从热带植物中寻找抗癌药物。

Q1 Medicine
Joshua M Henkin, Yulin Ren, Djaja Djendoel Soejarto, A Douglas Kinghorn
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引用次数: 16

摘要

西医临床使用的许多抗癌药物都是从陆生微生物、海洋生物和高等植物中发现的次生代谢物中提取的,目前还有这类化合物正在临床试验中。如果专门研究植物,人们普遍认为,如果在药物发现工作中研究热带而不是温带物种,那么遇到增强的小有机分子化学多样性的前景会更好。热带来源国的植物采集需要充分的准备和组织,以负责任的方式进行,遵守1992年《里约生物多样性公约》和2010年《获取遗传资源名古屋议定书》的规定。在通常困难的地形中采集植物样本时,需要正确的分类鉴定和改进的处理和记录程序。植物化学方面的工作包括溶剂分离、已知化合物分离、初步体外测试和优先排序,从而导致“活性导向分离”、化合物结构确定和类似物开发。进一步评估先导化合物需要溶解度、配方、初步药代动力学和合适模型的体内试验。包括作者在两个连续的多学科、多机构的研究项目中所进行的工作,将提到从非洲、东南亚、美洲和加勒比地区获得的植物中发现的具有潜在抗癌活性的非常有前途的化合物的例子。这些包括二叶莲木脂素、环五[b]苯并呋喃、三萜和tropane生物碱类型的植物次生代谢物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Search for Anticancer Agents from Tropical Plants.

Many of the clinically used anticancer agents in Western medicine are derived from secondary metabolites found in terrestrial microbes, marine organisms, and higher plants, with additional compounds of this type being currently in clinical trials. If plants are taken specifically, it is generally agreed that the prospects of encountering enhanced small organic-molecule chemical diversity are better if tropical rather than temperate species are investigated in drug discovery efforts. Plant collection in tropical source countries requires considerable preparation and organization to conduct in a responsible manner that abides by the provisions of the 1992 Rio Convention of Biological Diversity and the 2010 Nagoya Protocol on Access to Genetic Resources. Correct taxonomic identifications and enhanced procedures for processing and documenting plant samples when collected in often difficult terrain are required. Phytochemical aspects of the work involve solvent fractionation, known compound dereplication, preliminary in vitro testing, and prioritization, leading to "activity-guided fractionation", compound structure determination, and analog development. Further evaluation of lead compounds requires solubility, formulation, preliminary pharmacokinetics, and in vivo testing in suitable models. Covering the work of the authors carried out in two sequential multidisciplinary, multi-institutional research projects, examples of very promising compounds discovered from plants acquired from Africa, Southeast Asia, the Americas, and the Caribbean region, and with potential anticancer activity will be mentioned. These include plant secondary metabolites of the diphyllin lignan, cyclopenta[b]benzofuran, triterpenoid, and tropane alkaloid types.

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