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人红细胞和灌注大鼠心脏对铯离子的摄取:一项铯 - 133核磁共振研究

Uptake of cesium ions by human erythrocytes and perfused rat heart: a cesium-133 NMR study.

作者信息

Davis D G, Murphy E, London R E

机构信息

Laboratory of Molecular Biophysics, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709.

出版信息

Biochemistry. 1988 May 17;27(10):3547-51. doi: 10.1021/bi00410a003.

Abstract

Cesium-133 NMR studies have been carried out on suspended human erythrocytes and on perfused rat hearts in media containing CsCl. The resulting spectra exhibit two sharp resonances, arising from intra- and extracellular Cs+, separated in chemical shift by 1.0-1.4 ppm. Thus, intra- and extracellular resonances are easily resolved without the addition of paramagnetic shift reagents required to resolve resonances of the other alkali metal ions. Spin-lattice relaxation times in all cases are monoexponential and significantly shorter (3-4 times) for the intracellular component. When corrections are made for the pulse repetition rate, the total intensity of the intracellular and extracellular Cs+ resonances in erythrocytes is conserved, implying total observability of the intracellular pool. The uptake of Cs+ by erythrocytes occurs at approximately one-third the reported rate for K+ and was reduced by a factor of 2 upon addition of ouabain to the sample. These results indicate that 133Cs NMR is a promising tool for studying the distribution and transport of cesium ions in biological systems and, in some cases such as uptake by cellular Na,K-ATPase, for analysis of K+ ion metabolism.

摘要

已在含有CsCl的介质中对悬浮的人体红细胞和灌注的大鼠心脏进行了铯 - 133核磁共振研究。所得光谱显示出两个尖锐的共振峰,分别来自细胞内和细胞外的Cs⁺,化学位移相差1.0 - 1.4 ppm。因此,无需添加用于分辨其他碱金属离子共振的顺磁位移试剂,细胞内和细胞外的共振峰就能轻松分辨。在所有情况下,自旋 - 晶格弛豫时间均为单指数形式,且细胞内成分的弛豫时间明显更短(3 - 4倍)。当对脉冲重复率进行校正时,红细胞中细胞内和细胞外Cs⁺共振的总强度保持不变,这意味着细胞内池的可观测性是完整的。红细胞对Cs⁺的摄取速率约为报道的K⁺摄取速率的三分之一,并且在向样品中添加哇巴因后摄取速率降低了2倍。这些结果表明,¹³³Cs核磁共振是研究铯离子在生物系统中的分布和运输的一种有前景的工具,并且在某些情况下,如通过细胞钠钾ATP酶的摄取,可用于分析K⁺离子代谢。

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