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首页> 外文期刊>Neurochemical research >Osmolytes and mechanisms involved in regulatory volume decrease under conditions of sudden or gradual osmolarity decrease.
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Osmolytes and mechanisms involved in regulatory volume decrease under conditions of sudden or gradual osmolarity decrease.

机译:在渗透压突然或逐渐降低的条件下,参与调节体积的渗透物和机制降低。

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摘要

A decrease in external osmolarity results in cell swelling and the immediate activation of a mechanism to restore cell volume, known as regulatory volume decrease (RVD). When exposed to a gradual osmolarity decrease (GODE), some cells do not swell. This reflects the operation of an active regulatory process known as isovolumetric regulation (IVR). The mechanisms underlying IVR appear similar to those activated during RVD, namely the extrusion of K+, Cl-, amino acids, and other organic molecules. A previous study has documented IVR in cerebellar granule neurons, parallel to an early efflux of taurine and Cl-, whereas K+ efflux is delayed. In this work we briefly review the importance of amino acids in the mechanisms of cell volume control in the brain, with emphasis on IVR. We also present experiments showing the response to GODE in cerebellar astrocytes. The currents activated during GODE, recorded in the whole-cell configuration of the patch clamp technique, indicate the early activation of an anion current, followed by a more delayed cation current. A correlation between the time course of amino acid efflux during GODE and the occurrence or not of IVR in various cell types, suggest the importance of these osmolytes in the volume regulatory process in this model.
机译:外部渗透压降低导致细胞肿胀,并立即激活恢复细胞体积的机制,这称为调节体积降低(RVD)。当暴露于逐渐的渗透压降低(GODE)时,某些细胞不会肿胀。这反映了称为等容体积调节(IVR)的主动调节过程的运行。 IVR的机制似乎与RVD激活的机制相似,即K +,Cl-,氨基酸和其他有机分子的挤出。先前的研究已记录了小脑颗粒神经元中的IVR,与牛磺酸和Cl-的早期流出平行,而K +流出延迟。在这项工作中,我们简要回顾了氨基酸在大脑细胞体积控制机制中的重要性,重点是IVR。我们还提出了实验,显示小脑星形胶质细胞对GODE的反应。在膜片钳技术的全细胞配置中记录的GODE期间激活的电流表明,阴离子电流的激活较早,随后阳离子电流的延迟更大。在GODE期间氨基酸外排的时间过程与IVR在各种细胞类型中的发生与否之间的相关性表明,在该模型中这些渗透物在体积调节过程中的重要性。

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