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A role for intracellular zinc in glioma alteration of neuronal chloride equilibrium

机译:细胞内锌在神经胶质瘤改变神经元氯化物平衡中的作用

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摘要

Glioma patients commonly suffer from epileptic seizures. However, the mechanisms of glioma-associated epilepsy are far to be completely understood. Using glioma-neurons co-cultures, we found that tumor cells are able to deeply influence neuronal chloride homeostasis, by depolarizing the reversal potential of γ -aminobutyric acid (GABA)-evoked currents (E GABA ). E GABA depolarizing shift is due to zinc-dependent reduction of neuronal KCC2 activity and requires glutamate release from glioma cells. Consistently, intracellular zinc loading rapidly depolarizes E GABA in mouse hippocampal neurons, through the Src/Trk pathway and this effect is promptly reverted upon zinc chelation. This study provides a possible molecular mechanism linking glioma invasion to excitation/inhibition imbalance and epileptic seizures, through the zinc–mediated disruption of neuronal chloride homeostasis.
机译:胶质瘤患者通常患有癫痫发作。然而,与神经胶质瘤相关的癫痫的机制尚待完全了解。使用神经胶质瘤-神经元共培养,我们发现肿瘤细胞能够通过使γ-氨基丁酸(GABA)诱发的电流(E GABA)的逆转电位去极化来深刻影响神经元氯化物的体内稳态。 E GABA的去极化转变是由于神经元KCC2活性的锌依赖性降低,需要从神经胶质瘤细胞释放谷氨酸。一致地,细胞内锌负载通过Src / Trk途径使小鼠海马神经元中的E GABA迅速去极化,并且这种作用在锌螯合后迅速恢复。这项研究提供了可能的分子机制,通过锌介导的神经元氯化物稳态的破坏,将神经胶质瘤的入侵与兴奋/抑制失衡和癫痫发作联系起来。

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