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Mechanisms of Drug Resistance Related to the Microenvironment of Solid Tumors and Possible Strategies to Inhibit Them

机译:与实体瘤微环境有关的耐药机制及其抑制策略

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Drug resistance can occur at the individual cellular level or as a result of properties of the tumor microenvironment. The convoluted vasculature within tumors results in robustly proliferating well-nourished cells located proximal to functional blood vessels and regions of slowly proliferating (often hypoxic) cells located distal to functional blood vessels. Irregular blood flow and large distances between functional blood vessels in solid tumors lead to poor drug distribution within them such that cells distal from functional blood vessels are exposed to ineffective concentrations of drug, resulting in therapeutic resistance. Strategies to improve or complement the distribution of anticancer drugs within tumors hold promise for increasing antitumor effects without corresponding increases in normal tissue toxicity. In particular, use of hypoxia-targeted agents and modulation of autophagy have shown promising results in enhancing the distribution of drug activity within solid tumors and hence antitumor efficacy. In this review, we describe causes of resistance to chemotherapy that relate to the microenvironment of solid tumors and the potential to improve antitumor effects by countering such mechanisms of resistance.
机译:耐药性可能发生在单个细胞水平或肿瘤微环境特性的结果。肿瘤内回旋的脉管系统导致位于功能性血管附近的营养丰富的细胞强劲繁殖,而位于功能性血管远端的缓慢增殖(通常为低氧)细胞区域则大量繁殖。实体肿瘤中不规则的血流和功能性血管之间的距离过大,导致它们内部药物分布不佳,从而使功能性血管远端的细胞暴露于无效浓度的药物中,导致治疗耐药性。改善或补充抗癌药物在肿瘤内分布的策略有望在不相应增加正常组织毒性的情况下增加抗肿瘤作用。特别地,使用低氧靶向药物和调节自噬已显示出可喜的结果,可增强实体瘤内药物活性的分布,从而增强抗肿瘤功效。在这篇综述中,我们描述了与实体瘤的微环境有关的化学疗法抗药性的原因,以及通过对抗这种抗药性机制来改善抗肿瘤作用的潜力。

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