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容量扩张激活的外侧臂旁核传入区域和5-羟色胺机制。

Lateral parabrachial afferent areas and serotonin mechanisms activated by volume expansion.

作者信息

Margatho Lisandra Oliveira, Godino Andrea, Oliveira Fabíola Raquel Tenório, Vivas Laura, Antunes-Rodrigues José

机构信息

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

出版信息

J Neurosci Res. 2008 Dec;86(16):3613-21. doi: 10.1002/jnr.21806.

Abstract

Recent evidence has shown that the serotonergic mechanism of the lateral parabrachial nucleus (LPBN) participates in the regulation of renal and hormonal responses to isotonic blood volume expansion (BVE). We investigated the BVE-induced Fos activation along forebrain and hindbrain nuclei and particularly within the serotonergic clusters of the raphé system that directly project to the LPBN. We also examined whether there are changes in the concentration of serotonin (5HT) within the raphé nucleus in response to the same stimulus. With this purpose, we analyzed the cells doubly labeled for Fos and Fluorogold (FG) following BVE (NaCl 0.15 M, 2 ml/100 g b.w., 1 min) 7 days after FG injection into the LPBN. Compared with the control group, blood volume-expanded rats showed a significant greater number of Fos-FG double-labeled cells along the nucleus of the solitary tract, locus coeruleus, hypothalamic paraventricular nucleus, central extended amygdala complex, and dorsal raphé nucleus (DRN) cells. Our study also showed an increase in the number of serotonergic DRN neurons activated in response to isotonic BVE. We also observed decreased levels of 5HT and its metabolite 5-hydroxyindoleacetic acid (measured by high-pressure liquid chromatography) within the raphé nucleus 15 min after BVE. Given our previous evidence on the role of the serotonergic system in the LPBN after BVE, the present morphofunctional findings suggest the existence of a key pathway (DRN-LPBN) that may control BVE response through the modulation of 5HT release.

摘要

最近的证据表明,外侧臂旁核(LPBN)的5-羟色胺能机制参与了对等渗血容量扩张(BVE)的肾脏和激素反应的调节。我们研究了BVE诱导的前脑和后脑核团中的Fos激活情况,特别是在直接投射到LPBN的中缝系统的5-羟色胺能簇内。我们还研究了在相同刺激下中缝核内5-羟色胺(5HT)浓度是否有变化。为此,我们在将荧光金(FG)注入LPBN 7天后,分析了BVE(0.15 M NaCl,2 ml/100 g体重,1分钟)后Fos和荧光金(FG)双重标记的细胞。与对照组相比,血容量扩张的大鼠在孤束核、蓝斑、下丘脑室旁核、中央杏仁核复合体和中缝背核(DRN)细胞中显示出显著更多的Fos-FG双重标记细胞。我们的研究还表明,对等渗BVE作出反应而被激活的5-羟色胺能DRN神经元数量增加。我们还观察到BVE后15分钟,中缝核内5HT及其代谢产物5-羟吲哚乙酸(通过高压液相色谱法测量)水平降低。鉴于我们之前关于BVE后5-羟色胺能系统在LPBN中的作用的证据,目前的形态功能研究结果表明存在一条关键途径(DRN-LPBN),该途径可能通过调节5HT释放来控制BVE反应。

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