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Signal transduction pathways: The molecular basis for targeted therapies.

机译:信号转导途径:靶向疗法的分子基础。

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The elucidation of the signal transduction pathways that regulate cell growth and differentiation has led to a number of exciting opportunities for novel cancer therapies. It is now well known that growth factors and cell matrix molecules activate cognate growth factor receptors and integrins, respectively, to initiate a complex signaling cascade that ultimately targets the nucleus, cell surface, and mitochondria. Signaling to these target molecules results in the regulation of gene transcription, cell adhesion and motility, and cell survival, all of which are integral parts of cellular growth control mechanisms. As a result of increased understanding of cell growth regulation mechanisms, a number of novel therapeutic agents have been developed and tested in preclinical models and, to some extent, in clinical trials. Based on our current understanding of growth regulation in normal and cancer cells, one would predict that these new agents could influence proliferation and survival of cancer cells, as well as their response to traditional cytotoxic therapies. In this overview, the mechanistic basis for the use of signal transduction-targeted novel therapeutics is presented, along with predictions regarding how they may interact with ionizing radiation in different subgroups of patients.
机译:调节细胞生长和分化的信号转导途径的阐明为新型癌症治疗带来了许多令人兴奋的机会。现在众所周知,生长因子和细胞基质分子分别激活同源的生长因子受体和整联蛋白,以启动最终靶向细胞核,细胞表面和线粒体的复杂信号传导级联。向这些靶分子发信号导致基因转录,细胞粘附和运动以及细胞存活的调节,所有这些都是细胞生长控制机制的组成部分。由于人们对细胞生长调节机制的了解越来越多,因此已经在临床前模型中以及某种程度上在临床试验中开发并测试了许多新型治疗剂。根据我们目前对正常细胞和癌细胞中生长调节的理解,可以预测这些新药物可能会影响癌细胞的增殖和存活以及它们对传统细胞毒性疗法的反应。在本概述中,将介绍使用靶向信号转导的新疗法的机理基础,以及有关它们如何与不同亚组患者的电离辐射相互作用的预测。

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