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Voltage-gated sodium and calcium currents in rat osteoblasts.

机译:大鼠成骨细胞中电压门控的钠和钙电流。

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摘要

1. The whole-cell voltage-clamp mode of the patch-clamp technique was used to investigate the presence of voltage-gated inward currents in osteoblasts from newborn rat calvaria. 2. In K+-free solutions, three kinds of inward currents could be activated by depolarization: a voltage-gated Na+ current and two different types of Ca2+ currents. 3. The Na+ current was activated by depolarization above -40 mV in all the cells. It was reduced by half by 10 nM-TTX (tetrodotoxin). 4. In an isotonic Ba2+ external solution containing TTX, and with a Cs-EGTA internal solution buffered at pCa 8, depolarizing jumps induced both a transient Ba2+ current and a sustained Ba2+ current. The relative proportions of these two currents varied greatly among cells. 5. The transient and sustained Ba2+ currents differ with respect to their time course and their voltage dependence. 6. The depolarization-activated inward currents were also observed under more physiological conditions, in the presence of only 2 mM-external Ca2+ and with a K+ internal solution buffered at pCa 7. 7. A few records obtained in current clamp showed that it is possible to induce action potentials in osteoblasts.
机译:1.膜片钳技术的全细胞电压钳模式用于研究新生大鼠颅骨成骨细胞中电压门控内向电流的存在。 2.在无K +的溶液中,可以通过去极化激活三种类型的内向电流:电压门控Na +电流和两种不同类型的Ca2 +电流。 3.在所有电池中,通过高于-40 mV的去极化激活Na +电流。通过10 nM-TTX(河豚毒素)将其减少一半。 4.在包含TTX的等渗Ba2 +外部溶液中,以及在pCa 8缓冲的Cs-EGTA内部溶液中,去极化跃迁既引起瞬态Ba2 +电流,又引起持续的Ba2 +电流。这两个电流的相对比例在电池之间变化很大。 5.瞬态和持续Ba2 +电流的时间过程和电压依赖性不同。 6.在更多生理条件下,仅存在2 mM外部Ca2 +且K +内部溶液缓冲在pCa 7处,也观察到了去极化激活的内向电流。7.在电流钳中获得的一些记录表明,它是可能在成骨细胞中诱导动作电位。

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