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大鼠垂体前叶细胞中电压门控钙电流的机械敏感性

Mechanosensitivity of voltage-gated calcium currents in rat anterior pituitary cells.

作者信息

Ben-Tabou S, Keller E, Nussinovitch I

机构信息

Department of Anatomy and Embryology, Hebrew University, Hadassah Medical School, Jerusalem, Israel.

出版信息

J Physiol. 1994 Apr 1;476(1):29-39.

Abstract

Sensitivity of voltage-activated calcium currents to flow-induced mechanical stress was examined in enriched populations of rat anterior pituitary somatotrophs. Voltage-activated calcium currents were recorded with the whole-cell configuration of the patch-clamp technique. Pituitary cells were exposed to flow (from pipettes) which was produced by a hydrostatic pressure of about 3 cmH2O. In 92% of the cells studied (n = 87 cells) flow reduced the amplitude of both low voltage-activated (LVA) and high voltage-activated (HVA) calcium currents. These effects of flow on calcium currents did not result from changes in either seal resistance or leak conductance of the cell and were dependent on the magnitude of flow. The effect of flow is selective. We found that LVA calcium currents were substantially more sensitive to flow than HVA calcium currents. Under constant flow conditions, LVA calcium currents were reduced by 57.6 +/- 29.6% (S.D.), whereas HVA currents (recorded from the same cells) were reduced by only 17.8 +/- 15.9% (S.D.). The effects of flow on calcium currents were associated with effects on their related calcium tail currents. Slowly deactivating calcium tail currents were reduced by 75.3 +/- 25.6% (S.D.), whereas rapidly deactivating calcium tail currents were reduced by 29.1 +/- 14.4% (S.D.). The effect of flow on calcium currents was not associated with any significant shift in the activation curves of the calcium currents (voltage range -60 to +30 mV), suggesting that the effect of flow is not voltage dependent. The effect of flow is not dependent on activation of calcium currents during the exposure to flow. Calcium currents which were evoked immediately after cessation of the exposure to flow were reduced in amplitude and recovered to control values. Possible mechanisms underlying the flow effect and possible physiological relevance of the effect on pituitary cells are discussed.

摘要

在富集的大鼠垂体前叶生长激素细胞群体中,研究了电压门控钙电流对流动诱导机械应力的敏感性。采用膜片钳技术的全细胞模式记录电压门控钙电流。垂体细胞暴露于由约3 cmH₂O静水压力产生的流动(来自移液管)中。在所研究的92%的细胞(n = 87个细胞)中,流动降低了低电压激活(LVA)和高电压激活(HVA)钙电流的幅度。流动对钙电流的这些影响并非由细胞的封接电阻或漏电导的变化引起,而是取决于流动的大小。流动的影响具有选择性。我们发现LVA钙电流对流动的敏感性明显高于HVA钙电流。在恒定流动条件下,LVA钙电流降低了57.6±29.6%(标准差),而HVA电流(从同一细胞记录)仅降低了17.8±15.9%(标准差)。流动对钙电流的影响与其相关的钙尾电流的影响相关。缓慢失活的钙尾电流降低了75.3±25.6%(标准差),而快速失活的钙尾电流降低了29.1±14.4%(标准差)。流动对钙电流的影响与钙电流激活曲线(电压范围-60至+30 mV)的任何显著偏移无关,表明流动的影响不依赖于电压。流动的影响不依赖于在流动暴露期间钙电流的激活。在停止流动暴露后立即诱发的钙电流幅度降低,并恢复到对照值。讨论了流动效应的潜在机制以及该效应在垂体细胞上可能的生理相关性。

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