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细胞外酸化诱导溶酶体失调。

Extracellular Acidification Induces Lysosomal Dysregulation.

机构信息

Department of Cancer Physiology, H Lee Moffitt Cancer Center and Research Institute, Tampa, FL 33612, USA.

Department of Oncological Sciences, University of South Florida, Tampa, FL 33612, USA.

出版信息

Cells. 2021 May 13;10(5):1188. doi: 10.3390/cells10051188.

Abstract

Many invasive cancers emerge through a years-long process of somatic evolution, characterized by an accumulation of heritable genetic and epigenetic changes and the emergence of increasingly aggressive clonal populations. In solid tumors, such as breast ductal carcinoma, the extracellular environment for cells within the nascent tumor is harsh and imposes different types of stress on cells, such as hypoxia, nutrient deprivation, and cytokine inflammation. Acidosis is a constant stressor of most cancer cells due to its production through fermentation of glucose to lactic acid in hypoxic or normoxic regions (Warburg effect). Over a short period of time, acid stress can have a profound effect on the function of lysosomes within the cells exposed to this environment, and after long term exposure, lysosomal function of the cancer cells can become completely dysregulated. Whether this dysregulation is due to an epigenetic change or evolutionary selection has yet to be determined, but understanding the mechanisms behind this dysregulation could identify therapeutic opportunities.

摘要

许多侵袭性癌症是通过多年的体细胞进化过程出现的,其特征是遗传和表观遗传变化的积累以及越来越具有侵袭性的克隆群体的出现。在实体瘤中,如乳腺导管癌,新生肿瘤内细胞的细胞外环境是恶劣的,并对细胞施加不同类型的压力,如缺氧、营养剥夺和细胞因子炎症。由于在缺氧或正常氧区域葡萄糖发酵产生乳酸,酸中毒是大多数癌细胞的持续应激源(瓦博格效应)。在短时间内,酸应激会对暴露于这种环境的细胞内溶酶体的功能产生深远影响,而在长期暴露后,癌细胞的溶酶体功能可能完全失调。这种失调是由于表观遗传变化还是进化选择尚待确定,但了解这种失调背后的机制可能会为治疗提供机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e60/8152284/027cae5d79e3/cells-10-01188-g001.jpg

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