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Fractalkine/CX3CL1 调节人颞叶癫痫中的 GABA 电流。

Fractalkine/CX3CL1 modulates GABAA currents in human temporal lobe epilepsy.

机构信息

San Raffaele Pisana IRCCS, Rome, Italy.

出版信息

Epilepsia. 2013 Oct;54(10):1834-44. doi: 10.1111/epi.12354. Epub 2013 Sep 13.

Abstract

PURPOSE

The chemokine fractalkine/CX3CL1 and its receptor CX3CR1 are widely expressed in the central nervous system (CNS). Recent evidence showed that CX3CL1 participates in inflammatory responses that are common features of CNS disorders, such as epilepsy. Mesial temporal lobe epilepsy (MTLE) is the prevalent form of focal epilepsy in adults, and hippocampal sclerosis (HS) represents the most common underlying pathologic abnormality, as demonstrated at autopsy and postresection studies. Relevant features of MTLE are a characteristic pattern of neuronal loss, as are astrogliosis and microglia activation. Several factors affect epileptogenesis in patients with MTLE, including a lack of γ-aminobutyric acid (GABA)ergic inhibitory efficacy. Therefore, experiments were designed to investigate whether, in MTLE brain tissues, CX3CL1 may influence GABAA receptor (GABAA R) mediated transmission, with a particular focus on the action of CX3CL1 on the use-dependent decrease (rundown) of the GABA-evoked currents (IGABA ), a feature underlying the reduction of GABAergic function in epileptic tissue.

METHODS

Patch-clamp recordings were obtained from cortical pyramidal neurons in slices from six MTLE patients after surgery. Alternatively, the cell membranes from epileptic brain tissues of 17 MTLE patients or from surgical samples and autopsies of nonepileptic patients were microtransplanted into Xenopus oocytes, and IGABA were recorded using the standard two-microelectrode voltage-clamp technique. Immunohistochemical staining and double-labeling studies were carried out on the same brain tissues to analyze CX3CR1 expression.

KEY FINDINGS

In native pyramidal neurons from cortical slices of patients with MTLE, CX3CL1 reduced IGABA rundown and affected the recovery of IGABA amplitude from rundown. These same effects were confirmed in oocytes injected with cortical and hippocampal MTLE membranes, whereas CX3CL1 did not influence IGABA in oocytes injected with nonepileptic tissues. Consistent with a specific effect of CX3CL1 on tissues from patients with MTLE, CX3CR1 immunoreactivity was higher in MTLE sclerotic hippocampi than in control tissues, with a prominent expression in activated microglial cells.

SIGNIFICANCE

These findings indicate a role for CX3CL1 in MTLE, supporting recent evidence on the relevance of brain inflammation in human epilepsies. Our data demonstrate that in MTLE tissues the reduced GABAergic function can be modulated by CX3CL1. The increased CX3CR1 expression in microglia and the modulation by CX3CL1 of GABAergic currents in human epileptic brain suggests new therapeutic approaches for drug-resistant epilepsies based on the evidence that the propagation of seizures can be influenced by inflammatory processes.

摘要

目的

趋化因子 fractalkine/CX3CL1及其受体 CX3CR1 在中枢神经系统 (CNS) 中广泛表达。最近的证据表明,CX3CL1 参与了炎症反应,而炎症反应是 CNS 疾病的共同特征,例如癫痫。颞叶内侧癫痫 (MTLE) 是成人局灶性癫痫的常见形式,海马硬化 (HS) 是最常见的潜在病理异常,尸检和切除后研究均证实了这一点。MTLE 的相关特征是神经元丢失的特征性模式,以及星形胶质细胞增生和小胶质细胞激活。许多因素会影响 MTLE 患者的癫痫发生,包括 GABA 能抑制作用的缺乏。因此,实验旨在研究 CX3CL1 是否会影响 MTLE 脑组织中 GABAA 受体 (GABAA R) 介导的传递,特别是 CX3CL1 对 GABA 诱导电流 (IGABA) 进行作用依赖性减少(衰减)的作用,这是癫痫组织中 GABA 能功能降低的基础。

方法

从手术后的六位 MTLE 患者的皮质切片中获得皮质锥体神经元的膜片钳记录。或者,将来自 17 位 MTLE 患者的癫痫脑组织的细胞膜或来自手术样本和非癫痫患者的尸检组织的细胞膜微移植到非洲爪蟾卵母细胞中,并使用标准的双电极电压钳技术记录 IGABA。对同一脑组织进行免疫组织化学染色和双标记研究,以分析 CX3CR1 表达。

主要发现

在来自 MTLE 患者皮质切片的天然锥体神经元中,CX3CL1 降低了 IGABA 衰减,并影响了衰减后 IGABA 幅度的恢复。在注射了皮质和海马 MTLE 膜的卵母细胞中也证实了这些相同的作用,而 CX3CL1 对注射了非癫痫组织的卵母细胞没有影响。与 CX3CL1 对 MTLE 患者组织的特定作用一致,与对照组织相比,CX3CR1 免疫反应性在 MTLE 硬化海马中更高,在活化的小胶质细胞中表达明显。

意义

这些发现表明 CX3CL1 在 MTLE 中的作用,支持了最近关于脑炎症在人类癫痫中的相关性的证据。我们的数据表明,在 MTLE 组织中,GABA 能功能的降低可以通过 CX3CL1 来调节。CX3CR1 在小胶质细胞中的表达增加以及 CX3CL1 对人类癫痫脑内 GABA 电流的调制表明,基于证据表明癫痫发作的传播可以受炎症过程的影响,为耐药性癫痫提供了新的治疗方法。

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