程中桃叶珊瑚苷含量的测定,提示随着时间的推移,桃叶珊瑚苷的含量在逐渐降低。
     高速逆流色谱是近几年发展起来的新的分离技术,它具有分离过程短,效率高,样品预处理简单,操作方便,溶剂消耗少,可避免因不可逆吸附而引起样品损失等优点。我们采用该新技术从杜仲树皮的粗提物中,经一次分离得到纯度在95%以上的松脂醇二葡萄糖苷和丁香脂素二葡萄糖苷。该方法在国内外尚未见报道,研究论文被SCI收录。
     秦艽主要成分为龙胆苦苷,药用其地下部位的根,况且根的生长周期长,产量低,而每年都可收获的地上部分枝叶被弃去,造成浪费。为了扩大药用部位,节约资源,经研究地上部位龙胆苦苷的含量也在2%以上,完全符合药典要求。因此我们对秦艽地上部分龙胆苦苷的提取工艺进行了研究,从中提出符合要求的龙胆总苷,将其压制成片剂,并包成薄膜衣。对片剂生产工艺及质量标准做了研究,解决了该片剂生产过程中易吸潮结块和受热变软两大难题,并将其申报为国家五类新药。
     清热消炎灵薄膜衣片也是我们研制的一个新药,为中药复方制剂。由虎杖、蒲公英、半枝莲等组成,具有清热解毒之功效。对其制剂工艺和质量标准进行了研究。利用薄层层析对制剂中的药材进行定性鉴别,采用高效液相色谱对主要有效成分的含量进行控制,同时摸索了最佳的制粒、压片、包薄膜衣工艺,生产出完全合格的产品。
This paper consists of three parts.The first fraction is extraction, isolation, purification and analysis of bioactive components in Eucommia ulmoides oliv (Duzhong), as well as application of high-speed countercurrent chromatography (HSCCC).The second part is made of the extraction of gentiopicroside in Qinjiao above ground part and its film-coated tablets preparation.The last section is studing on Qingre XiaoYanling film-coated tablets production and quality control standards.
     In the first part,we make use of traditional silica column chromatography method to carry out a systymatic research on the chemical constituts of the bark of Eucommia ulmoides oliv.Seven compounds were obtained from the process.They are aucubin, pinoresinol diglucoside (PDG), Medioresinoldiglucoside, syringaresinoldiglucoside (SDG), olivilglucoside, pinoresinol single-glucoside,loliolide. A new, simple, and rapid technique was established for isolation and purification of PDG from Duzhong.In order to evluate the reborn barks qulity,PDG content in three times reborn barks were determined.The result indicates that the girdling bark regeneration can be made twice,the time between the first and the second is not less than five years.The research also provides an experimental basis for the girdling bark regeneration technologies and solves people's doubts about the quality of recycled bark.
     HSCCC is a liquid-liquid partition chromatography with a liquid stationary phase.lt has advantages of short separating process,high efficiency,simple preparation sample,convenient to operate,less solvent consumption,and eliminating irreversible adsorption.We employed the new technology in separation PDG and SDG from the crude extract of eucommia bark.The method yieded PDG and SDG over 95% purity in a single operation.To our knowledge, this is the first report and the paper about the test was accepted by SCI.
     Gentiopicroside is the main effective ingredients in Qinjiao underground root.Because of longer growth cycle,lower yields,we found new medicinal part in Qinjiao that was wasted every year aboveground.To our research,the content of gentiopicroside in Qinjiao overground part can meet the standard of Chinese Pharmacopoeia.So we studied the extraction technique of gentiopicroside from aboveground part of Qinjiao.The extraction was prepared into film-coated tablets.In the tablets production process,the two problems of absorbing moisture and caking softened were solved.
     In the last chapter,we researched the preparation and quality control standard of Qingre Xiaoyanling film-coated tablets.Thin layer chromatography (TLC) was used for identification,HPLC was employed for the contents of the main active ingredient.
引文
[1]江苏新医学院.中药大词典上册[M].上海:上海科学技术出版社(第一版),1977,1031-1032.
    [2]张康健,张檀.中国神树一杜仲[M].北京:经济管理出版社,1997,1—26.
