Suppr超能文献

23Na 多重量子过滤 NMR 对动物细胞中 Na+结合和动力学的特征分析:一项对比研究及 Na+/Li+竞争的影响。

23Na multiple quantum filtered NMR characterisation of Na+ binding and dynamics in animal cells: a comparative study and effect of Na+/Li + competition.

机构信息

Health Sciences Research Centre, University of Beira Interior, 6200-506 Covilhã, Portugal.

出版信息

Eur Biophys J. 2013 Jul;42(7):503-19. doi: 10.1007/s00249-013-0899-8. Epub 2013 Apr 6.

Abstract

Double quantum and triple quantum filtered (23)Na nuclear magnetic resonance techniques were used to characterise in detail the isotropic and anisotropic binding and dynamics of intra- and extracellular Na(+) in different cellular systems, in the absence and presence of Li(+). The kinetics of Li(+) influx by different cell types was evaluated. At steady state, astrocytes accumulated more Li(+) than red blood cells (RBCs), while a higher intracellular Li(+) concentration was found in chromaffin than in SH-SY5Y cells. Anisotropic and isotropic motions were detected for extracellular Na(+) in all cellular systems studied. Isotropic intracellular Na(+) motions were observed in all types of cells, while anisotropic Na(+) motions in the intracellular compartment were only detected in RBCs. (23)Na triple quantum signal efficiency for intracellular Na(+) was SH-SY5Y > chromaffin > RBCs, while the reverse order was observed for the extracellular ions. (23)Na double quantum signal efficiency for intracellular Na(+) was non-zero only in RBCs, and for extracellular Na(+) the order RBCs > chromaffin > SH-SY5Y cells was observed. Li(+) loading generally decreased intracellular Na(+) isotropic movements in the cells, except for astrocytes incubated with a low Li(+) concentration and increased anisotropic intracellular Na(+) movements in RBCs. Li(+) effects on the extracellular signals were more complex, reflecting Li(+)/Na(+) competition for isotropic and anisotropic binding sites at the extracellular surface of cell membranes and also at the surface of the gel used for cell immobilisation. These results are relevant and contribute to the interpretation of the in vivo pharmacokinetics and sites of Li(+) action.

摘要

采用双量子和三量子过滤(23)Na 核磁共振技术,详细描述了不同细胞系统中细胞内外 Na(+) 的各向同性和各向异性结合和动力学特性,以及在有无 Li(+) 存在的情况下。评估了不同细胞类型的 Li(+) 内流动力学。在稳态下,星形胶质细胞比红细胞(RBC)积累更多的 Li(+),而在嗜铬细胞瘤细胞中发现比 SH-SY5Y 细胞更高的细胞内 Li(+)浓度。在所有研究的细胞系统中都检测到了细胞外 Na(+)的各向异性和各向同性运动。在所有类型的细胞中都观察到了各向同性的细胞内 Na(+)运动,而在细胞内隔室中仅在 RBC 中检测到各向异性的 Na(+)运动。(23)Na 三量子信号效率为细胞内 Na(+)的 SH-SY5Y>嗜铬细胞瘤> RBCs,而对于细胞外离子则观察到相反的顺序。(23)Na 双量子信号效率仅在 RBC 中对于细胞内 Na(+)为非零,而对于细胞外 Na(+)观察到 RBCs>嗜铬细胞瘤>SH-SY5Y 细胞的顺序。Li(+)负载通常会降低细胞内 Na(+)的各向同性运动,除了用低浓度 Li(+)孵育的星形胶质细胞和增加 RBC 中各向异性的细胞内 Na(+)运动。Li(+)对细胞外信号的影响更加复杂,反映了 Li(+)/Na(+)竞争细胞外细胞膜表面和用于细胞固定化的凝胶表面的各向同性和各向异性结合位点。这些结果具有相关性,并有助于解释体内药代动力学和 Li(+)作用部位。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验