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镰状细胞中脱氧诱导的阳离子通量。IV. 细胞外钙的调节作用

Deoxygenation-induced cation fluxes in sickle cells. IV. Modulation by external calcium.

作者信息

Joiner C H, Jiang M, Franco R S

机构信息

Department of Pediatrics, University of Cincinnati College of Medicine, Children's Hospital Medical Center, Ohio, USA.

出版信息

Am J Physiol. 1995 Aug;269(2 Pt 1):C403-9. doi: 10.1152/ajpcell.1995.269.2.C403.

Abstract

Net cation movements were measured in low-density sickle red blood cells (SS RBC) in the presence and absence of oxygen. External Ca2+ (Ca2+o) partially inhibited deoxygenation-induced fluxes of both Na+ and K+. Deoxygenation-induced Na+ influx was reduced by 2 mM Ca2+o to 0.71 +/- 0.04 (SE) of its value in Ca(2+)-free solutions, whereas this ratio was 0.90 +/- 0.05 for K+ efflux (P < 0.01 by paired t-test). Because Ca2+o inhibited Na+ influx more than K+ efflux, net cation loss in deoxygenated SS RBC was higher in the presence of Ca2+o. In separate experiments, Ca2+o reduced deoxygenation-induced Na+ influx to 0.66 +/- 0.03 of its Ca(2+)-free value compared with 0.77 +/- 0.03 for Rb+ influx (P < 0.001), indicating relative selectivity of this effect for Na+ over Rb+. However, this effect is not specific for Ca2+ because other divalent cations also inhibited deoxygenation-induced Na+ and K+ fluxes. Under the conditions of these experiments, no evidence for K+ channel activation was found, indicating that K+ loss measured in deoxygenated SS RBC was mediated by the deoxygenation-induced pathway. These studies show that in the presence of Ca2+o deoxygenation-induced Na+ influx and K+ efflux are unbalanced. This pathway can, therefore, mediate cation loss and contribute directly to cellular dehydration in SS RBC.

摘要

在有氧和无氧条件下,对低密度镰状红细胞(SS RBC)中的净阳离子运动进行了测量。细胞外Ca2+(Ca2+o)部分抑制了脱氧诱导的Na+和K+通量。2 mM的Ca2+o使脱氧诱导的Na+内流减少至其在无Ca2+溶液中值的0.71±0.04(SE),而K+外流的这一比例为0.90±0.05(配对t检验,P<0.01)。由于Ca2+o对Na+内流的抑制作用大于K+外流,因此在存在Ca2+o的情况下,脱氧的SS RBC中的净阳离子损失更高。在单独的实验中,Ca2+o使脱氧诱导的Na+内流减少至其无Ca2+值的0.66±0.03,而Rb+内流的这一比例为0.77±0.03(P<0.001),表明这种效应相对于Rb+对Na+具有相对选择性。然而,这种效应并非Ca2+所特有,因为其他二价阳离子也抑制脱氧诱导的Na+和K+通量。在这些实验条件下,未发现K+通道激活的证据,表明在脱氧的SS RBC中测得的K+损失是由脱氧诱导的途径介导的。这些研究表明,在存在Ca2+o的情况下,脱氧诱导的Na+内流和K+外流是不平衡的。因此,该途径可介导阳离子损失,并直接导致SS RBC中的细胞脱水。

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