    [3]肖培根.新编中药志[M].北京:化学工业出版社,(第一版),2002,Vol Ⅲ:595.
    [4]张康健主编.中国杜仲研究[M].西安:陕西科学技术出版社(第一版),1992,19—23.
    [5]董尚胜,翁蔚,查森俊等.杜仲茶风味化学的研究Ⅱ复火对杜仲红茶品质成分的影响[J].林业科学研究,2001,14(1):73-77.
    [6]Deyama T. The constituents of Eucommia ulmoides Oliv. Ⅰ-Isolation of (+)-medioresinol Di.-O-β-D-glucopyranoside. Chem Pharra Bull, 1983, 31(9): 2993-2997.
    [7]Deyama T, Ikawa T, Nishibe S. The constituents of Eucommia ulmoides Oliv Ⅱ-Isolation and structure of three new lignan glycosides. Chem Pharm Bull, 1985, 33(9):3651-3657.
    [8]Deyama T, Ikawa T, Kitagawa S, et al.The constituents ofEucommia ulmoides Oliv. Ⅲ-Isolation and structure of a new lignan glycoside. Chem Pharm Bull, 1986, 34(2): 523-527.
    [9]Deyama T,Ikawa T, Kitagawa S, et al.The constituents of Eucommia ulmoides Oliv. Ⅳ-Isolation of a new sesquilignan glycoside and iridoids. Chem Pharm Bull, 1986, 34(12):4933-4938.
    [10]Deyama T, Ikawa T, Kitagawa S, et al.The constituents of Eucommia ulmoides Oliv Ⅴ-Isolation of dihydroxydehydrodiconiferyl alcoholisomers and phenolic compounds. Chem Pharm Bull, 1987, 35(3):1785-1789.
    [11]Deyama T, Ikawa T, Kitagawa S, et al.The constituents of Eucommia ulmoides Oliv Ⅵ-Isolation of a new sesquilignan and neoligna glycosides. Chem Pharm Bull,1987,35(5):1803-1807.
    [12]Yahara S, Kata K, Nakazawa Y, et al. New iridoid trimers and tetramers from seeds of Eucommia ulmoides. Chem Pharm Bull, 1990, 38(1): 267—269.
    [13]Nakamura T, Nakazawa Y, Onizuka S, et al. Studies on the constituents of Eucommia ulmoides iridoids from the leaves. NatMed, 1997, 51 (2): 275-277.
    [14]Tanaka C, Nakamura T, Nakazawa Y, et al.A new titerpenoid from the leaves of Eucommia ulmoides Olive. Chem Pharm Bull, 1997, 45(4): 1379-1380.
    [15]Nakamura T, Nakazawa Y, Onizuka S, et al. Twelve phenolics from leaves of Eucommia ulmoides. Nat Med, 1998, 52(3): 460-465.
    [16]续俊文,李东,赵平.杜仲的化学成分[J].植物学报,1989,31(2):132-136.
    [17]李东,王翰龙,陈家明,等.杜仲化学成分[J].植物学报,1986,28(5):528-532
    [18]Gonda R, Tomoda M, Shimizu N. et al. An Acidic Polysaccharide Having Activity on the Reticuloendothelial System from the Bark of Eucommia ulmoides. Chem. Pharm. Bull, 1990,38(7):1966-1969.
    [19]成军,赵玉英.杜仲叶黄酮类化合物的研究[J].中国中药杂志,2000,25(5),284-286.
    [20]赵晓明,张檀.杜仲叶多糖研究[J].西北林学院学报,1999,14(4),73-75.
    [21]王俊丽,陈王玲,朱宝成.杜仲氨基酸成分的研究[J].河北大学学报(自然科学版),1994,14(2):80-82.
    [22]藏友维.杜仲化学成分研究进展[J].中草药,1989,20(4):42-44.
    [23]于学玲,朱荣誉,刘晓明.杜仲皮、叶营养成分的分析[J].中草药,1992,23(3):161—164.
    [24]严瑞芳.杜仲胶研究进展及发展前景[J].化学进展,1995,7(1):65-71.
