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Molecular Mechanisms of Chemotherapy-Induced Hair Loss

机译:化学疗法引起的脱发的分子机制

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Hair loss (alopecia) is a much-feared side-effect of many chemotherapy protocols and is one of the most psychological devastating aspects of cancer therapy. So far, no satisfactory strategy for suppressing chemotherapy-induced alopecia is at hand. During the last decade, some progress in understanding molecular mechanisms of chemotherapy-induced hair loss has been achieved using rodent models. However, the pathobiology of the response of human hair follicle to chemotherapy remains largely unknown. Here, we review molecular mechanisms that control apoptosis in the hair follicle induced by chemotherapy and delineate the basic strategy for pharmacological inhibition of this devastating side-effect of cancer treatment. We focus on the roles of p53 and its target genes that are essential in mediating responses of hair follicle cells. We assume that local pharmacological inhibition of p53 activity may serve as an effective treatment to prevent chemotherapy-induced hair loss. Sufficient pharmacological inhibition of chemotherapy-induced hair loss may require a combination of inhibitors to block complementary or redundant pathways of apoptosis in hair follicles.
机译:脱发(脱发)是许多化学疗法方案中令人恐惧的副作用,并且是癌症治疗中最具有心理破坏性的方面之一。迄今为止,还没有令人满意的抑制化学疗法引起的脱发的策略。在过去的十年中,使用啮齿动物模型在了解化学疗法诱发脱发的分子机制方面取得了一些进展。然而,人的毛囊对化学疗法的反应的病理生物学仍然是未知的。在这里,我们审查了控制化学疗法诱导的毛囊凋亡的分子机制,并描述了对这种毁灭性的癌症治疗副作用进行药理抑制的基本策略。我们专注于p53及其靶基因在介导毛囊细胞反应中必不可少的作用。我们假设局部药理抑制p53活性可以作为预防化学疗法引起的脱发的有效方法。化疗引起的脱发的充分药理抑制可能需要抑制剂的组合来阻断毛囊中凋亡的互补或冗余途径。

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