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培养的柠檬酸负载豚鼠心室肌细胞中横管减少所诱导的空间不均匀Ca2+信号。

Spatially non-uniform Ca2+ signals induced by the reduction of transverse tubules in citrate-loaded guinea-pig ventricular myocytes in culture.

作者信息

Lipp P, Hüser J, Pott L, Niggli E

机构信息

Department of Physiology, University of Bern, Switzerland.

出版信息

J Physiol. 1996 Dec 15;497 ( Pt 3)(Pt 3):589-97. doi: 10.1113/jphysiol.1996.sp021792.

Abstract
  1. Ratiometric confocal microscopy and the whole-cell patch clamp technique were used to simultaneously record intracellular Ca2+ transients and membrane currents from guinea-pig ventricular myocytes. Intracellular dialysis with the low-affinity Ca2+ buffer citrate enabled us to record and analyse Ca2+ transients caused by Ca2+ influx alone and by additional Ca2+ release from the sarcoplasmic reticulum (SR) in the same cell. 2. In freshly isolated adult myocytes (used within 1-4 h of isolation) both types of Ca2+ transients ('Ca2+ entry' and 'Ca2+ release' transients) were spatially uniform regardless of the Ca2+ current (ICa) duration. In contrast, Ca2+ transients in short-term cultured (1-2 days) myocytes exhibited marked spatial inhomogeneities. ICa frequently evoked Ca2+ waves that propagated from either or both ends of the cardiac myocyte. Reduction of the ICa duration caused Ca2+ release that was restricted to one of the two halves of the cell. 3. Analysis of the Ca2+ entry signals in freshly isolated and short-term cultured myocytes indicated that the spatial properties of the Ca2+ influx signal were responsible for the spatial properties of the triggered Ca2+ release from the SR. In freshly isolated ventricular myocytes Ca2+ influx was homogeneous while in short-term cultured cells pronounced Ca2+ gradients could be found during Ca2+ influx. Spatial non-uniformities in the amplitude of local Ca2+ entry transients were likely to cause subcellularly restricted Ca2+ release. 4. The changes in the spatial properties of depolarization-induced Cai2+ signals during short-term culture were paralleled by a decrease (to 65%) in the total cell capacitance. In addition, staining the sarcolemma with the membrane-selective dye Di-8-ANEPPS revealed that, in cultured myocytes, t-tubular membrane connected functionally to the surface membrane was reduced or absent. 5. These results demonstrate that the short-term culture of adult ventricular myocytes results in the concomitant loss of functionally connected t-tubular membrane. The lack of the t-tubular system subsequently caused spatially non-uniform SR Ca2+ release. Evidence is presented to show that in ventricular myocytes lacking t-tubules non-uniform SR Ca2+ release was, most probably, the result of inhomogeneous Ca2+ entry during ICa. These findings directly demonstrate the functional importance of the t-tubular network for uniform ventricular Ca2+ signalling.
摘要
  1. 采用比率共聚焦显微镜和全细胞膜片钳技术同时记录豚鼠心室肌细胞的细胞内Ca2+瞬变和膜电流。用低亲和力Ca2+缓冲剂柠檬酸盐进行细胞内透析,使我们能够在同一细胞中记录和分析仅由Ca2+内流以及由肌浆网(SR)额外释放Ca2+所引起的Ca2+瞬变。2. 在新鲜分离的成年心肌细胞(分离后1 - 4小时内使用)中,无论Ca2+电流(ICa)持续时间如何,两种类型的Ca2+瞬变(“Ca2+内流”和“Ca2+释放”瞬变)在空间上都是均匀的。相比之下,短期培养(1 - 2天)的心肌细胞中的Ca2+瞬变表现出明显的空间不均匀性。ICa经常诱发从心肌细胞的一端或两端传播的Ca2+波。ICa持续时间的缩短导致Ca2+释放局限于细胞的两半之一。3. 对新鲜分离和短期培养的心肌细胞中Ca2+内流信号的分析表明,Ca2+内流信号的空间特性决定了从SR触发的Ca2+释放的空间特性。在新鲜分离的心室肌细胞中,Ca2+内流是均匀的,而在短期培养的细胞中,Ca2+内流期间可发现明显的Ca2+梯度。局部Ca2+内流瞬变幅度的空间不均匀性可能导致亚细胞水平上局限的Ca2+释放。4. 短期培养过程中去极化诱导的细胞内Ca2+信号空间特性的变化与总细胞电容降低(至65%)相平行。此外,用膜选择性染料Di - 8 - ANEPPS对肌膜进行染色显示,在培养的心肌细胞中,与表面膜功能连接的横管膜减少或缺失。5. 这些结果表明,成年心室肌细胞的短期培养导致功能连接的横管膜同时丧失。横管系统的缺失随后导致SR Ca2+释放的空间不均匀性。有证据表明,在缺乏横管的心室肌细胞中,SR Ca2+释放不均匀很可能是ICa期间Ca2+内流不均匀的结果。这些发现直接证明了横管网络对心室Ca2+信号均匀性的功能重要性。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fef/1160957/4305fac97626/jphysiol00387-0017-a.jpg

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