    [25]翟文慧,田秀兰,王景春,等.杜仲胶综合提取方法.中国专利,90101268,1991—10-02
    [26]刘守延,吴雄俊,李献萍,等.杜仲及其炮制品中某些微量元素含量的比较[J].中国中药杂志,1989,14(10):20-22.
    [27]王文明,庞晓萍,成军,等.杜仲化学成份研究概况[J].西北药学杂志,1998,13(2):60-62.
    [28]唐建军,张禄源,何鸣筱.杜仲的研究与应用进展[J].植物学通报,1998,16(5):47-51.
    [29]胡佳玲.杜仲研究进展[J].中草药,1999,30(5):394-396.
    [30]张康健.杜仲叶与皮有效成分含量的比较研究[J].西北林学院学报,1996,11(2):42-46.
    [31]Deyaria Takeshi, Nishibe Sansei, Nakezawa Yoshihisa. Constituents and pharmacological effects of Eucommia and Siberian ginseng. Acta Pharmacol Sic, 2001, 22(12):1057-1070.
    [32]李家实,阎玉凝.杜仲皮与叶化学成分初步研究[J].中药通报.1986,11(8):41—42.
    [33]戚向阳.杜仲生物活性成分研究.[博士学位论文],中国,武汉,华中农业大学,1998.
    [34]Deyama T. The constituents of Eucommia cortex. See Proceedings of the First International Symposium on Eucommia ulmoides, Xi' an, China, 1997, Aug:8-10.
    [35]成军,白发晶,赵玉英,等.杜仲叶中苯丙素类成分研究[J].中国中药杂志,2002,27(1),38—40.
    [36]尉芹,等.杜仲化学成分研究[J].西北林学院学报,1995,10(4):88.
    [37]Li Y, Kamo S.Metori K, et al.The promoting effects of eucommiol from Eucommia cortex on collage synthesis.Biol Pharm Bull, 2000, 23(1): 54-59.
    [38]Yu F. Sasaki, Aki Chiba, Michiko Murakami, et al. Antimutagenicity of Tochu tea (an aqueous extract of Eucommia ulmoides leaves). 2. Suppressing effect of Tochu tea on the urine mutagenicity after ingestion of raw fish and cooked beef. Mutat. Res. 1996, 371:203-214.
    [39]刘小烛,胡忠,李英,等.杜仲皮中抗真菌蛋白的分离和特性研究.云南植物研究,1994,16(4):385.
    [40]Ren-HuaiHuang, et al.Two novel antifungal peptides distinct with a five-disulfide motif from the bark of Eucommia ulmoides Oliv. [J].FEBS Letters, 2002, 521(1-3): 87.
    [41]Okada N, et al. Immunosuppressive activity of a monoterpene from Eucommia ulmoides[J]. Phytochemistry, 1994, 37(1):281-282.
    [42]梁淑芳,等.杜仲果实化学成分的研究[J].西北林学院学报,1997,12(1):43.
    [43]安秋荣,等.杜仲叶脂肪酸的GC-MS分析[JJ.河北大学学报(自然科学版),1998(4):372.
    [44]Sih C J, Ravikumt P R, Huang F C, et al. Isolation and synthesis of pinoresinol diglucoside, a major antihypertensive principle of Tu-Chung[T]. J Am Chem Soc, 1976,98(17): 5412-5413.
    [45]王峰,刘敏,杨连春,等.咖啡酸、阿魏酸对高血压大鼠的降压作用[J].解放军药学学报,1999,15(5):1—4.
    [46]Nishida S, Satoh H. Comparative vasodilating actions among terpenoids and flavonoids contained in Ginkgo biloba extract[J]. Clin Chin Acta, 2004,339(1-2):129-133.
    [47]黄志新,岳京丽,赵凤生,等.槲寄生、杜仲的降血压作用和急性毒性的实验研究[J].天然产物研究与开发,2003,15(3):245—248.
    [48]Kwan C Y, Chen C X, Deyama T, et al. Endothelium-dependent vasorelaxant effects of the aquenous extracts of the Eucommia ulmoides Oliv. leaf and bark:implications on their antihypertensive action[J]. Vascul Pharmac, 2004, 40(5): 229-235.
