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Hypoxia, endoplasmic reticulum stress and chemoresistance: dangerous liaisons

机译:缺氧,内质网胁迫和化学抑制:危险的联络

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Solid tumors often grow in a micro-environment characterized by ?2% O2 tension. This condition, together with the aberrant activation of specific oncogenic patwhays, increases the amount and activity of the hypoxia-inducible factor-1α (HIF-1α), a transcription factor that controls up to 200 genes involved in neoangiogenesis, metabolic rewiring, invasion and drug resistance. Hypoxia also induces endoplasmic reticulum (ER) stress, a condition that triggers cell death, if cells are irreversibly damaged, or cell survival, if the stress is mild. Hypoxia and chronic ER stress both induce chemoresistance. In this review we discuss the multiple and interconnected circuitries that link hypoxic environment, chronic ER stress and chemoresistance. We suggest that hypoxia and ER stress train and select the cells more adapted to survive in unfavorable conditions, by activating pleiotropic mechanisms including apoptosis inhibition, metabolic rewiring, anti-oxidant defences, drugs efflux. This adaptative process unequivocally expands clones that acquire resistance to chemotherapy. We believe that pharmacological inhibitors of HIF-1α and modulators of ER stress, although characterized by low specificty and anti-cancer efficacy when used as single agents, may be repurposed as chemosensitizers against hypoxic and chemorefractory tumors in the next future.
机译:实体肿瘤经常在微环境中生长,其特征在于≤2%O2张力。这种条件与特异性致癌拍拍的异常激活一起增加了缺氧诱导因子-1α(HIF-1α)的量和活性,该转录因子可控制高达200个基因,涉及新谐波,代谢再次兴奋,入侵和侵袭和耐药性。缺氧还诱导内质网(ER)应激,如果压力是不可逆的,或细胞存活,则触发细胞死亡的病症,如果应力温和。缺氧和慢性ER应激均诱导化学化。在这篇综述中,我们讨论了链接缺氧环境,慢性ER应力和化学抑制的多个和互连电路。我们建议通过激活包括细胞凋亡抑制,代谢再次化,抗氧化剂防御,药物流出,选择缺氧和ER压力训练,并选择更适应于不利条件下存活的细胞。这种适应性过程明确地扩展了获得对化疗抵抗力的克隆。我们认为,当用作单一剂时,HIF-1α的HIF-1α和调节剂的药理抑制剂和ER应激的调节剂的特征在于,可以在下未来进行抗缺氧和化学用肿瘤的化学敏感剂。

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