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Underlying mechanisms of symmetric calcium wave propagation in rat ventricular myocytes.

机译:钙离子在大鼠心室肌细胞中传播的潜在机制。

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摘要

Calcium waves in heart cells are mediated by diffusion-coupled calcium-induced calcium release. The waves propagate in circular fashion. This is counterintuitive in view of the accepted ultrastructure of the cardiac myocyte. The density of calcium release sites in the transverse direction is four times higher than in the longitudinal direction. Simulations with release sites localized along Z-lines and isotropic diffusion yielded highly elliptical, nonphysiological waves. We hypothesized that subcellular organelles counteracted the higher release site density along the Z-lines by acting as transverse diffusion barriers and sites of active calcium uptake. We quantified the reduction of transverse diffusion by microinjecting cells with the nonreactive dye fluorescein. The ratio of the radial diffusion coefficient to the longitudinal coefficient was 0.39. Inhibition of mitochondrial uptake by rotenone accelerated the wave in the transverse direction. Simulations with release sites clustered at the Z-lines and a transverse diffusion coefficient 50% of the longitudinal coefficient generated waves of ellipticity 2/1 (major axis along the Z-line). Introducing additional release sites between the Z-lines at a density 20% of that on the Z-lines produced circular waves. The experiments and simulations support the presence of transverse diffusion barriers, additional uptake sites, and possibly intermediate release sites as well.
机译:心脏细胞中的钙波由扩散耦合的钙诱导的钙释放介导。波以圆形方式传播。考虑到心肌细胞的超微结构,这是违反直觉的。钙释放部位在横向上的密度是纵向上的四倍。沿Z线定位的释放点和各向同性扩散的模拟产生高度椭圆的非生理波。我们假设亚细胞细胞器通过充当横向扩散屏障和活性钙吸收位点抵消了沿Z线的较高释放位点密度。我们通过用非反应性染料荧光素显微注射细胞来定量减少横向扩散。径向扩散系数与纵向系数之比为0.39。鱼藤酮抑制线粒体吸收,加速了横向波的传播。用释放点聚集在Z线并且横向扩散系数为纵向系数的50%进行的模拟生成椭圆率2/1(沿Z线的长轴)的波。在Z线之间引入密度为Z线密度20%的其他释放位点会产生圆波。实验和模拟支持横向扩散屏障,其他吸收位点以及可能的中间释放位点的存在。

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