    [49]许激杨,宋妍,李晖.杜仲木脂素化合物舒张血管作用机制[J].中国中药杂志,2006,31(24):2021—2025.
    [50]史卉妍,何鑫,欧阳冬生,等.京尼平苷及其衍生物的药效学研究进展[J].中国药学杂志,2006,4l(1):4—6.
    [51]Chan E C, Pannangpetch P, Woodman 0 L. Relaxation to flavones and flavonols in rat isolated thoracic aorta:mechanism of action and struture-activity relationships[J]. J Cardiovasc Pharmacol, 2000, 35(2):326-333.
    [52]朱福,章茂顺,王家良,符宗胤.醋柳总黄酮对兔血管紧张素转换酶的抑制作用[J].中国临床药学杂志,2000,9(2):95-99.
    [53]吴锦晖,章茂顺,王家良,符宗胤.醋柳黄酮及其单体对培养自发性高血压 大鼠血管平滑肌细胞c-myc表达的影响[J].华西药学杂志,2001,16(1):72-73.
    [54]Taubert D, Berkels R, Klaus W, et al. Nitric oxide formation and corresponding relaxation of porcine coronary arteries induced by plant phenols:essential structural features[J]. J Cardiovasc Pharmacol, 2002, 40 (5): 701-713.
    [55]罗丽芳,吴卫华,欧阳冬生,等.杜仲的降压成分及降压机制[J].中草药,2006,37(1):150-152.
    [56]徐诗伦,谢邦鉴,周厚琼.杜仲对垂体—肾上腺皮质系统功能的影响[J].中草药,1982,13(6):24-27.
    [57]徐诗伦,等.杜仲对机体非特异性免疫功能的影响[J].中草药,1993,14(8):27.
    [58]徐诗伦,曾庆卓,潘正兴.杜仲对细胞免疫功能的影响[J].中草药,1985,11(9):15-17.
    [59]朱宇红,等.杜仲不同炮制品增强免疫作用比较[J].中国中药杂志,1997,22(10):597.
    [60]薛程远,等.杜仲叶乙醇提取物对小鼠免疫功能的影响[J].甘肃中医学院学报,1998,15(3):50.
    [61]管淑玉,苏薇薇.杜仲化学成分与药理研究进展[J].中药材,2003,26(2):124.
    [62]赖娟华,等.杜仲叶化学成分和药理作用研究概况[J].实用中西医结合临床,2004,4(2):67.
    [63]徐诺摘译.桃叶珊瑚昔抑制乙型肝炎病毒复制的作用[J].国外医学中医中药分册,1998,20(5):48.
    [64]华讯.从杜仲茶提取碱性物质有抗HIV作用[J].医学信息,1996,9(6):10.
    [65]孙燕荣,等.中药杜仲抗HIV作用的实验研究[J].解放军预防医学杂志,2004,22(2):101—103.
    [66]王俊丽.杜仲的研究与应用[J].中草药,1993,24(12),655-658.
    [67]熊飞.杜仲可作空间保健药.科技日报,1991,9月20日第三版
    [68]李亚平.杜仲叶醇提物治疗骨质疏松浅见[J].四川中医,1996,14(9):16.
    [69]胡金家,等.杜仲叶提取物对体外培养的成骨细胞代谢功能调节研究[J].中国中医基础医学杂志,2001,7(4):48-50.
    [70]周华珠,等.杜仲叶提取物对衰老小鼠抗氧化功能的影响[J].徐州医学院学报,1998,18(6):463.
    [71]孟华民.杜仲对小鼠肝、肾LPO,SOD的影响[J].四川省卫生管理干部学院学报,1996,15(3):139.
    [72]Chiu-luan Hsieh and Gow-chin Yen. Antioxidant Actions of Du-zhong (Eucommia ulmoides Oliv.) Toward Oxidative Damage in biomolecules[J]. Life Sciences Including Pharmacology Letters, 2000,66(15): 1387-1400.
    [73]赵晖.杜仲叶药理作用研究—抗衰老作用[J].国外医学·中医中药分册,2000,22(3):151-153.
