首页> 美国卫生研究院文献>The Journal of Physiology >Effects of the calcium ionophore A23187 on pancreatic acinar cell membrane potentials and amylase release.
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Effects of the calcium ionophore A23187 on pancreatic acinar cell membrane potentials and amylase release.

机译:钙离子载体A23187对胰腺腺泡细胞膜电位和淀粉酶释放的影响。

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摘要

1. The effects of the Ca2+-ionophore A23187 and the non-metabolizable cholinergic agonist bethanechol on acinar cell membrane potentials and amylase release from the superfused mouse pancreas were studied. 2. In the presence of extracellular Ca2+ (2.56 mM), A23187 (10(-5)M) and bethanechol (3 X 10(-5)M) caused an equal increase in the release of amylase. Both stimulants depolarized theacinar cells, A23187 by 6-0 mV and bethanechol by 12-3 mV. 3. When Ca2+ and Mg2+ were removed from the superfusate, the ability of A23187 to increase the rate of amylase release was virtually abolished, while the effect of bethanechol remained unaltered. Similarly, in the absence of these divalent cations, A23187 did not cause depolarization of the acinar cells, while depolarization in response to bethanechol was largely normal. Consequently it is unlikely that cholinergic agonists initiate secretion by activating a Ca2+-ionophore-like mechanism in the cell membrane. 4. When the concentration of Ca2+ in the medium was raised to 10 mM was the only extracellular divalent cation present, the depolarization in response to A23187 was increased to 11-8 mV. When Mg2+ in a concentration of 10 mM was the only extracellular divalent cation, the depolarization was only 2-1 mV. 5. The Ca2+ dependent, A23187-induced depolarization was abolished in the absence of Na+ (Tris substitution). Addition of Na+ to the superfusate caused an immediate depolarization. 6. It is concluded that the Ca2+ dependent depolarization of pancreatic acinar cells induced by A23187 is not directly due to an increased divalent cation conductance. Our findings are consistent with the view that the depolarization is due to an increased influx of Na+ resulting from a Ca2+ mediated increase in Na+ permeability.
机译:1.研究了Ca2 +离子载体A23187和不可代谢的胆碱能激动剂Bethylchol对融合小鼠胰腺腺泡细胞膜电位和淀粉酶释放的影响。 2.在存在细胞外Ca2 +(2.56 mM)的情况下,A23187(10(-5)M)和苯乙二酚(3 X 10(-5)M)引起淀粉酶释放的增加。两种刺激剂都使棘突细胞去极化,A23187的极化强度为6-0 mV,而乙二酚的极化强度为12-3 mV。 3.当从超熔液中除去Ca2 +和Mg2 +时,A23187增加淀粉酶释放速率的能力实际上被消除,而苯乙二酚的作用保持不变。同样,在没有这些二价阳离子的情况下,A23187不会引起腺泡细胞的去极化,而对苯乙二酚的去极化在很大程度上是正常的。因此,胆碱能激动剂不太可能通过激活细胞膜中的Ca2 +-离子载体样机制来启动分泌。 4.当培养基中的Ca2 +浓度增加到10 mM是存在的唯一细胞外二价阳离子时,响应A23187的去极化增加到11-8 mV。当Mg2 +浓度为10 mM是唯一的细胞外二价阳离子时,去极化仅为2-1 mV。 5.在没有Na +(Tris替代)的情况下,消除了依赖Ca 2+的,A23187诱导的去极化。将Na +添加到超熔液中会立即引起去极化。 6.结论是,A23187诱导的胰腺腺泡细胞的Ca2 +依赖性去极化不是直接由于增加的二价阳离子电导引起的。我们的发现与以下观点一致:去极化是由于Ca2 +介导的Na +通透性增加导致Na +流入增加。

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