Subtropical Plant Science ›› 2016, Vol. 45 ›› Issue (04): 379-385.DOI: 10.3969/j.issn.1009-7791.2016.04.017
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SHEN Rui-chi,WU Mei-fang,HE En-ming,CHEN De-lin,WANG Jie,HE Jian-zhang,ZHOU Shuang
Received:
2016-05-24
Revised:
2017-01-19
Online:
2016-12-10
Published:
2016-12-10
Contact:
WU Mei-fang
沈瑞池,吴美芳,何恩铭,陈德林,王杰,何建章,周爽
通讯作者:
吴美芳
作者简介:
沈瑞池,硕士,副研究员,从事天然药物开发利用研究。
基金资助:
厦门市科技计划项目(3502Z20141041、3502Z20151245、3502Z20150057、3502Z20162010);厦门市重大科技创新平台项目(3502Z20131004);福建省亚热带植物研究所基金项目(2015S004、2015S005)
CLC Number:
SHEN Rui-chi,WU Mei-fang,HE En-ming,CHEN De-lin,WANG Jie,HE Jian-zhang,ZHOU Shuang. Research Progress on Chemical Constituents and Biological Activity of Nothapodytes nimmoniana[J]. Subtropical Plant Science, 2016, 45(04): 379-385.
沈瑞池,吴美芳,何恩铭,陈德林,王杰,何建章,周爽. 青脆枝化学成分及其活性研究进展[J]. 亚热带植物科学, 2016, 45(04): 379-385.
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[1] 郭瑞霞,李力更,王于方,霍长虹,付炎,王磊,史清文. 天然药物化学史话: 天然产物化学研究的魅力[J]. 中草药, 2015,46(14): 2019—2033.[2] Govindachari T R, Viswanathan N. Alkaloids of Mappia foetida[J]. Phytochemistry, 1972,11(12): 3529—3531.[3] Kepler J A, Wani M C, McNaull J N, Wall M E, Levine S G. Plant antitumor agents. IV. An approach toward the synthesis of camptothecin[J]. The Journal of Organic Chemistry,1969,34(12): 3853—3858.[4] Hombe Gowda H C, Vasudeva R, Mathachen G P, Uma Shaanmer R, Ganeshaiah K N. Breeding types in Nothapodytes nimmoniana Graham.: An important medicinal tree[J]. Current Science, 2002,83(9): 1077—1078. [5] Li H L. Flora of Taiwan (1st edition)[M]. Taipei: Epochpublishing Co., 1977,3: 648.[6] Radhakrishnan H. Studies of Folkloric medicinal plants in Nilgiris district[D]. Coimbatore, India: Ph.D. Thesis, Bharathiar University, 1992.[7] Wu T S, Leu Y L, Hsu H C, Ou L F, Chen C C, Chen C F, Ou J C, Wu Y C. Constituents and cytotoxic principles of Nothapodytes foetida[J]. Phytochemistry, 1995,39(2): 383—385.[8] Wu T S, Chan Y Y, Leu Y L, Chern C Y, Chen C F. Nothapodytines A and B from Nothapodytes foetida[J]. Phytochemistry, 1996,42(3): 907—908.[9] Ciddi V, Shuler M L. Camptothecine from callus cultures of Nothapodytes foetida[J]. Biotechnology Letters, 2000,22(2): 129—132.[10] Srinivas K, Das B. 9-Methoxy-20-O-acetylcamptothecin, a minor new alkaloid from Nothapodites foetida[J]. Biochemical Systematics and Ecology, 2003,31(1): 85—87.[11] 胡祖艳,范青飞,张玉梅,冯峰,杨俊林,宋启示. 青脆枝小枝的化学成分研究[J]. 天然产物研究与开发, 2014,26: 1605—1609.[12] Wu S F, Hsieh P W, Wu C C, Lee C L, Chen S L, Lu C Y, Wu T S, Chang F R, Wu Y C. Camptothecinoids from the seeds of Taiwanese Nothapodytes foetida[J]. Molecules, 2008,13: 1361—1371.[13] Ramesha B T, Amna T, Ravikanth G, Gunaga R P, Vasudeva R, Ganeshaiah K N, Uma Shaanker R, Khajuria R K, Puri S C, Qazi G N. Prospecting for camptothecines from Nothapodytes nimmoniana in Western Ghats, South India: Identification of high-yielding sources of camptothecin and new families of camptothecines[J]. Journal of chromatographic science, 2008,46(4): 362—368.[14] Hosamani K M, Pattanashettar R S. Mappia foetida seed oil: A rich source of oil and moderate source of novel 3-keto-octadec-cis-15-enoic acid and its possible industrial utilization[J]. Industrial Crops and Products, 2005,22(2): 135—139.[15] Padmanabha B V, Chandrashekar M, Ramesha B T, Hombe Gowda H C, Gunaga Rajesh P, Suhas S, Vasudeva R, Ganeshaiah K N, Uma Shaanker R. Patterns of accumulation of camptothecin, an anti-cancer alkaloid in Nothapodytes nimmoniana Graham., in the Western Ghats, India: Implications for identifying high-yielding sources of the alkaloid[J]. Current Science is an Indian, 2006,90(1): 95—100.[16] 王玲丽,刘文哲. 不同种源喜树幼枝中喜树碱的含量[J]. 