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Tumor Cell Hypoxia and the Hypoxia-Response Signaling System as a Target for Prostate Cancer Therapy

机译:肿瘤细胞缺氧和缺氧反应信号系统作为前列腺癌治疗的目标。

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The accumulation of cancerous cells within a growing prostate tumor can deprive them of adequate vascular support. Without this support, the affected tumor cells become hypoxic, a condition that is usually unfavorable for the further growth and survival of eukaryotic cells. Mammalian cells, however, have the ability of responding to a hypoxic environment by activating a “hypoxia-response” signaling system. Ultimately, this signaling system upregulates the expression of a network of gene products that increase the propensity of the cell to survive even in this adverse environment. With increasing evidence that hypoxia and an activated hypoxia-response signaling system can influence progression (via increased angiogenic propensity and apoptotic resistance) and the therapeutic responsiveness of prostate cancer cells, this review will examine the concept of targeting hypoxia or the hypoxia-response system of prostate tumor cells as a means to suppress prostate tumor progression and metastasis or perhaps even as a means for eliminating prostate tumors in advanced prostate cancer patients
机译:癌细胞在不断增长的前列腺肿瘤中的积累会剥夺其足够的血管支持。没有这种支持,受影响的肿瘤细胞将变得缺氧,这种情况通常不利于真核细胞的进一步生长和存活。然而,哺乳动物细胞具有通过激活“低氧反应”信号系统来响应低氧环境的能力。最终,该信号系统上调了基因产物网络的表达,这些基因产物即使在这种不利环境下也能增加细胞存活的可能性。随着越来越多的证据表明,缺氧和激活的缺氧反应信号系统可以影响进展(通过增加血管生成倾向和凋亡抗性)和前列腺癌细胞的治疗反应性,本文将探讨针对缺氧或缺氧反应系统的概念。前列腺肿瘤细胞可以作为抑制前列腺肿瘤进展和转移的一种手段,甚至可以作为消除晚期前列腺癌患者体内前列腺肿瘤的手段

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