Chen Johnny, Rodriguez Andrea Salinas, Morales Maximiliano Arath, Fang Xiaoqian
Department of Neuroscience, School of Medicine, University of Texas Rio Grande Valley, Edinburg, TX 78539, USA.
Department of Health and Biomedical Sciences, University of Texas Rio Grande Valley, Edinburg, TX 78539, USA.
Curr Issues Mol Biol. 2023 Oct 29;45(11):8687-8703. doi: 10.3390/cimb45110546.
Autophagy is a vital cellular process that functions to degrade and recycle damaged organelles into basic metabolites. This allows a cell to adapt to a diverse range of challenging conditions. Autophagy assists in maintaining homeostasis, and it is tightly regulated by the cell. The disruption of autophagy has been associated with many diseases, such as neurodegenerative disorders and cancer. This review will center its discussion on providing an in-depth analysis of the current molecular understanding of autophagy and its relevance to brain tumors. We will delve into the current literature regarding the role of autophagy in glioma pathogenesis by exploring the major pathways of JAK2/STAT3 and PI3K/AKT/mTOR and summarizing the current therapeutic interventions and strategies for glioma treatment. These treatments will be evaluated on their potential for autophagy induction and the challenges associated with their utilization. By understanding the mechanism of autophagy, clinical applications for future therapeutics in treating gliomas can be better targeted.
自噬是一种重要的细胞过程,其功能是将受损细胞器降解并循环利用为基本代谢物。这使细胞能够适应各种具有挑战性的条件。自噬有助于维持体内平衡,并且受到细胞的严格调控。自噬的破坏与许多疾病有关,如神经退行性疾病和癌症。本综述将围绕对自噬当前分子理解及其与脑肿瘤相关性的深入分析展开讨论。我们将通过探索JAK2/STAT3和PI3K/AKT/mTOR的主要途径,深入研究当前关于自噬在胶质瘤发病机制中作用的文献,并总结当前胶质瘤治疗的治疗干预措施和策略。将对这些治疗方法诱导自噬的潜力及其应用相关挑战进行评估。通过了解自噬机制,可以更好地靶向未来治疗胶质瘤的临床应用。