植物学通报, 2005,22(5): 584—589.[17] Fulzele D P, Satdive R K. Distribution of anticancer drug camptothecinin Nothapodytes foetida[J]. Fitoterapia, 2005, 76(7-8): 643—648.[18] Fulzele D P, Satdive R K. Comparison of techniques for the extraction of the anti-cancer drug camptothecin from Nothapodytes foetida[J]. The Journal of Chromatography A, 2005,1063: 9—13.[19] Namdeo A G, Sharma A, Fulzele D P, Mahadik K R. Influence of geographical and climatic conditions on camptothecin content of Nothapodytes nimmoniana[J]. Records of Natural Products, 2010,4(1): 64—71.[20] Namdeo A G, Sharma A. HPLC analysis of camptothecin content in various parts of Nothapodytes foetida collected on different periods[J]. Asian Pacific Journal of Tropical Biomedicine, 2012,2(5): 389—393.[21] Aiyama R, Nagai H, Nokata K, Shinohara C, Sawada S. A camptothecin derivative from Nothapodytes foetida[J]. Phytochemistry, 1988,27(11): 3663—3664.[22] Wall M E, Wani M C, Cook C E, Palmer K H, McPhail A T, Sim G A. Plant antitumor agents. I. The isolation and structure of camptothecin, a novel alkaloidal leukemia and tumor inhibitor from Camptotheca acuminata[J]. Journal of the American Chemical Society, 1966,88(16): 3888—3890.[23] Rastogi S, Joshi B, Fusaro G, Chellappan S. Camptothecin treatment does not induce migration of prohibitin and p53 to cytoplasm in untransformed cell lines[J]. The Journal of Biological Chemistry, 2006,281(5): 2951—2959.[24] 沈荣,李学忠,周小平,丁卫祥,陈强,沈卉君. 喜树碱对炎症诱导的多巴胺能神经元损伤的保护作用[J]. 江苏医药, 2011,37(3): 269—271.[25] Liu Y Q, Liu Z L, Tian X, Yang L. Anti-HSV activity of camptothecin analogues[J]. Natural Product Research, 2010,24(6): 509—514.[26] Rao M, Zhang S, Dong J, Li S. Inhibition of hepatitis B virus replication by homoharringtonine, IFN-alpha_ (1b), hydroxycamptothecin and norfloxacin[J]. Virologica Sinica, 2005,21(3): 284—287.[27] Shibahara S, Mukai S, Morisawa H, Nakashima H, Kobayashi S, Yamamoto N. Inhibition of human immunodeficiency virus (HIV-1) replication by synthetic oligo-RNA derivatives[J]. Nucleic Acids Research, 1989,17(1): 239—252.[28] Li Y Y, Chen S W, Yang L M, Wang R R, Pang W, Zheng Y T. The anti-HIV actions of 7-and 10-substituted camptothecins[J]. Molecules, 2009,15(1): 138—148.[29] Kitoh A, Nomura T, Kabashima K. TGFβ1, an epidermal controller of skin dendritic cell homeostasis[J]. Journal of Investigative Dermatology, 2013,133(1): 9—11.[30] Liao N, Zhang P, Ao M, Wang J, Shi Y, Yu L. 9-methoxycamptothecin from Nothapodytes foetida induces apoptosis in murine sarcoma S180 cells[J]. Zeitschrift für Naturforschung C, 2011,66(9-10): 471—476.[31] 肖坤福. 喜树碱的研究[J]. 新进展时珍国医国药, 2004,15(11): 786—789. [32] 孙钰,冯新民,颜连启,蒋百川,虞堂云,王强,戴善和. 羟基喜树碱预防硬膜外粘连的有效性和安全性研究[J]. 临床骨科杂志, 2010,13(2): 214—217.[33] 金创,李兵,霍焱,张本. 羟基喜树碱抑制大鼠角膜移植免疫排斥反应: 与环孢素A的比较[J]. 中国组织工程研究与临床康复, 2010,14(31): 5778—5780. [34] Doh S H, Kim J H, Lee K M, Park H Y, Park C K. Retinal ganglion cell death induced by endoplasmic reticulum stress in a chronic glaucoma model[J]. Brain Research, 2010,1308: 158—166.[35] Abcouwer S F, Marjon P L, Loper R K, Vander Jagt D L. Response of VEGF expression to amino acid deprivation and inducers of endoplasmic reticulum stress[J]. Investigative Ophthalmology & Visual Science, 2002,43(8): 2791—2798. 43: 2791—2798.[36] Mathijssen R H J, Van Alphen R J, Verweij J, Loos W J, Nooter K, Stoter G, Sparreboom A. Clinical pharmacokinetics and metabolism of irinotecan (CPT-11)[J]. Clinical Cancer Research, 2001,7(8): 2182—2194.[37] Demain A L, Vaishnav P. Natural products for cancer chemotherapy[J]. Microbial Biotechnology, 2011,4: 687–699. [38] Lee D H, Kim S W, Bae K S, Hong J S, Suh C, Kang Y K, Lee J S. A phase I and pharmacologic study of belotecan in combination with cisplatin in patients with previously untreated extensive-stage disease small cell lung cancer[J]. Clinical Cancer Research, 2007,13(20): 6182—6186.