线粒体功能障碍与癌症发生:离子通道在癌症发展中的参与

IF 4.3 2区 生物学 Q2 CELL BIOLOGY
Gilnei Bruno da Silva , Geórgia de Carvalho Braga , Júlia Leão Batista Simões , Margarete Dulce Bagatini , Aniela Pinto Kempka
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引用次数: 0

摘要

线粒体是细胞内稳态的基本结构,控制着有关能量功能和细胞存活的多种条件。为了维持这些细胞器在理想条件下的功能,它们的膜上有不同无机离子的离子通道,这些离子通道必须保持平衡,才能为细胞器和细胞提供适当的功能。然而,研究表明,包括癌症在内的其他健康状况也会损害线粒体离子通道的活性。从这个意义上说,钾、钙和钙活化钾通道活性的改变主要与癌症的发展和细胞稳态的改变有关,证明了它们作为药理靶点的作用。考虑到这一点,科学家们已经发现了与细胞凋亡和细胞存活减少相关的线粒体和细胞反应,这表明这种可能的治疗方法在致癌背景下具有潜力。尽管如此,很少有研究仍然评估线粒体离子通道调节作为治疗癌症的方法。因此,必须对这个问题进行更多的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mitochondrial dysfunction and carcinogenesis: The engagement of ion channels in cancer development

Mitochondrial dysfunction and carcinogenesis: The engagement of ion channels in cancer development
Mitochondria represent a fundamental structure for cellular homeostasis, controlling multiple conditions regarding energetic functions and cellular survival. To maintain these organelles functioning in ideal conditions, their membranes count with ion channels for different inorganic ions, which must be balanced to offer the proper function for both the organelle and the cell. However, studies have shown that other health conditions impair the activities of mitochondrial ion channels, including cancer. In this sense, the altered activities of potassium, calcium, and calcium-activated potassium channels are mainly linked with cancer development and cellular homeostasis alteration, demonstrating their role as pharmacological targets. With that in mind, scientists have found significant mitochondrial and cellular responses related to apoptosis and reduction of cellular survival from cells with modulated ion channels, indicating the potential of this possible therapy in carcinogenic contexts. Nonetheless, few studies still evaluate mitochondrial ion channel modulation as a treatment against cancer. Hence, more research must be conducted on this subject.
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来源期刊
Cell calcium
Cell calcium 生物-细胞生物学
CiteScore
8.70
自引率
5.00%
发文量
115
审稿时长
35 days
期刊介绍: Cell Calcium covers the field of calcium metabolism and signalling in living systems, from aspects including inorganic chemistry, physiology, molecular biology and pathology. Topic themes include: Roles of calcium in regulating cellular events such as apoptosis, necrosis and organelle remodelling Influence of calcium regulation in affecting health and disease outcomes
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