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PAM (PIK3/AKT/mTOR) signaling in glia: potential contributions to brain tumors in aging

机译:PAM(PIK3 / AKT / MTOR)在GLIA中的信号传导:脑肿瘤的潜在贡献

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摘要

Despite a growing proportion of aged individuals at risk for developing cancer in the brain, the prognosis for these conditions remains abnormally poor due to limited knowledge of underlying mechanisms and minimal treatment options. While cancer metabolism in other organs is commonly associated with upregulated glycolysis (i.e. Warburg effect) and hyperactivation of PIK3/AKT/mTOR (PAM) pathways, the unique bioenergetic demands of the central nervous system may interact with these oncogenic processes to promote tumor progression in aging. Specifically, constitutive glycolysis and PIK3/AKT/mTOR signaling in glia may be dysregulated by age-dependent alterations in neurometabolic demands, ultimately contributing to pathological processes otherwise associated with PIK3/AKT/mTOR induction (e.g. cell cycle entry, impaired autophagy, dysregulated inflammation). Although several limitations to this theoretical model exist, the consideration of aberrant PIK3/AKT/mTOR signaling in glia during aging elucidates several therapeutic opportunities for brain tumors, including non-pharmacological interventions.
机译:尽管在大脑中发展癌症的风险不断增加的年龄患者,但由于对潜在机制和最低治疗方案的知识有限,这些条件的预后仍然异常差。虽然其他器官中的癌症代谢通常与上调糖酵解(即Warburg效应)和Pik3 / Akt / mtor(PAM)途径的多动激活,中枢神经系统的独特生物终端需求可以与这些致癌过程相互作用,以促进肿瘤进展老化。具体地,通过依赖于神经素需求的年龄依赖性改变,胶质糖中的组成型糖酵解和Pik3 / akt / mtor信号传导可以通过依赖于年龄依赖性的改变,最终促进与Pik3 / Akt / mTOR诱导相关的病理过程(例如细胞周期进入,自噬障碍,呼吸困难的炎症)。尽管存在对该理论模型的几个局限性,但在老化期间对胶质胶质中的异常PIK3 / MTOR信号传导的考虑阐明了脑肿瘤的几种治疗机会,包括非药理学干预。

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