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Secretagogue effect of barium on output of melanocyte-stimulating hormone from pars intermedia of the mouse pituitary.

机译:钡的促分泌作用对小鼠垂体中间层黑色素细胞刺激激素的输出。

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摘要

Ba ions caused an intense and prolonged discharge of melanocyte-stimulating hormone (MSH) from perifused neurointermediate lobes of mouse pituitaries and dispersed pars intermedia cells. The effect persisted in chronically cultured lobes or cells. It did not require Ca, but, like the Ca-dependent response to excess K, was blocked by cyanide combined with glucose lack. The secretagogue effect of Ba was blocked or prevented by Co or by excess Ca, both of which can reduce inward Ba currents through Ca channels. Prior exposure to excess K partially reduced the secretagogue effect of Ba, suggesting that depolarization caused some inactivation of Ba current. In contrast to Ba, excess K elicited secretion that was transient, and prior exposure of preparations to excess K (in the absence of Ca) profoundly suppressed the secretagogue effect of Ca. The evidence is consistent with the view that inward Ca current rapidly inactivates in these cells. It is concluded that Ba ions have a potent and persistent direct secretagogue effect on the melanotrophs that may reflect, in part, their ability to penetrate Ca channels more easily than Ca ions. The strong secretagogue effects of Ba on melanotrophs may be of considerable utility in studies on MSH secretion since a physiological secretagogue has yet to be discovered. Moreover, since the responses of melanotrophs (and other endocrine cells) to Ba can be distinguished from those of various other secretory cells and neurones, it is suggested that Ba may provide a tool for characterizing the distinctive membrane properties of the Ba-responsive endocrine cells.
机译:钡离子导致小鼠垂体周围融合的神经中间叶和分散的pars中间细胞强烈而长时间地释放黑色素细胞刺激激素(MSH)。这种作用在长期培养的叶或细胞中持续存在。它不需要钙,但是,就像钙依赖于对过量钾的反应一样,它被氰化物和葡萄糖缺乏所阻断。 Ba的促分泌作用被Co或过量的Ca所阻止或阻止,二者均可减少通过Ca通道的内向Ba电流。事先暴露于过量的K中会部分降低Ba的促分泌作用,这表明去极化导致Ba电流有些失活。与Ba相比,过量的K引起的分泌是短暂的,并且将制剂预先暴露于过量的K(在没有Ca的情况下)会极大地抑制Ca的促分泌作用。证据与这些细胞中内向Ca电流迅速失活的观点一致。结论是,Ba离子对黑素生物具有强而持久的直接促分泌作用,这可能部分反映其比Ca离子更容易穿透Ca通道的能力。由于尚未发现生理促分泌剂,所以Ba对黑素营养素的强促分泌作用可能在MSH分泌研究中具有相当大的实用性。此外,由于可以区分黑素细胞(和其他内分泌细胞)对Ba的反应与其他各种分泌细胞和神经元的反应,因此建议Ba可以提供表征Ba反应性内分泌细胞独特膜特性的工具。 。

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