    [74]Gow-Chin Yen, Chiu-luan Hsieh. Inhibitory effects of Du-zhong (Eucommia ulmoides Oliv.)against low-density lipoprotein oxidative modification. Food Chemistry, 2002,77(4), 449-456.
    [75]张兆云,薛庆海.运用中医药调治几种癌症的体会[J].中国中医药信息杂志,1997,4(8):15.
    [76]Nakamura T, et al. Antimutagenicity of Tochu tea (an aqueous extract of Eucommia ulmoides leaves) Ⅰ. The clastogen-suppressing effects of Tochu tea in CHO cells and mice[J]. Mutation Research. 1997, 388(1):7.
    [77]Deyama T, Nishibe S, Kitagawa S, et al. Inhibition of Adenosine 3', 5'-Cyclic Monophosphate Phosphodiesterase by Lignan Glucosides of Eucommia Bark. Chem. Pharm. Bull,1988,36(1):435-439.
    [78]Shinichi T, SayuriY. Classtogenicity of E. cortex and Astra Gali Radix. JPn. J. Toxicol Environs Health, 1995, 41(6):463-469.
    [79]Ueda S, Iwahashi Y, Production of Anti-Tumor-Promoting Iridoide Glucosides in Genipa Americana and Its Cell Cultures. Journal of Natural Products, 1991, 54(6):1677-1680.
    [80]Wang SW, Lai CY, Wang CJ. Inhibitory Effect of Geniposide on Aflatoxin B, Induced DNA Repair Synthesis in Primary Cultured Rat Hepatocytes. Cancer Lett, 1992, 65 (2): 133—137.
    [81]Kimura Y, Okuda H, Avichi S.Effect of Geniposide Isolated from Gardenia jasminoides on Metabolic Alterations. Chem. Pharm. Bull, 1982, 30(12): 4444-4447.
    [82]Chang IM, Ryu JC, Rark. YC, et al. Protective Activity of Aucubin Against Carbontetra Chloride-induced Liver Damage in Mice. Drug Chem. Toxicol,1983,6 (5):443-453.
    [83]郑若玄,陈逸诗.去羟桅子苷对大鼠急性黄疽的防治作用[J].中国药理学报,1986,7(1):69-72.
    [84]江藤龙,吴凌伟.低频超声波技术在杜仲叶有效活性成分分离提取中的应用[J].南昌大学学报(理工版),2001,25(3),93-96。
    [85]孙文基.天然药物成分提取分离制备.北京:中国医科科技出版社,1994:275
    [86]Takahashi T, Matsumoto N, Oshio H.The stability of bio-active component in the bark of Eucoimia ulmoides.Shoyakugaku Zasshi, 1988,42(2): 111—115.
    [87]沙振方,孙文基.杜仲中松脂醇二葡萄糖苷的含量测定[J].药学学报,1986,21(9):708—711.
    [88]徐长根,冯建斌,孙文基.RP-HPLC测定杜仲中松脂醇二葡萄糖苷[J].药物分析杂志,2000,20(1),56-57.
    [89]戚向阳,张声华.反相高效液相色谱法测定杜仲中的松脂醇二葡萄糖苷[J].色谱,1998,16(2):161—163.
    [90]戚向阳,陈仲球,张声华.杜仲保健饮料中活性成分的稳定性研究[J].食品工业科技,2000,21(2),20—22.
    [91]张丽萍,许国,赵红杰.杜仲叶降压成分鉴别及其含量测定[J].山地农业生物学报,2000,19(3),191—193.
    [92]Charles Jsih, Madison Wis. Glycosides of 2, 6-bis(bydroxy-phenyl)-3,7-dioxabicyclo(3,3,0) octane. United States Patent, 4103006, 1978,1-14.
    [93]周贵新.用超临界二氧化碳从杜仲叶中提取有效成分的方法.中国专利,cn1241560.2000-01-19.
    [94]马柏林,梁淑芳,张康健.薄层色谱分离和分光光度法测定桃叶珊瑚苷[J].分析化学,2000,28(3),346-348.
    [95]戚向阳,陈维军,张声华.反相高效液相色谱法同时测定杜仲中京尼平苷酸、京尼平苷及绿原酸的含量[J].药物分析杂志,2000,20(1),22-24.
