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紫杉醇开发策略:综述

Strategies in Taxol Development: A Review.

作者信息

Zwawiak Justyna, Zaprutko Lucjusz, Pawelczyk Anna

机构信息

Department of Organic Chemistry, Pharmaceutical Faculty, Poznan University of Medical Sciences, Rokietnicka 3, 60- 806, Poznan, Poland.

出版信息

Mini Rev Med Chem. 2025;25(5):341-353. doi: 10.2174/0113895575300365240828065816.

Abstract

Taxol is a compound with a rigid, tetracyclic structure of diterpene, which is characterized by significant antitumor properties. Firstly, Taxol has been isolated by extraction from the bark of the yew tree. However, the low level of availability obligated the researchers' world to uncover alternative techniques of Taxol obtainment. In the last few years, many synthetic and semi-synthetic methodologies have been elaborated. Nowadays, many novel biotechnological approaches using cell suspension cultures and biotransformation are initiated and expanded. These processes are very beneficial. The reason is that both the final product and the yield of the process have high levels. Such approaches are very distinctive and they help achieve significant quantities of natural compounds, which often exist in small amounts in plants. Moreover, a very important aspect of Taxol development is nanotechnology. The use of this method has many benefits - the retention time is protracted and the concentration of a drug in tumor tissue is raised. This is due to the specific targeting of nanomolecules. What is essential for patients is that systemic side effects are reduced and the healthy biological systems and tissues do not damage. Also, the paper presents new directions with the application of Artificial Intelligence methods. Every year, new concepts are created for obtaining Taxol and developing methods to significantly increase its bioavailability.

摘要

紫杉醇是一种具有刚性四环二萜结构的化合物,具有显著的抗肿瘤特性。首先,紫杉醇是通过从紫杉树皮中提取分离出来的。然而,其低可得性促使研究界去探索获取紫杉醇的替代技术。在过去几年里,人们已经阐述了许多合成和半合成方法。如今,许多使用细胞悬浮培养和生物转化的新型生物技术方法正在启动和扩展。这些过程非常有益。原因在于最终产物和该过程的产量都很高。此类方法非常独特,有助于获得大量通常在植物中含量较少的天然化合物。此外,纳米技术是紫杉醇研发中一个非常重要的方面。使用这种方法有很多好处——保留时间延长,肿瘤组织中药物浓度提高。这是由于纳米分子的特异性靶向作用。对患者至关重要的是,全身副作用减少,健康的生物系统和组织不会受到损害。此外,本文还介绍了人工智能方法应用的新方向。每年都会提出获取紫杉醇和开发显著提高其生物利用度方法的新概念。

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