International School for Advanced Studies (SISSA), Trieste, Italy.
Institute of Materials (IOM-CNR), Area Science Park, Basovizza, Trieste, Italy.
J Clin Invest. 2024 Aug 1;134(18):e166271. doi: 10.1172/JCI166271.
Patients affected by glioma frequently experience epileptic discharges; however, the causes of brain tumor-related epilepsy (BTRE) are still not completely understood. We investigated the mechanisms underlying BTRE by analyzing the effects of exosomes released by U87 glioma cells and by patient-derived glioma cells. Rat hippocampal neurons incubated for 24 hours with these exosomes exhibited increased spontaneous firing, while their resting membrane potential shifted positively by 10-15 mV. Voltage clamp recordings demonstrated that the activation of the Na+ current shifted toward more hyperpolarized voltages by 10-15 mV. To understand the factors inducing hyperexcitability, we focused on exosomal cytokines. Western blot and ELISAs showed that TNF-α was present inside glioma-derived exosomes. Remarkably, incubation with TNF-α fully mimicked the phenotype induced by exosomes, with neurons firing continuously, while their resting membrane potential shifted positively. Real-time PCR revealed that both exosomes and TNF-α induced overexpression of the voltage-gated Na+ channel Nav1.6, a low-threshold Na+ channel responsible for hyperexcitability. When neurons were preincubated with infliximab, a specific TNF-α inhibitor, the hyperexcitability induced by exosomes and TNF-α was drastically reduced. We propose that infliximab, an FDA-approved drug to treat rheumatoid arthritis, could ameliorate the conditions of glioma patients with BTRE.
受神经胶质瘤影响的患者常发生癫痫放电;然而,脑肿瘤相关性癫痫(BTRE)的病因仍不完全清楚。我们通过分析 U87 神经胶质瘤细胞和患者来源的神经胶质瘤细胞释放的外泌体的作用来研究 BTRE 的机制。与这些外泌体孵育 24 小时的大鼠海马神经元表现出自发放电增加,而其静息膜电位正向移动 10-15mV。电压钳记录表明,Na+电流的激活向更超极化的电压移动了 10-15mV。为了了解诱导过度兴奋的因素,我们专注于外泌体中的细胞因子。Western blot 和 ELISA 显示 TNF-α存在于神经胶质瘤衍生的外泌体中。值得注意的是,TNF-α孵育完全模拟了外泌体诱导的表型,神经元连续放电,而其静息膜电位正向移动。实时 PCR 显示外泌体和 TNF-α均诱导电压门控 Na+通道 Nav1.6 的过表达,Nav1.6 是一种低阈值 Na+通道,负责过度兴奋。当神经元用英夫利昔单抗(一种专门用于治疗类风湿关节炎的 TNF-α抑制剂)预先孵育时,外泌体和 TNF-α诱导的过度兴奋明显减少。我们提出,英夫利昔单抗(一种已被 FDA 批准用于治疗类风湿关节炎的药物)可改善 BTRE 脑肿瘤患者的病情。