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Calcium and potassium currents in ventricular myocytes isolated from diabetic rats.

机译:糖尿病大鼠心室肌细胞中的钙和钾电流。

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摘要

1. The whole-cell voltage-clamp technique was applied to ventricular myocytes isolated from normal and streptozotocin-induced diabetic rat hearts to investigate the contribution of the calcium current and of the calcium-independent potassium currents to diabetes-induced alterations of the action potential. 2. In single calcium-tolerant isolated myocytes diabetes induced a lengthening of the action potential similar to that previously described in intact ventricular muscles. 3. Only L-type calcium current was present both in normal and diabetic cells. Inactivation of ICa was described in both preparations by two exponentials, whose time constants were not modified by diabetes. 4. Calcium current density-voltage relationships and steady-state inactivation curves were not significantly affected by diabetes. 5. Potassium background inward rectifier current was not modified by diabetes. 6. Calcium-independent outward potassium current inactivated, in both cell types, according to a biexponential process whose time constants were not affected by diabetes. 7. The transient outward potassium current density was significantly reduced by diabetes whereas neither the voltage dependence of the inactivation nor the time dependence of recovery from inactivation was modified. 8. A 4-aminopyridine-insensitive potassium current was also reduced by diabetes. 9. Our results show that in isolated ventricular myocytes the lengthening of the action potential induced by diabetes results mainly from a decrease of the transmembrane calcium-independent potassium permeability.
机译:1.将全细胞电压钳技术应用于从正常和链脲佐菌素诱导的糖尿病大鼠心脏分离的心室肌细胞,以研究钙电流和非钙依赖性钾电流对糖尿病诱导的动作电位改变的影响。 2.在单个耐钙的分离的心肌细胞中,糖尿病引起的动作电位延长,类似于先前在完整的心室肌肉中所述的动作电位。 3.在正常细胞和糖尿病细胞中仅存在L型钙电流。两种制剂均通过两种指数描述了ICa的失活,其时间常数并未因糖尿病而改变。 4.钙电流密度-电压关系和稳态失活曲线未受到糖尿病的明显影响。 5.钾没有改变本底钾向内整流电流。 6.根据双指数过程,在两种细胞类型中,钙独立的向外钾电流均失活,其时间常数不受糖尿病的影响。 7.糖尿病显着降低了瞬时向外钾电流密度,而失活的电压依赖性和失活恢复的时间依赖性均未改变。 8.糖尿病还降低了对4-氨基吡啶不敏感的钾电流。 9.我们的研究结果表明,在孤立的心室肌细胞中,糖尿病引起的动作电位的延长主要是由于跨膜钙依赖性钾的渗透性降低。

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