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解决药物代谢酶(DMEs)介导的化学抗性的分子建模方法:综述

Molecular modeling approaches to address drug-metabolizing enzymes (DMEs) mediated chemoresistance: a review.

作者信息

Raju Baddipadige, Choudhary Shalki, Narendra Gera, Verma Himanshu, Silakari Om

机构信息

Molecular Modeling Lab (MML), Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala, India.

出版信息

Drug Metab Rev. 2021 Feb;53(1):45-75. doi: 10.1080/03602532.2021.1874406. Epub 2021 Feb 4.

Abstract

Resistance against clinically approved anticancer drugs is the main roadblock in cancer treatment. Drug metabolizing enzymes (DMEs) that are capable of metabolizing a variety of xenobiotic get overexpressed in malignant cells, therefore, catalyzing drug inactivation. As evident from the literature reports, the levels of DMEs increase in cancer cells that ultimately lead to drug inactivation followed by drug resistance. To puzzle out this issue, several strategies inclusive of analog designing, prodrug designing, and inhibitor designing have been forged. On that front, the implementation of computational tools can be considered a fascinating approach to address the problem of chemoresistance. Various research groups have adopted different molecular modeling tools for the investigation of DMEs mediated toxicity problems. However, the utilization of these tools in maneuvering the DME mediated chemoresistance is least considered and yet to be explored. These tools can be employed in the designing of such chemotherapeutic agents that are devoid of the resistance problem. The current review canvasses various molecular modeling approaches that can be implemented to address this issue. Special focus was laid on the development of specific inhibitors of DMEs. Additionally, the strategies to bypass the DMEs mediated drug metabolism were also contemplated in this report that includes analogs and pro-drugs designing. Different strategies discussed in the review will be beneficial in designing novel chemotherapeutic agents that depreciate the resistance problem.

摘要

对临床批准的抗癌药物产生耐药性是癌症治疗的主要障碍。能够代谢多种异源生物的药物代谢酶(DMEs)在恶性细胞中过度表达,从而催化药物失活。从文献报道中可以明显看出,癌细胞中DMEs的水平升高,最终导致药物失活和耐药性。为了解决这个问题,已经制定了几种策略,包括类似物设计、前药设计和抑制剂设计。在这方面,计算工具的应用可以被认为是解决化疗耐药问题的一种引人入胜的方法。各个研究小组采用了不同的分子建模工具来研究DMEs介导的毒性问题。然而,这些工具在应对DME介导的化疗耐药性方面的应用很少被考虑,仍有待探索。这些工具可用于设计不存在耐药问题的化疗药物。本综述探讨了可用于解决这一问题的各种分子建模方法。特别关注了DMEs特异性抑制剂的开发。此外,本报告还考虑了绕过DMEs介导的药物代谢的策略,包括类似物和前药设计。综述中讨论的不同策略将有助于设计出能够降低耐药问题的新型化疗药物。

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