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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Mechanisms for L-channel-mediated increase in [Ca2+]i and its reduction by anti-bipolar drugs in cultured astrocytes combined with its mRNA expression in freshly isolated cells support the importance of astrocytic L-channels
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Mechanisms for L-channel-mediated increase in [Ca2+]i and its reduction by anti-bipolar drugs in cultured astrocytes combined with its mRNA expression in freshly isolated cells support the importance of astrocytic L-channels

机译:L通道介导的[Ca2 +] i的增加及其在培养的星形胶质细胞中被抗双极性药物降低的机制以及其在新鲜分离的细胞中的mRNA表达结合的机制支持了星形细胞L通道的重要性

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The importance of Ca2+ signaling in astrocytes is undisputed but a potential role of Ca2+ influx via L-channels in the brain in vivo is disputed, although expression of these channels in cultured astrocytes is recognized. This study shows that an increase in free cytosolic Ca2+ concentration ([Ca2+]i) in astrocytes in primary cultures in response to an increased extracellular K+ concentration (45mM) is inhibited not only by nifedipine (confirming previous observations) but also to a very large extent by ryanodine, inhibiting ryanodine receptor-mediated release of Ca2+, known to occur in response to an elevation in [Ca2+]i. This means that the actual influx of Ca2+ is modest, which may contribute to the difficulty in demonstrating L-channel-mediated Ca2+ currents in astrocytes in intact brain tissue. Chronic treatment with any of the 3 conventional anti-bipolar drugs lithium, carbamazepine or valproic acid similarly causes a pronounced inhibition of K+-mediated increase in [Ca2+]i. This is shown to be due to an inhibition of capacitative Ca2+ influx, reflected by decreased mRNA and protein expression of the 'transient receptor potential channel' (TRPC1), a constituent of store-operated channels (SOCEs). Literature data are cited (i) showing that depolarization-mediated Ca2+ influx in response to an elevated extracellular K+ concentration is important for generation of Ca2+ oscillations and for the stimulatory effect of elevated K+ concentrations in intact, non-cultured brain tissue, and (ii) that Ca2+ channel activity is dependent upon availability of metabolic substrates, including glycogen. Finally, expression of mRNA for Cav1.3 is demonstrated in freshly separated astrocytes from normal brain.
机译:星形胶质细胞中Ca2 +信号传导的重要性是无可争议的,但是尽管人们认识到这些通道在培养的星形胶质细胞中的表达,但Ca2 +经由脑内L通道流入体内的潜在作用仍存在争议。这项研究表明,硝苯地平不仅抑制了硝苯地平抑制了原代培养的星形胶质细胞中游离胞质Ca2 +浓度([Ca2 +] i)的增加(45mM),这一点不仅得到了硝苯地平的抑制(证实了先前的观察结果),而且还受到了很大的抑制作用。在一定程度上受雷诺定的抑制,抑制了由雷诺定受体介导的Ca2 +释放,这是由于[Ca2 +] i升高而引起的。这意味着实际的Ca2 +流入是适度的,这可能导致难以在完整的脑组织的星形胶质细胞中证明L通道介导的Ca2 +电流。用3种常规抗双极药物锂,卡马西平或丙戊酸中的任一种进行慢性治疗,同样会明显抑制K +介导的[Ca2 +] i的增加。这表明是由于抑制Ca2 +内流,反映为“瞬时受体电位通道”(TRPC1)(存储操作通道(SOCE)的组成部分)的mRNA和蛋白质表达降低。引用文献数据(i)显示响应于细胞外K +浓度升高而去极化介导的Ca2 +内流对于完整的,未培养的脑组织中Ca2 +振荡的产生和K +浓度升高的刺激作用很重要,并且(ii )Ca2 +通道活性取决于包括糖原在内的代谢底物的可用性。最后,在来自正常大脑的新鲜分离的星形胶质细胞中证明了Cav1.3的mRNA表达。

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