    [96]董娟娥,马柏林,贾二红.杜仲叶桃叶珊瑚苷测定方法的研究[J].西北林学院学报,2001,16(1):53-55.
    [97]马希汉,张康健.富含生理活性物质的杜仲叶提取物的研究[J].西北林学院学报,1997,12(3):86-89.
    [98]Wu Hsin, Kai Chuang, Wu-Chang. Separation of nine iridoids by capillary electrophoresis and high performance liquid chromatography. Journal of Chromatography A, 803(1998):179-187.
    [99]张康健,马希汉.杜仲叶次生代谢物生长积累动态的研究[J].林业科学,1999,35(2),15-20.
    [100]刘燕,吕高荣,鲁静.桅子中环烯醚萜苷类成分的HPLC含量测定[J].中国中药杂志,1998,18(5):298-299.
    [101]王嗣岑,贺浪冲.反相高效液相色谱法同时分离杜仲叶中三种有效成分[J].西北药学杂志,2001,16(1):15-16.
    [102]Tsai,Tung-Hu. Westly,et al. Identification and determination of genoposide, genipin, gardenoside, and geniposidic acid from herbs by HPLC/photodiode-array detection[J]. journal of Liquid Chromatography, V17 n 10 1994 Publ by Marcel Dekker Jnc p 2199-2205 0148-39190
    [102]杜红岩,赵戈.论我国杜仲产业化与培育技术的发展[J].林业科学研究,2000,13(5):554-561.
    [103]Ysmaguoehi K. Spectral Data of National products Volume Ⅰ. New York:Elsevier Publishing Company, 1970.53.
    [104]国家药典委员会.中华人民共和国药典[S].北京:化学工业出版社,2005,一部:114.
    [105]陈晓青,李宇萍,彭密军,等.杜仲中松脂醇二葡萄糖苷的提纯[J].中南工业大学学报自然科学版,2003,34(3):262-265.
    [106]彭密军,钟世安,周春山,等.大孔吸附树脂分离纯化杜仲中活性成分[J].离子交换与吸附,2004,20(1):13—22.
    [107]彭密军,周春山,董朝清,等.吸附树脂法分离纯化杜仲中松脂醇二葡萄糖苷[J].中国生化药物杂志,2004,25(3):147—150.
    [108]李正理,崔克明,余椿生,等.杜仲剥皮再生解剖学研究[J].植物学报,1981,23(1):6-11.
    [109]崔克明.杜仲剥皮再生的原理和技术[J].中国中药杂志,1993,18(4):248-249.
    [111]侯宏伟,Kalima-N'Koma MWANGE,王雅清,崔克明.杜仲剥皮再生过程中可溶性蛋白和过氧化物酶含量及分布变化[J].植物学报,2004,46(2):216~223.
    [112]刘建斌.杜仲种子的化学成分研究.西北大学硕士学位论文,西安,2006.
    [113]董娟娥,赵德义,张康健,等.杜仲原生皮与再生皮次生代谢物含量分析[J].中草药,2004,35(2):199—201.
    [114]Y. Ito, R. L. Bowman. Countercurrent Chromatography. Science, 1970, 167.
    [115]张天佑.水平螺旋管行星式离心分离机逆流分配层析法[J].化学通报,1981,4:28.
    [116]Yochi Shibusawa, Makiko Mugiyama, Ushiho Matsumoto, Yoichiro Ito. Complementary use of counter-current chromatography and hydroxyapatite chromatography for the separation of three main classes of lipoproteins from human serum. J. Chromatogr.B,664(1995)295-301.
    [117]Shibusawa. Y, Ito. Y. J. Chromatogr., 1991, 695:550.
    [118]Oka H, Harada K, Ito. Y, et al. J. Chromatogr. A, 1998, 812:35.
    [119]祝顺琴,谈峰.高速逆流色谱在天然产物分离中的应用[J].中国医药工业杂志,2005,36(12):788-791.
    [120]曲丽萍,宓鹤鸣,范国荣,等.高速逆流色谱法分离制备淡豆鼓中大豆素和染料木素[J].中草药,2006,37(3):375-377.
