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Local Membrane Deformations Activate Ca2+-Dependent K+ and Anionic Currents in Intact Human Red Blood Cells

机译:局部膜变形激活完整的人类红细胞中依赖Ca2 +的K +和阴离子电流

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摘要

BackgroundThe mechanical, rheological and shape properties of red blood cells are determined by their cortical cytoskeleton, evolutionarily optimized to provide the dynamic deformability required for flow through capillaries much narrower than the cell's diameter. The shear stress induced by such flow, as well as the local membrane deformations generated in certain pathological conditions, such as sickle cell anemia, have been shown to increase membrane permeability, based largely on experimentation with red cell suspensions. We attempted here the first measurements of membrane currents activated by a local and controlled membrane deformation in single red blood cells under on-cell patch clamp to define the nature of the stretch-activated currents.
机译:背景技术红血球的机械,流变和形状特性由其皮层细胞骨架决定,经过进化优化以提供流过比细胞直径窄得多的毛细管所需的动态可变形性。这种流动引起的剪切应力,以及在某些病理条件下产生的局部膜变形(例如镰状细胞性贫血)已显示出增加膜的通透性,这主要是基于对红细胞悬液的实验。我们在这里尝试了在膜片钳下通过单个红细胞中局部和受控膜变形激活的膜电流的首次测量,以定义拉伸激活电流的性质。

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