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系统血清素通过对背内侧下丘脑的 GABA 输入抑制棕色脂肪组织交感神经活动,而不是通过中缝苍白核 5HT 受体的激活。

Systemic serotonin inhibits brown adipose tissue sympathetic nerve activity via a GABA input to the dorsomedial hypothalamus, not via 5HT receptor activation in raphe pallidus.

机构信息

Department of Neurological Surgery, Oregon Health and Science University, Portland, OR, USA.

Department of Physiology, School of Medicine of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil.

出版信息

Acta Physiol (Oxf). 2020 Mar;228(3):e13401. doi: 10.1111/apha.13401. Epub 2019 Nov 1.

Abstract

AIM

Serotonin (5-hydroxytryptamine, 5-HT), an important neurotransmitter and hormone, modulates many physiological functions including body temperature. We investigated neural mechanisms involved in the inhibition of brown adipose tissue (BAT) sympathetic nerve activity (SNA) and BAT thermogenesis evoked by 5-HT.

METHODS

Electrophysiological recordings, intravenous (iv) injections and nanoinjections in the brains of anaesthetized rats.

RESULTS

Cooling-evoked increases in BAT SNA were inhibited by the intra-rostral raphé pallidus (rRPa) and the iv administration of the 5-HT receptor agonist, 8-OH-DPAT or 5-HT. The intra-rRPa 5-HT, the intra-rRPa and the iv 8-OH-DPAT, but not the iv 5-HT-induced inhibition of BAT SNA were prevented by nanoinjection of a 5-HT receptor antagonist in the rRPa. The increase in BAT SNA evoked by nanoinjection of NMDA in the rRPa was not inhibited by iv 5-HT, indicating that iv 5-HT does not inhibit BAT SNA by acting in the rRPa or in the sympathetic pathway distal to the rRPa. In contrast, under a warm condition, blockade of 5HT receptors in the rRPa increased BAT SNA and BAT thermogenesis, suggesting that endogenous 5-HT in the rRPa contributes to the suppression of BAT SNA and BAT thermogenesis. The increases in BAT SNA and BAT thermogenesis evoked by nanoinjection of NMDA in the dorsomedial hypothalamus (DMH) were inhibited by iv 5-HT, but those following bicuculline nanoinjection in the DMH were not inhibited.

CONCLUSIONS

The systemic 5-HT-induced inhibition of BAT SNA requires a GABAergic inhibition of BAT sympathoexcitatory neurones in the DMH. In addition, during warming, 5-HT released endogenously in rRPa inhibits BAT SNA.

摘要

目的

血清素(5-羟色胺,5-HT)作为一种重要的神经递质和激素,调节包括体温在内的许多生理功能。我们研究了 5-HT 抑制棕色脂肪组织(BAT)交感神经活动(SNA)和 BAT 产热的神经机制。

方法

麻醉大鼠脑内电生理记录、静脉(iv)注射和纳米注射。

结果

冷刺激引起的 BAT SNA 增加被前中缝苍白核(rRPa)抑制,iv 给予 5-HT 受体激动剂 8-OH-DPAT 或 5-HT 也可抑制 BAT SNA。rRPa 内注射 5-HT、rRPa 内和 iv 注射 8-OH-DPAT 引起的 BAT SNA 抑制可被 rRPa 内注射 5-HT 受体拮抗剂阻断,但 iv 注射 5-HT 引起的抑制不能被阻断。rRPa 内注射 NMDA 引起的 BAT SNA 增加不受 iv 5-HT 抑制,表明 iv 5-HT 不是通过作用于 rRPa 或 rRPa 以外的交感神经通路来抑制 BAT SNA。相反,在温暖条件下,rRPa 内 5-HT 受体阻断增加 BAT SNA 和 BAT 产热,表明 rRPa 内的内源性 5-HT 有助于抑制 BAT SNA 和 BAT 产热。rRPa 内注射 NMDA 引起的 BAT SNA 和 BAT 产热增加被 iv 5-HT 抑制,但 DMH 内注射 Bicuculline 引起的增加不受抑制。

结论

全身 5-HT 诱导的 BAT SNA 抑制需要 DMH 中 GABA 能抑制 BAT 交感兴奋神经元。此外,在升温过程中,rRPa 内释放的内源性 5-HT 抑制 BAT SNA。

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