Suppr超能文献

大鼠和人神经胶质瘤细胞系中 Kir4.1 表达与钡敏感电流的相关性。

Correlation between Kir4.1 expression and barium-sensitive currents in rat and human glioma cell lines.

机构信息

Oscar Langendorff Institute of Physiology, Rostock University Medical Center, Rostock, Germany.

Oscar Langendorff Institute of Physiology, Rostock University Medical Center, Rostock, Germany; Center of Transdisciplinary Neurosciences Rostock, (CTNR), Rostock University Medical Center, Germany.

出版信息

Neurosci Lett. 2021 Jan 10;741:135481. doi: 10.1016/j.neulet.2020.135481. Epub 2020 Nov 5.

Abstract

Gliomas are the most common primary brain tumors and often become apparent through symptomatic epileptic seizures. Glial cells express the inwardly rectifying K channel Kir4.1 playing a major role in K buffering, and are presumably involved in facilitating epileptic hyperexcitability. We therefore aimed to investigate the molecular and functional expression of Kir4.1 channels in cultured rat and human glioma cells. Quantitative PCR showed reduced expression of Kir4.1 in rat C6 and F98 cells as compared to control. In human U-87MG cells and in patient-derived low-passage glioblastoma cultures, Kir4.1 expression was also reduced as compared to autopsy controls. Testing Kir4.1 function using whole-cell patch-clamp experiments on rat C6 and two human low-passage glioblastoma cell lines (HROG38 and HROG05), we found a significantly depolarized resting membrane potential (RMP) in HROG05 (-29 ± 2 mV, n = 11) compared to C6 (-71 ± 1 mV, n = 12, P < 0.05) and HROG38 (-60 ± 2 mV, n = 12, P < 0.05). Sustained K inward or outward currents were sensitive to Ba added to the bath solution in HROG38 and C6 cells, but not in HROG05 cells, consistent with RMP depolarization. While immunocytochemistry confirmed Kir4.1 in all three cell lines including HROG05, we found that aquaporin-4 and Kir5.1 were also significantly reduced suggesting that the Ba-sensitive K current is generally impaired in glioma tissue. In summary, we demonstrated that glioma cells differentially express functional inwardly rectifying K channels suggesting that impaired K buffering in cells lacking functional Ba-sensitive K currents may be a risk factor for increased excitability and thereby contribute to the differential epileptogenicity of gliomas.

摘要

神经胶质瘤是最常见的原发性脑肿瘤,通常通过症状性癫痫发作显现出来。神经胶质细胞表达内向整流钾通道 Kir4.1,在钾缓冲中起主要作用,并可能参与促进癫痫发作的过度兴奋性。因此,我们旨在研究 Kir4.1 通道在培养的大鼠和人神经胶质瘤细胞中的分子和功能表达。定量 PCR 显示,与对照相比,大鼠 C6 和 F98 细胞中 Kir4.1 的表达减少。在人 U-87MG 细胞和源自患者的低传代神经胶质瘤培养物中,与尸检对照相比,Kir4.1 的表达也减少了。使用全细胞膜片钳实验在大鼠 C6 和两种人低传代神经胶质瘤细胞系(HROG38 和 HROG05)上测试 Kir4.1 功能,我们发现 HROG05 的静息膜电位(RMP)明显去极化(-29 ± 2 mV,n = 11)与 C6(-71 ± 1 mV,n = 12,P < 0.05)和 HROG38(-60 ± 2 mV,n = 12,P < 0.05)相比。在 HROG38 和 C6 细胞中,持续的钾内向或外向电流对浴液中添加的 Ba 敏感,但在 HROG05 细胞中则不敏感,这与 RMP 去极化一致。虽然免疫细胞化学在包括 HROG05 在内的所有三种细胞系中均证实了 Kir4.1 的存在,但我们发现水通道蛋白-4 和 Kir5.1 的表达也显著减少,这表明在缺乏功能性 Ba 敏感钾电流的胶质瘤组织中,通常会损害 Ba 敏感的钾电流。总之,我们证明了神经胶质瘤细胞差异表达功能性内向整流钾通道,这表明缺乏功能性 Ba 敏感钾电流的细胞中钾缓冲受损可能是兴奋性增加的危险因素,并因此有助于神经胶质瘤的差异性致痫性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验