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大鼠棕色脂肪组织中膜电位变化及代谢的α和β肾上腺素能介导作用。

Alpha and beta-adrenergic mediation of membrane potential changes and metabolism in rat brown adipose tissue.

作者信息

Girardier L, Schneider-Picard G

出版信息

J Physiol. 1983 Feb;335:629-41. doi: 10.1113/jphysiol.1983.sp014555.

Abstract

Membrane potential and flavoprotein redox state have been measured simultaneously and continuously in brown adipose tissue in order to determine how nerve stimulation and adrenergic agonists control its metabolic activity. Both trains of nerve impulses and addition of noradrenaline evoke two temporally distinct cell depolarizations. The first rapid depolarization precedes the increase in flavoprotein reduction. With nerve stimulation, at the time of maximum flavoprotein reduction the cell has repolarized or hyperpolarized. The second slow depolarization follows flavoprotein reduction. Phentolamine, an alpha antagonist, selectively blocks the first depolarization, but not the flavoprotein reduction. However the time of maximum flavoprotein reduction is delayed. Propranolol, a beta antagonist, delays the first repolarization until the end of nerve stimulation and inhibits the transient hyperpolarization, second depolarization and flavoprotein reduction. Isoproterenol, a beta agonist, or the fatty acid octanoate produce only a transient hyperpolarization and subsequent slow depolarization following flavoprotein reduction. Thus brown adipose tissue contains both alpha- and beta-adrenergic receptors. Stimulation of alpha receptors produces an early membrane depolarization. Stimulation of beta receptors leads to an increase in metabolic activity which then appears to produce slow changes in membrane potential.

摘要

为了确定神经刺激和肾上腺素能激动剂如何控制棕色脂肪组织的代谢活性,已在棕色脂肪组织中同时且连续地测量了膜电位和黄素蛋白氧化还原状态。神经冲动序列和去甲肾上腺素的添加都会引起两个在时间上不同的细胞去极化。第一个快速去极化先于黄素蛋白还原增加。在神经刺激时,当黄素蛋白还原达到最大值时,细胞已经复极化或超极化。第二个缓慢去极化跟随黄素蛋白还原。酚妥拉明,一种α拮抗剂,选择性地阻断第一个去极化,但不阻断黄素蛋白还原。然而,黄素蛋白还原达到最大值的时间延迟了。普萘洛尔,一种β拮抗剂,将第一个复极化延迟到神经刺激结束,并抑制短暂的超极化、第二个去极化和黄素蛋白还原。异丙肾上腺素,一种β激动剂,或脂肪酸辛酸仅产生短暂的超极化以及黄素蛋白还原后的随后缓慢去极化。因此,棕色脂肪组织同时含有α和β肾上腺素能受体。刺激α受体会产生早期膜去极化。刺激β受体导致代谢活性增加,然后这似乎会引起膜电位的缓慢变化。

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