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在受抗癌药物干扰的胸苷酸合成酶的生化途径内:克服癌症化疗耐药性的新策略。

Inside the biochemical pathways of thymidylate synthase perturbed by anticancer drugs: Novel strategies to overcome cancer chemoresistance.

机构信息

Department of Life Sciences, University of Modena and Reggio Emilia, Via Campi 183, 41125, Modena, Italy.

Department of Biomedical Sciences, Metabolic and Neuroscience, Section of Pharmacology and Molecular Medicine, University of Modena and Reggio Emilia, Via Campi 287, 41125, Modena, Italy.

出版信息

Drug Resist Updat. 2015 Nov;23:20-54. doi: 10.1016/j.drup.2015.10.003. Epub 2015 Oct 31.

Abstract

Our current understanding of the mechanisms of action of antitumor agents and the precise mechanisms underlying drug resistance is that these two processes are directly linked. Moreover, it is often possible to delineate chemoresistance mechanisms based on the specific mechanism of action of a given anticancer drug. A more holistic approach to the chemoresistance problem suggests that entire metabolic pathways, rather than single enzyme targets may better explain and educate us about the complexity of the cellular responses upon cytotoxic drug administration. Drugs, which target thymidylate synthase and folate-dependent enzymes, represent an important therapeutic arm in the treatment of various human malignancies. However, prolonged patient treatment often provokes drug resistance phenomena that render the chemotherapeutic treatment highly ineffective. Hence, strategies to overcome drug resistance are primarily designed to achieve either enhanced intracellular drug accumulation, to avoid the upregulation of folate-dependent enzymes, and to circumvent the impairment of DNA repair enzymes which are also responsible for cross-resistance to various anticancer drugs. The current clinical practice based on drug combination therapeutic regimens represents the most effective approach to counteract drug resistance. In the current paper, we review the molecular aspects of the activity of TS-targeting drugs and describe how such mechanisms are related to the emergence of clinical drug resistance. We also discuss the current possibilities to overcome drug resistance by using a molecular mechanistic approach based on medicinal chemistry methods focusing on rational structural modifications of novel antitumor agents. This paper also focuses on the importance of the modulation of metabolic pathways upon drug administration, their analysis and the assessment of their putative roles in the networks involved using a meta-analysis approach. The present review describes the main pathways that are modulated by TS-targeting anticancer drugs starting from the description of the normal functioning of the folate metabolic pathway, through the protein modulation occurring upon drug delivery to cultured tumor cells as well as cancer patients, finally describing how the pathways are modulated by drug resistance development. The data collected are then analyzed using network/netwire connecting methods in order to provide a wider view of the pathways involved and of the importance of such information in identifying additional proteins that could serve as novel druggable targets for efficacious cancer therapy.

摘要

我们目前对肿瘤药物作用机制和耐药机制的理解是,这两个过程是直接相关的。此外,根据特定抗癌药物的作用机制,通常可以划定化疗耐药机制。从化疗耐药问题的整体方法来看,整个代谢途径而不是单个酶靶标可能更好地解释和教育我们细胞对细胞毒性药物给药后的反应的复杂性。针对胸苷酸合成酶和叶酸依赖性酶的药物是治疗各种人类恶性肿瘤的重要治疗手段。然而,长期的患者治疗常常引发耐药现象,使化疗治疗效果大大降低。因此,克服耐药性的策略主要旨在实现增强细胞内药物积累,避免叶酸依赖性酶的上调,以及避免 DNA 修复酶的损伤,这些酶也负责对各种抗癌药物的交叉耐药性。基于药物联合治疗方案的当前临床实践代表了对抗耐药性最有效的方法。在本文中,我们综述了 TS 靶向药物的分子作用机制,并描述了这些机制如何与临床耐药性的出现相关。我们还讨论了当前使用基于药物化学方法的分子机制方法克服耐药性的可能性,重点是对新型抗肿瘤药物进行合理的结构修饰。本文还重点关注药物给药后代谢途径的调节及其分析,以及使用荟萃分析方法评估其在涉及网络中的潜在作用。本文描述了 TS 靶向抗癌药物从叶酸代谢途径的正常功能开始,通过药物输送到培养的肿瘤细胞以及癌症患者中发生的蛋白调节,最后描述了耐药性发展如何调节途径。然后使用网络/网络连接方法分析收集的数据,以提供所涉及途径的更广泛视图,以及此类信息在确定可作为有效癌症治疗新靶标的其他蛋白方面的重要性。

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