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肿瘤坏死因子-α和谷氨酸对大鼠器官型海马培养物钙动力学的预处理效应。

Preconditioning effects of tumor necrosis factor-α and glutamate on calcium dynamics in rat organotypic hippocampal cultures.

机构信息

UCD School of Biomolecular and Biomedical Science, UCD Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

J Neuroimmunol. 2011 May;234(1-2):27-39. doi: 10.1016/j.jneuroim.2011.01.008. Epub 2011 Mar 12.

Abstract

During cerebral ischemia, elevation of TNF-α and glutamate to pathophysiological levels in the hippocampus may induce dysregulation of normal synaptic processes, leading ultimately to cell death. Previous studies have shown that patients subjected to a mild transient ischemic attack within a critical time window prior to a more severe ischemic episode may show attenuation in the clinical severity of the stroke and result in a more positive functional outcome. In this study we have investigated the individual contribution of pre-exposure to TNF-α or glutamate in the development of 'ischemic tolerance' to a subsequent insult, using organotypic hippocampal cultures. At 6 days in vitro (DIV), cultures were exposed to an acute concentration of glutamate (30 μM) or TNF-α (5 ng/ml) for 30 min, followed by 24h recovery period. We then examined the effect of the pretreatments on calcium dynamics of the cells within the CA region. We found that pretreatment with TNF-α or glutamate caused in a significant reduction in subsequent glutamate-induced Ca(2+) influx 24h later (control: 100.0 ± 0.8%, n=7769 cells; TNF-α: 76.8 ± 1.0%, n=5543 cells; glutamate: 75.3 ± 1.4%, n=3859 cells; p<0.001). Antagonism of circulating TNF-α (using infliximab, 25 μg/ml), and inhibition of the p38 MAP kinase pathway (using SB 203580, 10 μM) completely reversed this effect. However glutamate preconditioning did not appear to be mediated by p38 MAP kinase signalling, or NMDAR activation as neither SB 203580 nor D-AP5 (100 μM) altered this effect. Glutamate and TNF-α preconditioning resulted in small yet significant alterations in resting Ca(2+) levels (control: 100.0 ± 0.9%, n=2994 cells; TNF-α: 109.7 ± 1.0%, n=2884 cells; glutamate; 93.3 ± 0.8%, n=2899 cells; p<0.001), TNF-α's effect reversed by infliximab and SB 203580. Both TNF-α and glutamate also resulted in the reduction of the proportion (P) of responsive cells within the CA region of the hippocampus (control; P=0.459, 0.451 ≤ x ≥ 0.467, n=14,968 cells, TNF-α; P=0.40, 0.392 ≤ x ≥ 0.407, n=15,218; glutamate; P=0.388, 0.303 ≤ x ≥ 0.396, n=13,919 cells), and in the depression of the frequency of spontaneous Ca(2+) events (vs. control: TNF-α: p>0.00001, D=0.0454; glutamate: p>0.0001, D=0.0534). Our results suggest that attenuation in resting Ca(2+) activity and Ca(2+) related responsiveness of cells within the CA region as a result of glutamate or TNF-α pre-exposure, may contribute to the development of ischemic tolerance.

摘要

在脑缺血期间,海马体中 TNF-α 和谷氨酸的水平升高到病理生理水平,可能会导致正常突触过程的失调,最终导致细胞死亡。先前的研究表明,在更严重的缺血发作之前,在关键时间窗口内经历轻度短暂性缺血发作的患者可能会减轻中风的临床严重程度,并导致更积极的功能结果。在这项研究中,我们使用器官型海马培养物研究了 TNF-α 或谷氨酸预先暴露对随后损伤的“缺血耐受”发展的个体贡献。在体外 6 天(DIV)时,培养物暴露于急性浓度的谷氨酸(30 μM)或 TNF-α(5ng/ml)30 分钟,然后进行 24 小时恢复期。然后,我们检查了预处理对 CA 区细胞内钙动力学的影响。我们发现,TNF-α 或谷氨酸预处理导致随后的谷氨酸诱导的 Ca(2+)内流在 24 小时后显著减少(对照:100.0 ± 0.8%,n=7769 个细胞;TNF-α:76.8 ± 1.0%,n=5543 个细胞;谷氨酸:75.3 ± 1.4%,n=3859 个细胞;p<0.001)。循环 TNF-α 的拮抗作用(使用英夫利昔单抗,25μg/ml)和 p38MAP 激酶途径的抑制(使用 SB 203580,10μM)完全逆转了这种作用。然而,谷氨酸预处理似乎不是由 p38MAP 激酶信号转导或 NMDAR 激活介导的,因为 SB 203580 或 D-AP5(100μM)都没有改变这种作用。谷氨酸和 TNF-α 预处理导致静息 Ca(2+)水平发生微小但显著的变化(对照:100.0 ± 0.9%,n=2994 个细胞;TNF-α:109.7 ± 1.0%,n=2884 个细胞;谷氨酸;93.3 ± 0.8%,n=2899 个细胞;p<0.001),英夫利昔单抗和 SB 203580 逆转了 TNF-α 的作用。TNF-α 和谷氨酸还导致 CA 区海马内响应细胞的比例(P)减少(对照;P=0.459,0.451 ≤ x ≤ 0.467,n=14,968 个细胞,TNF-α;P=0.40,0.392 ≤ x ≤ 0.407,n=15,218 个细胞;谷氨酸;P=0.388,0.303 ≤ x ≤ 0.396,n=13,919 个细胞),以及自发 Ca(2+)事件的频率降低(与对照相比:TNF-α:p>0.00001,D=0.0454;谷氨酸:p>0.0001,D=0.0534)。我们的结果表明,由于谷氨酸或 TNF-α 预先暴露,CA 区细胞内静息 Ca(2+)活性和 Ca(2+)相关反应性的降低,可能导致缺血耐受的发展。

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