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淋巴细胞对非等渗介质的反应:体积调节行为。

Responses of lymphocytes to anisotonic media: volume-regulating behavior.

作者信息

Grinstein S, Rothstein A, Sarkadi B, Gelfand E W

出版信息

Am J Physiol. 1984 Mar;246(3 Pt 1):C204-15. doi: 10.1152/ajpcell.1984.246.3.C204.

DOI:10.1152/ajpcell.1984.246.3.C204
PMID:6367480
Abstract

The regulatory responses elicited in lymphoid cells suspended in anisotonic media are reviewed. The immediate response approximates osmometric behavior. In addition, in hypotonic media, the initial osmometric swelling is followed by a regulatory volume decrease (RVD), which is associated with KCl loss. The volume-induced effluxes of K+ and Cl- are mediated by two independent conductive pathways. Ca2+-depletion experiments and studies of inhibitor susceptibility suggest that Ca2+ may mediate the activation of the K+ pathway. The responses of the two main lymphocyte subpopulations to hypotonic challenge are different. RVD is much more rapid in T- than in B-cells, regardless of their tissue of origin. Under certain conditions, shrunken lymphocytes will regain their initial volume. This regulatory volume increase (RVI) is due to NaCl uptake, followed by a secondary exchange of Na+ for K+ via the Na+-K+ pump. Na+ is primarily taken up in exchange for H+ through an amiloride-sensitive pathway, whereas Cl- enters in exchange for HCO-3 (or OH-). Anion and cation fluxes responsible for RVI are electroneutral. Some of the volume-sensitive pathways can also be activated in isotonic cells. The conductive K+ pathway is activated by Ca2+ plus ionophore A23187, and the Na+-H+ exchanger can be activated by cytoplasmic acidification. The responses of lymphocytes to anisotonic challenge are compared with those of other cells, and the possible significance of the volume-induced fluxes is discussed.

摘要

本文综述了悬浮于非等渗介质中的淋巴细胞所引发的调节反应。即时反应近似于渗透测定行为。此外,在低渗介质中,初始的渗透肿胀之后会出现调节性体积减小(RVD),这与氯化钾的流失有关。钾离子和氯离子的体积诱导外流由两条独立的传导途径介导。钙离子耗竭实验和抑制剂敏感性研究表明,钙离子可能介导钾离子途径的激活。两种主要淋巴细胞亚群对低渗刺激的反应不同。无论其来源组织如何,T细胞中的RVD比B细胞中的要快得多。在某些条件下,皱缩的淋巴细胞会恢复其初始体积。这种调节性体积增加(RVI)是由于氯化钠的摄取,随后通过钠钾泵进行钠离子与钾离子的二次交换。钠离子主要通过对阿米洛利敏感的途径以交换氢离子的方式摄取,而氯离子则以交换碳酸氢根离子(或氢氧根离子)的方式进入。负责RVI的阴离子和阳离子通量是电中性的。一些体积敏感途径也可在等渗细胞中被激活。传导性钾离子途径可被钙离子加离子载体A23187激活,钠氢交换体可被细胞质酸化激活。将淋巴细胞对等渗刺激的反应与其他细胞的反应进行了比较,并讨论了体积诱导通量的可能意义。

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