[39] Tang M M, Spanou Z, Tang H, Schibler F, Pelivani N, Yawalkar N. Rapid downregulation of innate immune cells, interleukin-12 and interleukin-23 in generalized pustular psoriasis with infliximab in combination with acitretin[J]. Dermatology, 2012,225(4): 338—343. [40] 沈洁,王青松,许向阳, 周建平. 喜树碱类衍生物脂质体的研究进展[J]. 中国药科大学学报, 2007,38(4): 380—384.[41] Sirikantaramas S, Asano T, Sudo H, Yamazaki M, Saito K. Camptothecin: therapeutic potential and biotechnology [J]. Current Pharmaceutical Biotechnology, 2007,8(4): 196—202.[42] 白永花,宋启示. 马比木根中喜树碱和9-甲氧基喜树碱的HPLC分析[J]. 药物分析杂志, 2014,34 (1): 100—103.[43] 王晶. 臭马比木中抗癌药效成分分布、制备及药理活性研究[D]. 武汉: 华中科技大学硕士学位论文, 2011.[44] Hsiao H Y, Cheng T J, Yang G M, Huang I J, Chen R L. Determination of camptothecins in DMSO extracts of Nothapodytes foetida by direct injection capillary electrophoresis[J]. Phytochemical Analysis, 2008,19(2): 136—140.[45] Oka H, Harada K, Ito Y, Ito Y. Separation of antibiotics by counter-current chromatography[J]. Journal of Chromatography A, 1998,812(1): 35—52.[46] Sethi N, Anand A, Sharma A, Chandrul K K, Jain G, Srinivasa K S. High speed counter current chromatography: A support-free LC technique[J]. Journal of Pharmacy & Bioallied Sciences, 2009,1(1): 8—15. [47] 罗娅君,边清泉,李绣菊. 高速逆流色谱分离制备马比木中的三个喜树碱类成分[C]. 北京: 中国化学会第29届学术年会摘要集-第02分会: 分离分析及微, 纳流控新方法, 2014.[48] Pai S R, Pawar N V, Nimbalkar M S, Kshirsagar P R, Kolar F K, Dixit G B. Seasonal variation in content of camptothecin from the bark of Nothapodytes nimmoniana (Grah.) Mabb., using HPLC analysis[J]. Pharmaceutical Research, 2013,5(3): 219.[49] Mingzhang A, Jing W, Yue S, Wentao G, Longjiang Y. Camptothecin distribution and content in Nothapodytes nimmoniana[J]. Natural Product Communications, 2011,6(2): 197—200.[50] Srimany A, Ifa D R, Naik H R, Bhat V, Cooks R G, Pradeep T. Direct analysis of camptothecin from Nothapodytes nimmoniana by desorption electrospray ionization mass spectrometry (DESI-MS)[J]. Analyst. 2011,136(15): 3066—3068.[51] Watase I, Sudo H, Yamazaki M, Saito K. Regeneration of transformed Ophiorrhiza pumila plants producing camptothecin[J]. Plant Biotechnology, 2004,21(5): 337—342.[52] Lorence A, Nessler C L. Camptothecin, over four decades of surprising findings[J]. Phytochemistry, 2004,65(20): 2735—2749. [53] Lu Y, Wang H, Wang W, Qian Z, Li L, Wang J, Zhou G, Kai G. Molecular characterization and expression analysis of a new cDNA encoding strictosidine synthase from Ophiorrhiza japonica[J]. Molecular Biology Reports, 2009,36(7): 1845—1852. [54] Kai G. Effect of three plant hormone elicitors on the camptothecin accumulation and gene transcript profiling in Camptotheca acuminata seedlings[J]. International Journal of Sciences, 2014,3(1): 86—95. [55] Comins D L, Nolan J M. A practical six-step synthesis of (S)-camptothecin[J]. Organic letters, 2001,3(26): 4255—4257.[56] Yu J, DePue J, Kronenthal D. Synthesis of (±)-camptothecin using a [3+ 2] nitrone cycloaddition to construct the CDE ring moiety[J]. Tetrahedron Letters, 2004,45(39): 7247—7250.[57] López-Meyer M, Nessler C L, McKnight T D. Sites of accumulation of the antitumor alkaloid camptothecin in Camptotheca acuminata[J]. Planta Medica, 1994,60(6): 558—560. [58] Rehman S, Shawl A S, Verma V, Kour A, Athar M, Andrabi R, Sultan P, Qazi G N. An endophytic Neurospora sp. from Nothapodytes foetida producing camptothecin[J]. Applied Biochemistry and Microbiology, 2008,44(2): 203—209. |
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