    [121]王风美,陈军辉,李磊,等.高速逆流色谱法分离制备丹酚酸B[J].天然产物研究与开发,2006,18:100-104.
    [122]Renmin Liu, Qinghua Sun,Ailing Sun, Jichun Cui. Isolation and purification of coumarin compounds from Cortex fraxinus by high-speed counter-current chromatography.J.Chromatgr. A, 1072(2005)195-199.
    [123]Jieping Fan and Chaohong He. Single-Step Preparative Separation of Barbinervic Acid and its Epimer(Rotungenic Acid), Along with Two Other Pentacyclic Triterpence Acids from the Leaves of Diospyros kaki Using HSCCC. J. of Liqu. Chromatogr.& Relat. Technolog. 2006, 29(6), 815-826.
    [124]Ailing Sun, Lei Feng, Renmin Liu. Preparative Isolation and Purification of Prim-O-Glucosyl-Cinmifugin and 4/-0-β-D-Glucosyl-5-0-Methylvisamminol from Radix saposhnikoviae by High Speed CounterCurrent Chromatography. J. of Liqu. Chromatogr. & Relat. Technolog. 2006, 29(5), 751-759.
    [125]夏明,杜琪珍.高速逆流色谱法提取分离红曲色素的研究[J].广州食品工业科技,2003,18(4):5-7.
    [126]张天佑.高速逆流色谱技术在中药提取过程中的应用.第二届中药提取技术国际研讨会论文集,2005,10-15.
    [127]戴德舜,伍方勇,王义明,罗国安.高速逆流色谱实验体系的选择和优化[J].分析仪器,2001,3:31-34.
    [128]颜继忠,褚建军,童胜强.中药分离中高速逆流色谱溶剂体系的选择[J].中国现代应用药学杂志,2003,20(5):374-376.
    [129]Conway W D, Ito Y. J. Liq. Chromatogr., 1984, 7:291.
    [130]谭龙泉,阮宗琴,欧庆瑜.毛细管电泳在高速逆流色谱溶剂系统选择中的应用[J].分析化学,1997,25:515-518.
    [131]谭龙泉,张所明,欧庆瑜.薄层色谱在高速逆流色谱溶剂系统选择过程中的应用[J].分析化学,1996,24(12):1448-1451.
    [132]American Chemical Society. Modern Counter-Current Chromatography. ACS Symposium Series 593, 1995:78-86.
    [133]曹学丽.高速逆流色谱技术及应用[M].北京:化学工业出版社,2005,40.
    [134]Johanna Schmitt;Maike Petersen. Pinoresinol and Matairesinol Accumulation in A Forsythia×Intermedia Cell Suspension Culture. Plant Cell, Tissue and Organ Culture. 2002, 68, 91-98.
    [135]国家药典委员会.中华人民共和国药典[S].北京:化学工业出版社,2005,一部:115
    [136]罗思齐.中草药活性成分含量测定概述[J].中草药,1989,20(9):19—26
    [137]刈米达夫.植物化学[M].杨本文译.北京:科学出版社,1985,135.
    [138]Cristina Alves, M. Teresa Barros, Christopher D. Maycock, and M.Rita Ventura. An efficient transformation of quinic acid to shikimic acid derivatives. Tetrahedron, 55 (1999) 8443.-8456.
    [139]曲保雪,朱立红,芦春莲.杜仲产品加工利用研究与进展[J].河北林果研究,2001,16(4):388—391.
    [140]娄红祥,郎伟军,吕木坚.金银花中水溶性化合物的分离与结构鉴定[J].中草药,1996,27(4):195—199.
    [141]柯铭清.中草药有效成分理化与药理特性[M].长沙:湖南科学技术出版社,1982,225.
    [142]林启寿.中草药成分化学[M].北京:科学出版社,1977,146.
    [143]赵伯涛,钱骅,张卫明.杜仲的研究与应用[J].中国商办工业,2001,10:47—48.
    [144]Y Jiang, K Satoh, K Kusama, et al. Interaction between chlorogenic acid and antioxidants[J].Anticancer Res., 2000, 20(4):2473-2476.
