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首页> 外文期刊>Clinical cancer research: an official journal of the American Association for Cancer Research >Molecular pathways: Involving microenvironment damage responses in cancer therapy resistance
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Molecular pathways: Involving microenvironment damage responses in cancer therapy resistance

机译:分子途径:在癌症治疗耐药性中涉及微环境损伤反应

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摘要

The armamentarium of therapeutics used to treat cancer patients relies heavily on ionizing radiation and chemotherapeutic drugs that severely damage DNA. Tumor cells' responses to such treatments are heavily influenced by their environment: Physical contacts with structural elements such as the extracellular matrix, associations with resident and transitory benign cells such as fibroblasts and leukocytes, and interactions with numerous soluble endocrine and paracrine-acting factors all modulate tumor-cell behavior. Of importance, this complex tumor microenvironment is not static and dynamically responds to a variety of stimuli. Here, we describe emerging data indicating that genotoxic cancer treatments activate highly conserved damage response programs in benign constituents of the tumor microenvironment. These damage signals, transmitted via master regulators such as NF-kB, culminate in a powerful and diverse secretory program that generates a proangiogenic, proinflammatory microenvironment. Constituents of this program include interleukin (IL)-6, IL-8, hepatocyte growth factor, amphiregulin, matrix metalloproteinases, and other factors that have been shown to promote adverse tumor-cell phenotypes, such as enhanced resistance to treatment and rapid tumor repopulation. A detailed understanding of these survival signals induced in the context of genotoxic stress provides a platform for developing combinatorial treatment strategies that take into account malignant cells, the tumor microenvironment, and the dynamics exerted by the treatment itself.
机译:用于治疗癌症患者的治疗药库在很大程度上依赖于电离辐射和严重破坏DNA的化学治疗药物。肿瘤细胞对此类治疗的反应在很大程度上受到其环境的影响:与结构元素(例如细胞外基质)的物理接触,与驻留和短暂的良性细胞(如成纤维细胞和白细胞)的联系以及与众多可溶性内分泌和旁分泌作用因子的相互作用调节肿瘤细胞的行为。重要的是,这种复杂的肿瘤微环境不是静态的,而是动态地对各种刺激做出反应。在这里,我们描述了新兴数据,这些数据表明遗传毒性癌症治疗激活了肿瘤微环境的良性成分中高度保守的损伤反应程序。通过主要调节剂(例如NF-kB)传递的这些损伤信号最终形成了强大而多样的分泌程序,产生了促血管生成的促炎性微环境。该程序的组成部分包括白介素(IL)-6,IL-8,肝细胞生长因子,双调蛋白,基质金属蛋白酶,以及其他已证明可促进不良肿瘤细胞表型的因素,例如增强的治疗抵抗力和快速的肿瘤重现。对在遗传毒性应激环境下诱导的这些生存信号的详细理解为开发组合治疗策略提供了一个平台,该策略考虑了恶性细胞,肿瘤微环境以及治疗本身所产生的动力学。

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