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癌症中的耐药性:欺凌的免罪金牌。

Drug Resistance in Cancers: A Free Pass for Bullying.

机构信息

The Department of Clinical Pharmacy, The Affiliated Hospital of Qingdao University, Qingdao 266003, China.

出版信息

Cells. 2022 Oct 26;11(21):3383. doi: 10.3390/cells11213383.

Abstract

The cancer burden continues to grow globally, and drug resistance remains a substantial challenge in cancer therapy. It is well established that cancerous cells with clonal dysplasia generate the same carcinogenic lesions. Tumor cells pass on genetic templates to subsequent generations in evolutionary terms and exhibit drug resistance simply by accumulating genetic alterations. However, recent evidence has implied that tumor cells accumulate genetic alterations by progressively adapting. As a result, intratumor heterogeneity (ITH) is generated due to genetically distinct subclonal populations of cells coexisting. The genetic adaptive mechanisms of action of ITH include activating "cellular plasticity", through which tumor cells create a tumor-supportive microenvironment in which they can proliferate and cause increased damage. These highly plastic cells are located in the tumor microenvironment (TME) and undergo extreme changes to resist therapeutic drugs. Accordingly, the underlying mechanisms involved in drug resistance have been re-evaluated. Herein, we will reveal new themes emerging from initial studies of drug resistance and outline the findings regarding drug resistance from the perspective of the TME; the themes include exosomes, metabolic reprogramming, protein glycosylation and autophagy, and the relates studies aim to provide new targets and strategies for reversing drug resistance in cancers.

摘要

全球癌症负担持续增长,耐药性仍然是癌症治疗的重大挑战。众所周知,具有克隆性发育不良的癌细胞会产生相同的致癌病变。从进化的角度来看,肿瘤细胞将遗传模板传递给后代,并通过积累遗传改变简单地表现出耐药性。然而,最近的证据表明,肿瘤细胞通过逐步适应来积累遗传改变。因此,由于存在共存的遗传上不同的亚克隆细胞群体,会产生肿瘤内异质性 (ITH)。ITH 的遗传适应机制包括激活“细胞可塑性”,通过这种方式,肿瘤细胞可以在其中增殖并导致增加的损伤的肿瘤支持性微环境中产生。这些高度可塑性的细胞位于肿瘤微环境 (TME) 中,并发生极端变化以抵抗治疗药物。因此,已经重新评估了涉及耐药性的潜在机制。在此,我们将揭示耐药性初步研究中出现的新主题,并从 TME 的角度概述耐药性的发现;主题包括外泌体、代谢重编程、蛋白质糖基化和自噬,相关研究旨在为逆转癌症中的耐药性提供新的靶点和策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92d8/9654341/c7b0071d30b5/cells-11-03383-g001.jpg

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