首页> 外文期刊>Anti-Cancer Agents in Medicinal Chemistry >Biotechnological Production of Taxol and Related Taxoids: Current State and Prospects
【24h】

Biotechnological Production of Taxol and Related Taxoids: Current State and Prospects

机译:紫杉醇及其相关类生物碱的生物技术生产:现状与展望

获取原文
获取原文并翻译 | 示例
           

摘要

Taxol is one of the most effective anti-cancer drugs ever developed. The natural source of taxol is the inner bark of several Taxus species, but it accumulates at a very low concentration and with a prohibitively high cost of extraction. Another problem is that the use of inner bark for taxol production implies the destruction of yew trees. For all these reasons, the growing demand for taxol greatly exceeds the supply that can be sustained by isolation from its natural source and alternative sources of the drug are being sought. Although taxol has been prepared by total synthesis, the process is not commercially viable. Taxol can also be semisynthetically produced via the conversion of baccatin III or 10-deacethylbaccatinIII found in Taxus needles but the cost and difficulty of the extraction process of the semisynthetic precursors are also very high. The most promising approach for the sustainable production of taxol and related taxoids is provided by plant cell cultures at an industrial level.nnTaxol is currently being clinically used against different tumour processes but due to the difficulty of its extraction and formulation, as well as the growing demand for the compound, new taxol analogues with improved properties are being studied.nnIn this revision we discuss current research in the design of new taxol-related compounds, the chemical structure/anti-cancer activity relationship and new formulations of the drug. We also consider the optimizing strategies to improve taxol and related taxoid production in cell cultures, as well as the current knowledge of taxol metabolism, all of which are illustrated with examples, some of them from our own research.
机译:紫杉酚是有史以来最有效的抗癌药物之一。紫杉醇的天然来源是几种紫杉的内部树皮,但其浓度非常低,提取成本高得令人望而却步。另一个问题是使用内部树皮生产紫杉醇会破坏紫杉。由于所有这些原因,对紫杉醇不断增长的需求大大超过了通过从其天然来源中分离出来可以维持的供应量,并且正在寻找该药物的替代来源。尽管紫杉醇已经通过全合成制备,但是该方法在商业上不可行。紫杉醇也可以通过转化在红豆杉针中发现的浆果赤霉素III或10-脱乙酰基浆果赤霉素III而半合成地生产,但是半合成前体的提取过程的成本和难度也很高。工业细胞水平的植物细胞培养提供了可持续生产紫杉醇和相关类紫杉醇的最有前途的方法。nnTaxol目前正被临床用于治疗不同的肿瘤过程,但是由于其提取和配制以及生长的困难,在对该化合物的需求方面,正在研究具有改进性能的新紫杉醇类似物。在本修订版中,我们讨论了新紫杉醇相关化合物的设计,化学结构/抗癌活性关系以及药物新配方的当前研究。我们还考虑了优化策略,以改善细胞培养物中紫杉醇和相关紫杉醇的产生,以及紫杉醇代谢的最新知识,所有这些都通过实例进行了说明,其中一些来自我们自己的研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号