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首页> 外文期刊>Biochemical Pharmacology >Dormant, quiescent, tolerant and persister cells: Four synonyms for the same target in cancer
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Dormant, quiescent, tolerant and persister cells: Four synonyms for the same target in cancer

机译:休眠,静止,耐受性和抗风细胞:癌症中同一目标的四个同义词

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摘要

Although many drugs/treatments are now available for most diseases, too often, resistance to these treatments impedes complete therapeutic success. Acquired resistance is a major problem in many pathologies but it is an acute one in cancers and infections. This is probably because these diseases often require long durations of treatment, which ascribe to the selection of resistant cells. However, the actual mechanisms implicated in the selection process are still under debate. It is becoming increasingly clear that resistance is associated with the heterogeneity of cancer cells or micro-organisms and that multiple mechanisms underlie the emergence of drug resistant subpopulations. Recently, it has been suggested that a subpopulation of drug tolerant cells present in cancer populations and called "persisters" play a major role in this resistance. Recent studies have shown that microorganisms share similar properties. Still, how persister/tolerant cells intervene in the development of resistance is not completely elucidated but seems to be related to epigenetic changes in treated cells and the capacity of persisters to modulate and/or highjack their microenvironment. Due to the complexity of this process, the input from mathematicians, as well as new methods of bioinformatics and statistics, is necessary to fully comprehend the acquisition of resistance/tolerance deriving from and leading to the heterogeneous cell populations. The present review will give a brief overview of the most recent data available on drug tolerant cells in cancers and their similarities with microorganisms.
机译:虽然现在许多药物/治疗方法往往适用于大多数疾病,但往往是对这些治疗的抵抗力阻碍了完全的治疗成功。获得的抵抗是许多病理中的主要问题,但它是癌症和感染中的急性症。这可能是因为这些疾病通常需要长期的治疗持续性,这归因于抗性细胞的选择。但是,涉及选择过程中涉及的实际机制仍在辩论中。它越来越明显,抗性与癌细胞或微生物的异质性有关,并且多种机制利于耐药性群的出现。最近,已经提示,癌症群中存在的药物耐药细胞并称为“持久性”在这种抵抗力中发挥重要作用。最近的研究表明,微生物共享类似的性质。尽管如此,抗泄漏/耐受性细胞如何干预耐药性未被完全阐明,但似乎与治疗细胞的表观遗传变化以及持久性调节和/或高速增长的能力有关。由于该过程的复杂性,来自数学家的输入以及新的生物信息学和统计数据的新方法,是必要的,以完全理解从源自和导致异质细胞种群的抵抗/耐受性。本综述将简要概述在癌症中药物耐药细胞及其与微生物的相似性的最新数据。

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