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肝脏类固醇代谢的中枢控制:离散性下丘脑损伤的影响

Central control of hepatic steroid metabolism: effect of discrete hypothalamic lesions.

作者信息

Gustafsson J A, Eneroth P, Hökfelt T, Skett P

出版信息

Endocrinology. 1978 Jul;103(1):141-51. doi: 10.1210/endo-103-1-141.

Abstract

The effects of various hypothalamic lesions on hepatic steroid metabolism in adult rats were investigated. It was found that frontal deafferentation at the retrochiasmatic and suprachiasmatic level resulted in a complete "feminization" of hepatic steroid metabolism in male rats. Such an effect was also seen when lesions involving mainly the anterior periventricular hypothalamic area and the suprachiasmatic nucleus were performed in male rats. Midline lesions, anterior to the suprachiasmatic nucleus, on the other hand, did not result in any significant effects. A moderate degree of "feminization" was obtained after bilateral lesions involving mainly the nucleus interstitialis striae terminalis but including also parts of the anterior commissure. Small lesions in the lateral preoptic area were, however, without effect. No effects were seen of analogous lesions in female rats in any of the cases studied. The present findings suggest that a region including the anterior hypothalamic periventricular area, the suprachiasmatic nucleus and adjacent areas is involved in the control of hepatic steroid metabolism. It is postulated that the neuronal cell bodies that produce a factor with an inhibitory effect on the secretion of "feminizing factor" have their origins in this area of the hypothalamus, or, alternatively, may send axons through this area to the basal hypothalamus and thus directly or indirectly influence the anterior pituitary gland.

摘要

研究了成年大鼠各种下丘脑损伤对肝脏类固醇代谢的影响。发现视交叉后和视交叉上水平的额叶去传入导致雄性大鼠肝脏类固醇代谢完全“雌性化”。当在雄性大鼠中进行主要累及室周下丘脑前部区域和视交叉上核的损伤时,也观察到了这种效应。另一方面,视交叉上核前方的中线损伤未产生任何显著影响。主要累及终纹床核间质核但也包括前连合部分的双侧损伤后,获得了中等程度的“雌性化”。然而,视前外侧区的小损伤没有效果。在所研究的任何情况下,雌性大鼠的类似损伤均未产生影响。目前的研究结果表明,包括下丘脑室周前部区域、视交叉上核和相邻区域在内的一个区域参与了肝脏类固醇代谢的控制。据推测,产生对“雌性化因子”分泌有抑制作用的因子的神经元细胞体起源于下丘脑的这一区域,或者,它们可能通过这一区域向基底下丘脑发送轴突,从而直接或间接影响垂体前叶。

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