首页> 外文期刊>Journal of the autonomic nervous system >Morphology of aortic depressor nerve myelinated fibers in normotensive Wistar-Kyoto and spontaneously hypertensive rats.
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Morphology of aortic depressor nerve myelinated fibers in normotensive Wistar-Kyoto and spontaneously hypertensive rats.

机译:血压正常的Wistar-Kyoto和自发性高血压大鼠的主动脉降压神经有髓纤维的形态。

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Reports on the morphology of the baroreceptor terminal of spontaneously hypertensive rats (SHR) did not demonstrate any difference when compared to the axonal terminal of normotensive rats. Although several studies reporting baroreceptor terminal and blood vessel wall morphology have been carried out to better understand the baroreceptor function and resetting to hypertensive levels, there are no reports examining the morphology of the fibers of the aortic depressor nerve (ADN) in hypertensive models. Therefore, the objective of the present study was to investigate the morphological aspects of SHR ADN compared to Wistar-Kyoto (WKY) rats. Before the morphologic study, the nerves were isolated and the pressure-nerve activity curve was determined for each ADN. SHR exhibited an increase in the threshold pressure for baroreceptor activation, a rightward shift in the pressure-nerve activity curve with decreases in slope and maximum activity. Semithin (0.3 to 0.5 microm thick) sections of the proximal (close to the nodose ganglion) and distal (close to the aortic arch) segments of the ADN were analyzed by light microscopy. A morphometric study of the nerve fascicles and myelinated fibers was performed. Comparison between proximal and distal segments of the two strains revealed that the ADN of WKY rats were consistently larger. All morphometric parameters studied in myelinated fibers and their respective axons were smaller in SHR. The area of the myelin sheath was comparatively larger in WKY rats. These data show morphologic differences between the ADN of SHR and WKY rats, which may explain, at least in part, the decreased slope and maximum activity of the pressure-nerve activity curve observed with the baroreceptor resetting in SHR.
机译:自发性高血压大鼠(SHR)的压力感受器末梢的形态学报告与正常血压大鼠的轴突末梢相比没有任何差异。尽管已经进行了几项报告压力感受器末端和血管壁形态的研究,以更好地理解压力感受器的功能并将其重置为高血压水平,但尚无关于在高血压模型中检查主动脉降压神经(ADN)纤维形态的报道。因此,本研究的目的是研究SHR ADN与Wistar-Kyoto(WKY)大鼠相比的形态方面。在进行形态学研究之前,先分离神经并确定每个ADN的压力神经活动曲线。 SHR表现出压力感受器激活的阈值压力增加,压力神经活动曲线向右移动,斜率和最大活动减少。通过光学显微镜分析ADN的近端(靠近结节神经节)和远端(靠近主动脉弓)部分的半薄(0.3至0.5微米厚)部分。进行了神经束和有髓纤维的形态学研究。两种菌株近端和远端段之间的比较显示,WKY大鼠的ADN始终较大。在SHR中,在有髓纤维及其轴突中研究的所有形态参数均较小。 WKY大鼠的髓鞘面积相对较大。这些数据显示了SHR和WKY大鼠的ADN之间的形态学差异,这至少可以部分解释在SHR中通过压力感受器复位观察到的压力神经活动曲线的斜率降低和最大活动。

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