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中缝大核5-羟色胺能细胞功能亚类的生理和解剖学证据。

Physiological and anatomic evidence for functional subclasses of serotonergic raphe magnus cells.

作者信息

Gao K, Mason P

机构信息

Department of Neurobiology, Pharmacology & Physiology and the Committee on Neurobiology, University of Chicago, MC 0926, Chicago, Illinois 60637, USA.

出版信息

J Comp Neurol. 2001 Oct 29;439(4):426-39. doi: 10.1002/cne.1360.

Abstract

Serotonergic cells in the medullary nucleus raphe magnus (RM) and adjacent nucleus reticularis magnocellularis (NRMC) project to the spinal cord where they are likely to modulate nociceptive transmission. Previous studies have suggested that these cells are physiologically and anatomically heterogeneous. In the present investigation, we examined whether subclasses of serotonergic RM and NRMC cells can be delineated based on their response to a visceral stimulus, and whether any such subclasses are morphologically distinct. Most RM and NRMC serotonergic cells tested (81 of 116) responded to retraction of the descending aorta into a polyethylene tube (the snare stimulus) with 57% of all cells tested excited and 13% inhibited. Responses of serotonergic cells to the snare outlasted the stimulus, were not reflective of evoked cardiovascular changes, and were observed in sino-aortic deafferented rats, evidence that the snare stimulus does not influence serotonergic cell discharge through activation of baroreceptors. Because serotonergic cells responsive to the snare were also responsive to mechanical brushing within the retroperitoneum, the snare is likely to change serotonergic cell discharge by means of the activation of mechanosensitive visceral afferents. Intracellular labeling of physiologically characterized serotonergic RM and NRMC cells showed that cells that were responsive to the snare stimulus had simpler axonal collateralization patterns than cells that were unresponsive to the snare stimulus. This association between morphological and physiological properties provides additional evidence that subpopulations of serotonergic cells exist and serve varied physiological functions.

摘要

延髓中缝大核(RM)和相邻的巨细胞网状核(NRMC)中的5-羟色胺能细胞投射至脊髓,它们可能在脊髓调节伤害性感受的传递。以往的研究表明,这些细胞在生理和解剖学上具有异质性。在本研究中,我们检测了是否可根据5-羟色胺能RM和NRMC细胞对内脏刺激的反应来划分亚类,以及是否存在形态学上不同的亚类。大多数被检测的RM和NRMC 5-羟色胺能细胞(116个中的81个)对将降主动脉回拉至聚乙烯管内的操作(圈套刺激)有反应,所有被检测细胞中有57%被兴奋,13%被抑制。5-羟色胺能细胞对圈套刺激的反应持续时间超过刺激时间,与诱发的心血管变化无关,且在去窦主动脉传入神经的大鼠中也可观察到,这表明圈套刺激并非通过激活压力感受器来影响5-羟色胺能细胞的放电。由于对圈套刺激有反应的5-羟色胺能细胞对腹膜后机械刷擦也有反应,所以圈套刺激可能通过激活机械敏感的内脏传入神经来改变5-羟色胺能细胞的放电。对生理特性明确的RM和NRMC 5-羟色胺能细胞进行细胞内标记显示,对圈套刺激有反应的细胞轴突侧支化模式比无反应的细胞更简单。形态学和生理学特性之间的这种关联提供了额外的证据,表明存在5-羟色胺能细胞亚群并发挥不同的生理功能。

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