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Autophagy Paradox of Cancer: Role, Regulation, and Duality

机译:癌症的自噬悖论:角色,规则和二元性

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摘要

Autophagy, a catabolic process, degrades damaged and defective cellular materials through lysosomes, thus working as a recycling mechanism of the cell. It is an evolutionarily conserved and highly regulated process that plays an important role in maintaining cellular homeostasis. Autophagy is constitutively active at the basal level; however, it gets enhanced to meet cellular needs in various stress conditions. The process involves various autophagy-related genes that ultimately lead to the degradation of targeted cytosolic substrates. Many factors modulate both upstream and downstream autophagy pathways like nutritional status, energy level, growth factors, hypoxic conditions, and localization of p53. Any problem in executing autophagy can lead to various pathological conditions including neurodegeneration, aging, and cancer. In cancer, autophagy plays a contradictory role; it inhibits the formation of tumors, whereas, during advanced stages, autophagy promotes tumor progression. Besides, autophagy protects the tumor from various therapies by providing recycled nutrition and energy to the tumor cells. Autophagy is stimulated by tumor suppressor proteins, whereas it gets inhibited by oncogenes. Due to its dynamic and dual role in the pathogenesis of cancer, autophagy provides promising opportunities in developing novel and effective cancer therapies along with managing chemoresistant cancers. In this article, we summarize different strategies that can modulate autophagy in cancer to overcome the major obstacle, i.e., resistance developed in cancer to anticancer therapies.
机译:自噬,分解代谢过程,通过溶酶体降低损坏和缺陷的细胞材料,从而用作细胞的再循环机制。它是一种进化的保守和高度调节的方法,在维持细胞稳态中起着重要作用。自噬在基础层面上是组成型活跃的;然而,它得到增强,以满足各种压力条件的细胞需求。该方法涉及各种自噬相关基因,最终导致靶向细胞溶质基材的降解。许多因素调节上游和下游自噬途径,如营养状况,能量水平,生长因子,缺氧条件和P53的定位。执行自噬中的任何问题都可以导致各种病理病理条件,包括神经变性,衰老和癌症。在癌症中,自噬起着矛盾的作用;它抑制肿瘤的形成,而在晚期阶段期间,自噬促进肿瘤进展。此外,通过向肿瘤细胞提供再循环的营养和能量,自噬免受各种疗法保护肿瘤。肿瘤抑制蛋白刺激自噬,而它被癌素抑制。由于其在癌症发病机制中的动态和双重作用,自噬在于制定新颖和有效的癌症疗法以及管理化学癌症的有希望的机会。在本文中,我们总结了可以调节癌症中自噬的不同策略,以克服主要障碍,即癌症患者对抗癌疗法的抵抗力。

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