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Is targeting autophagy mechanism in cancer a good approach? The possible double-edge sword effect

机译:靶向癌症的自噬机制是一种好方法吗? 可能的双刃剑效果

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Autophagy is a conserved cellular process required to maintain homeostasis. The hallmark of autophagy is the formation of a phagophore that engulfs cytosolic materials for degradation and recycling to synthesize essential components. Basal autophagy is constitutively active under normal conditions and it could be further induced by physiological stimuli such as hypoxia, nutrient starvation, endoplasmic reticulum stress,energy depletion, hormonal stimulation and pharmacological treatment. In cancer, autophagy is highly context-specific depending on the cell type, tumour microenvironment, disease stage and external stimuli. Recently, the emerging role of autophagy as a double-edged sword in cancer has gained much attention. On one hand, autophagy suppresses malignant transformation by limiting the production of reactive oxygen species and DNA damage during tumour development. Subsequently, autophagy evolved to support the survival of cancer cells and promotes the tumourigenicity of cancer stem cells at established sites. Hence, autophagy is an attractive target for cancer therapeutics and researchers have been exploiting the use of autophagy modulators as adjuvant therapy. In this review, we present a summary of autophagy mechanism and controlling pathways, with emphasis on the dual-role of autophagy (double-edged sword) in cancer. This is followed by an overview of the autophagy modulation for cancer treatment and is concluded by a discussion on the current perspectives and future outlook of autophagy exploitation for precision medicine.
机译:自噬是维持稳态所需的细胞过程。自噬的标志是形成噬菌体,吞噬细胞溶质材料,用于降解和回收以合成必要组分。基础自噬在正常情况下组成型活性,可以通过缺氧,营养饥饿,内质网胁迫,能量耗尽,激素刺激和药理学治疗等生理刺激进一步诱导。在癌症中,自噬具有高度上下文特异性,取决于细胞类型,肿瘤微环境,疾病阶段和外部刺激。最近,自噬的新兴作用是癌症中双刃剑的关注。一方面,通过限制肿瘤发育过程中的活性氧物质和DNA损伤的产生来抑制恶性转化。随后,Autophagy进化以支持癌细胞的存活率,并促进癌症干细胞在已建立的地点的肿瘤性。因此,自噬是癌症治疗药物和研究人员的吸引力,一直利用自噬调制器作为辅助治疗的使用。在这篇综述中,我们提出了自噬机制和控制途径的概要,重点是癌症中自噬(双刃剑)的双重作用。其次是概述癌症治疗的自噬调制,并通过讨论当前的观点和未来自噬剥削对精密药物的探讨来结束。

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