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人类癌症的耐药性——机制与意义。

Drug resistance in human cancers - Mechanisms and implications.

机构信息

Department of Human Genetics, Faculty of Biomedical Sciences and Technology, Sri Ramachandra Institute of Higher Education and Research, Porur, Chennai, Tamil Nadu 600116, India.

Department of Human Genetics, Faculty of Biomedical Sciences and Technology, Sri Ramachandra Institute of Higher Education and Research, Porur, Chennai, Tamil Nadu 600116, India.

出版信息

Life Sci. 2024 Sep 1;352:122907. doi: 10.1016/j.lfs.2024.122907. Epub 2024 Jul 14.

Abstract

Cancers have complex etiology and pose a significant impact from the health care perspective apart from the socio-economic implications. The enormity of challenge posed by cancers can be understood from the fact that clinical trials for cancer therapy has yielded minimum potential promises compared to those obtained for other diseases. Surgery, chemotherapy and radiotherapy continue to be the mainstay therapeutic options for cancers. Among the challenges posed by these options, induced resistance to chemotherapeutic drugs is probably the most significant contributor for poor prognosis and ineffectiveness of the therapy. Drug resistance is a property exhibited by almost all cancer types including carcinomas, leukemias, myelomas, sarcomas and lymphomas. The mechanisms by which drug resistance is induced include the factors within the tumor microenvironment, mutations in the genes responsible for drug metabolism, changes in the surface drug receptors and increased drug efflux. We present here comprehensively the drug resistance in cancers along with their mechanisms. Also, apart from resistance to regularly used chemotherapeutic drugs, we present resistance induction to new generation therapeutic agents such as monoclonal antibodies. Finally, we have discussed the experimental approaches to understand the mechanisms underlying induction of drug resistance and potential ways to mitigate induced drug resistance.

摘要

癌症具有复杂的病因,除了会带来社会经济方面的影响,还会对医疗保健产生重大影响。从癌症治疗的临床试验所取得的潜在效果与其他疾病相比最小这一事实,就可以理解癌症所带来的巨大挑战。手术、化疗和放疗仍然是癌症的主要治疗选择。在这些选择所带来的挑战中,对化疗药物的诱导耐药性可能是导致预后不良和治疗无效的最重要因素。耐药性几乎是所有癌症类型(包括癌、白血病、骨髓瘤、肉瘤和淋巴瘤)的特征。诱导耐药性的机制包括肿瘤微环境中的因素、负责药物代谢的基因发生突变、表面药物受体的变化以及药物外排增加。我们在这里全面介绍了癌症的耐药性及其机制。此外,除了对常用化疗药物的耐药性外,我们还介绍了对新一代治疗药物(如单克隆抗体)的耐药性诱导。最后,我们讨论了了解诱导耐药性机制的实验方法和减轻诱导耐药性的潜在方法。

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