    [145]Hemmerle H, Berger H J, Below P, et al. Chlorogenic acid and synthetic chlorogenic acid derivatives:novel inhibitors of hepatic glucose-6-phosphatetranslocase[J]. Journal of Medicinal Chemistry, 1997, 40 (2): 137-145.
    [146]柳云溪.欧洲植物药会议介绍[J].国外医学,植物药分册,1997,12(6):257—260.
    [147]Ohnishi M, Morishita H, Iwahashi H, et al. Inhibitory effects of chlorogenic acid on linoleic acid peroxidation and. haemolysis[J]. Phytochemistry, 1994, 36(3):579-583.
    [148]刘军海,裘爱泳.绿原酸提取纯化和应用前景[J].粮食与油脂,2003,9:44—46.
    [149]姚新生.天然药物化学[M].北京:人民卫生出版社,第三版,2002,29—30.
    [150]陈乃炽,汪洪武,刘艳清,等.杜仲叶中绿原酸的提取与含量测定[J].经济林研究,2001,19(2):59—61.
    [151]汪洪武,汤敏燕,孙凌峰.杜仲叶中绿原酸类物质的提取研究[J].江西师范大学学报(自然科学版),1997,21(4):339—341.
    [152]吴红,李稳宏,吴道澄,等.杜仲叶中绿原酸测定方法的比较[J].第四军医大学学报,2003,24(1):78—80.
    [153]顾利红,朱品业.日光和温度对绿原酸供试液稳定性的影响[J].中成药,1999,14(2):73.
    [154]H. Y.Cheung, W. P. Lai, M.S. Cheung, F.M.Leung, et al. Rapid and simultaneous analysis of some bioactive components in Eucommia ulmoides by capillary electrophoresis. Journal of Chromatography A, 989 (2003) 303-310.
    [155]高锦明,张鞍灵,张康健,等.绿原酸分布、提取与生物活性研究概述[J].西北林学院学报,1999,14(2):78—80.
    [156]戚向阳,张声华,陆彩玲,李浩.杜仲叶中绿原酸提取分离研究[J].中草药,1998,29(11):741—742.
    [157]马希汉,王冬梅,苏印泉.大孔吸附树脂对杜仲叶绿原酸、总黄酮的分离研究[J].林产化学与工业,2004,24(3):47—51.
    [158]Haitao Lu, Yue Jiang, Feng Chen. Application of preparative high-speed counter-current chromatography for separation of chlorogenic acid from Flos Lonicerae. Journal of Chromatography A, 1026(2004)185-190
    [159]国家药典委员会.中华人民共和国药典[S].北京:化学工业出版社,2005,一部:190.
    [160]孙文基,沙振方,高海.秦艽中龙胆苦苷的HPLC法测定[J].药物分析杂志,1994,14(1):41.
    [161]郜尽.龙胆苦苷的制备及药代动力学研究.西北大学硕士学位论文,西安, 2002.
    [162]张勇.龙胆苦苷药理研究进展[J].云南医药,1991,12(5):304.
    [163]国家医药管理局中医药情报中心编.植物药有效成分手册[M].北京:人民卫生出版社,1986,486.
    [164]濒危药用植物秦艽的资源利用与保护[J].中药研究与信息,2003,5(9):27—29.
    [165]李向阳,李福安,李建民,等.青海产秦艽中龙胆苦苷分布状态[J].中药材,2005,28(3):174—176.
    [166]赵勇.秦艽地上部分各部位龙胆苦苷的定量分析.西北大学硕士学位论文,西安,2005.
    [167]谢秀琼.现代中药制剂新技术[M].北京:化学工业出版社,2004,316.
    [168]国家食品药品监督管理局,龙胆总苷标准(试行),YBZ02352003.
    [169]肖培根.新编中药志.第一卷[M].北京:化学工业出版社,2002,581.
    [170]中华人民共和国药典(一部)[S].北京:化学工业出版社,1995,180.
    [171]张振秋,李峰,曹爱民,等.薄层扫描法测定热炎宁中大黄素的含量[J].中成药,1997,19(4):674.
    [172]郑国平.滋补生发片中大黄素的含量测定[J].医药导报,2004,23(9):669.
    [173]中华人民共和国药典(一部)[S].北京:化学工业出版社,2005,145.

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