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高血压而非多动大鼠星状神经节细胞肥大。

Hypertrophy of stellate ganglion cells in hypertensive, but not hyperactive, rats.

作者信息

Peruzzi D, Hendley E D, Forehand C J

机构信息

Department of Anatomy and Neurobiology, University of Vermont, Burlington 05405.

出版信息

Am J Physiol. 1991 Oct;261(4 Pt 2):R979-84. doi: 10.1152/ajpregu.1991.261.4.R979.

Abstract

The dendritic complexity of peripheral autonomic neurons is positively matched with the size of the target they innervate, apparently by trophic interactions with the target (D. Purves, W. D. Snider, and J. T. Voyvodic. Nature Lond. 336: 123-128, 1988). We have asked whether the vascular hypertrophy associated with hypertension is accompanied by dendritic hypertrophy of sympathetic ganglion cells. To do this, we examined the morphology of stellate ganglion cells in the spontaneously hypertensive rat (SHR), its normotensive control Wistar-Kyoto rat (WKY), and two new strains derived from the SHR that independently express the hypertensive phenotype of the SHR (WKHT) and the behavioral hyperactivity present in the SHR (WKHA). Cells were examined by intracellular staining with horseradish peroxidase in in vitro preparations of the ganglia. Carotid arterial wall size was also examined. Significant hypertrophy of both the carotid arterial wall and stellate ganglion cell dendrites was observed in the two hypertensive strains (SHR and WKHT) but not in either of the normotensive strains (WKY and WKHA). This increased total dendritic length of stellate ganglion cells associated with hypertension provides a greater target area for preganglionic innervation that may result in hyperinnervation of these cells.

摘要

外周自主神经元的树突复杂性与其所支配靶标的大小呈正相关,显然是通过与靶标的营养相互作用实现的(D. 珀维斯、W. D. 斯奈德和J. T. 沃伊沃迪奇。《自然》伦敦 336: 123 - 128, 1988)。我们研究了与高血压相关的血管肥大是否伴有交感神经节细胞的树突肥大。为此,我们检查了自发性高血压大鼠(SHR)、其正常血压对照Wistar - Kyoto大鼠(WKY)以及从SHR衍生出的两个新品系的星状神经节细胞形态,这两个新品系分别独立表达SHR的高血压表型(WKHT)和SHR中存在的行为多动(WKHA)。在神经节的体外制备物中,通过辣根过氧化物酶进行细胞内染色来检查细胞。还检查了颈动脉壁的大小。在两个高血压品系(SHR和WKHT)中观察到颈动脉壁和星状神经节细胞树突均有显著肥大,但在两个正常血压品系(WKY和WKHA)中均未观察到。与高血压相关的星状神经节细胞总树突长度增加,为节前神经支配提供了更大的靶区,这可能导致这些细胞的过度神经支配。

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