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单个兔心脏浦肯野细胞在大的[Ca2+]i瞬变期间[Ca2+]i激活的Cl-电流的两个成分。

Two components of [Ca2+]i-activated Cl- current during large [Ca2+]i transients in single rabbit heart Purkinje cells.

作者信息

Papp Z, Sipido K R, Callewaert G, Carmeliet E

机构信息

Laboratory of Physiology, Katholieke Universiteit Leuven, Belgium.

出版信息

J Physiol. 1995 Mar 1;483 ( Pt 2)(Pt 2):319-30. doi: 10.1113/jphysiol.1995.sp020588.

Abstract
  1. Single Purkinje cells, enzymatically isolated from rabbit ventricle, were studied under whole-cell voltage clamp conditions and internally perfused with the fluorescent Ca2+ indicator fura-2(100 microM). 2. Ca2+ release from the sarcoplasmic reticulum was either induced by external application of caffeine or occurred spontaneously in Ca2+i-overloaded cells. Membrane currents accompanying these Ca(2+)-release signals were studied at steady membrane potentials. 3. [Ca2+]i transients were accompanied by transient membrane currents. In the absence of Na(+)-Ca2+ exchange, two current components could be observed. The first component peaked well before the [Ca2+]i transient (Ifast) and relaxed before peak [Ca2+]i. The second component, on the other hand, peaked at the time when [Ca2+]i was maximal (Islow). 4. In symmetrical Cl- solutions both current components had a reversal potential close to O mV. A reduction of external or internal [Cl-] shifted this reversal potential in accordance with the change of the Cl- equilibrium potential. 5. Each [Ca2+]i transient was accompanied by Ifast. Properties of Ifast suggest that this current component is the [Ca2+]i-dependent Cl- current, ICl(Ca), previously observed during depolarizing pulses. 6. Islow was only detected in cells that displayed a large [Ca2+]i transient with or without elevated resting [Ca2+]i. 7. It is concluded that during large [Ca2+]i transients a slow component of ICl(Ca) can be activated. This second component may arise from the same channel population as the previously described fast component and be related to the presence of spatial and temporal inhomogeneities of [Ca2+]i. Alternatively, this current component may arise from a different Cl- channel population with a different Ca2+ sensitivity.
摘要
  1. 从兔心室酶解分离出的单个浦肯野细胞,在全细胞电压钳制条件下进行研究,并向细胞内灌注荧光Ca2+指示剂fura-2(100微摩尔)。2. 肌浆网的Ca2+释放可通过外部施加咖啡因诱导,或在Ca2+超载的细胞中自发发生。在稳定的膜电位下研究伴随这些Ca(2+)释放信号的膜电流。3. [Ca2+]i瞬变伴随着瞬态膜电流。在没有Na(+)-Ca2+交换的情况下,可以观察到两个电流成分。第一个成分在[Ca2+]i瞬变之前达到峰值(Ifast),并在[Ca2+]i峰值之前松弛。另一方面,第二个成分在[Ca2+]i最大时达到峰值(Islow)。4. 在对称的Cl-溶液中,两个电流成分的反转电位都接近0 mV。外部或内部[Cl-]的降低会根据Cl-平衡电位的变化使这个反转电位发生偏移。5. 每个[Ca2+]i瞬变都伴随着Ifast。Ifast的特性表明,这个电流成分是先前在去极化脉冲期间观察到的[Ca2+]i依赖性Cl-电流ICl(Ca)。6. Islow仅在显示出大的[Ca2+]i瞬变的细胞中检测到,无论静息[Ca2+]i是否升高。7. 得出的结论是,在大的[Ca2+]i瞬变期间,ICl(Ca)的一个慢成分可以被激活。这个第二个成分可能与先前描述的快成分来自相同的通道群体,并且与[Ca2+]i的空间和时间不均匀性的存在有关。或者,这个电流成分可能来自具有不同Ca2+敏感性的不同Cl-通道群体。

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