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胶质瘤中的离子通道:从分子基础到治疗。

Ion Channels in Gliomas-From Molecular Basis to Treatment.

机构信息

Department of Medical Genetics, Shodair Children's Hospital, Helena, MT 59601, USA.

Division of Biological Sciences, University of Montana, Missoula, MT 59812, USA.

出版信息

Int J Mol Sci. 2023 Jan 28;24(3):2530. doi: 10.3390/ijms24032530.

Abstract

Ion channels provide the basis for the nervous system's intrinsic electrical activity. Neuronal excitability is a characteristic property of neurons and is critical for all functions of the nervous system. Glia cells fulfill essential supportive roles, but unlike neurons, they also retain the ability to divide. This can lead to uncontrolled growth and the formation of gliomas. Ion channels are involved in the unique biology of gliomas pertaining to peritumoral pathology and seizures, diffuse invasion, and treatment resistance. The emerging picture shows ion channels in the brain at the crossroads of neurophysiology and fundamental pathophysiological processes of specific cancer behaviors as reflected by uncontrolled proliferation, infiltration, resistance to apoptosis, metabolism, and angiogenesis. Ion channels are highly druggable, making them an enticing therapeutic target. Targeting ion channels in difficult-to-treat brain tumors such as gliomas requires an understanding of their extremely heterogenous tumor microenvironment and highly diverse molecular profiles, both representing major causes of recurrence and treatment resistance. In this review, we survey the current knowledge on ion channels with oncogenic behavior within the heterogeneous group of gliomas, review ion channel gene expression as genomic biomarkers for glioma prognosis and provide an update on therapeutic perspectives for repurposed and novel ion channel inhibitors and electrotherapy.

摘要

离子通道为神经系统的固有电活动提供了基础。神经元兴奋性是神经元的一个特征属性,对神经系统的所有功能都至关重要。神经胶质细胞发挥着重要的支持作用,但与神经元不同的是,它们还保留着分裂的能力。这可能导致不受控制的生长和形成神经胶质瘤。离子通道参与了与神经胶质瘤相关的肿瘤周围病理学和癫痫、弥漫性浸润和治疗耐药性等独特生物学特性。新兴的研究表明,离子通道在大脑中处于神经生理学和特定癌症行为的基本病理生理过程的交汇点,这些癌症行为表现为不受控制的增殖、浸润、抗细胞凋亡、代谢和血管生成。离子通道具有高度可成药性,因此成为一个诱人的治疗靶点。针对神经胶质瘤等难以治疗的脑肿瘤中的离子通道需要了解其极其异质的肿瘤微环境和高度多样化的分子谱,这两者都是复发和治疗耐药性的主要原因。在这篇综述中,我们调查了具有致癌行为的离子通道在神经胶质瘤这一异质群体中的最新知识,回顾了离子通道基因表达作为神经胶质瘤预后的基因组生物标志物,并更新了经重新利用和新型离子通道抑制剂和电疗的治疗观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f678/9916861/7c66f49a8968/ijms-24-02530-g001.jpg

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