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线粒体在胃癌检测中的潜在作用:裂变与糖酵解。

Potential role of mitochondria in gastric cancer detection: Fission and glycolysis.

作者信息

Yang Hang, Li Yan, Hu Bing

机构信息

Department of Gastroenterology, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, P.R. China.

出版信息

Oncol Lett. 2021 Jun;21(6):439. doi: 10.3892/ol.2021.12700. Epub 2021 Apr 1.

Abstract

Gastric cancer (GC) is characterized by high morbidity and mortality rates worldwide. Helicobacter pylori infection, high salt intake, smoking, alcohol, low fiber intake, family history of GC, obesity and precancerous lesions, including chronic atrophic gastritis and intestinal metaplasia, are considered general risk factors for GC. Image enhancement endoscopy methods, which improve the visualization of mucosal structures and vascularity, may be used for the early diagnosis of GC, such as narrow band imaging, which can reveal fine details of subtle superficial abnormalities of early gastric cancer (EGC). Mitochondria are well-known for their role in producing ATP via the tricarboxylic acid cycle. In cancer cells, the energetic metabolism can be reprogrammed as anaerobic glycolysis for energy production and anabolic growth. In addition to their dominant metabolic functions, mitochondria participate in several central signaling pathways, such as the apoptotic pathway and NLRP3 inflammasome activation. Conversely, mitochondrial dynamics, including fission/fusion and mitophagy, can also contribute to the pathogenesis of cancer. The dysfunction and dysregulation of mitochondria have been associated with several ageing and degenerative diseases, as well as cancer. The present review focuses on energy metabolism and mitochondrial dynamics, and summarizes the changes in gastric carcinogenesis, the diagnosis of EGC and indicates potential targeted treatments.

摘要

胃癌(GC)在全球范围内具有高发病率和死亡率的特点。幽门螺杆菌感染、高盐摄入、吸烟、饮酒、低纤维摄入、胃癌家族史、肥胖以及癌前病变,包括慢性萎缩性胃炎和肠化生,被认为是胃癌的一般风险因素。图像增强内镜检查方法可改善黏膜结构和血管的可视化,可用于胃癌的早期诊断,如窄带成像,它能揭示早期胃癌(EGC)细微浅表异常的精细细节。线粒体以其通过三羧酸循环产生ATP的作用而闻名。在癌细胞中,能量代谢可重新编程为无氧糖酵解以进行能量产生和合成代谢生长。除了其主要的代谢功能外,线粒体还参与多种核心信号通路,如凋亡通路和NLRP3炎性小体激活。相反,线粒体动力学,包括裂变/融合和线粒体自噬,也可导致癌症的发病机制。线粒体的功能障碍和失调与多种衰老和退行性疾病以及癌症有关。本综述重点关注能量代谢和线粒体动力学,总结胃癌发生过程中的变化、EGC的诊断并指出潜在的靶向治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fa7/8045152/dfd092f213b0/ol-21-06-12700-g00.jpg

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