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双氢睾酮和雌激素对性二态性大鼠脊髓核运动神经元形态发育的不同影响。

Differential effects of dihydrotestosterone and estrogen on the development of motoneuron morphology in a sexually dimorphic rat spinal nucleus.

作者信息

Goldstein L A, Sengelaub D R

机构信息

Department of Neurology, VA Medical Center, Lexington, Kentucky 40511.

出版信息

J Neurobiol. 1994 Jul;25(7):878-92. doi: 10.1002/neu.480250711.

DOI:10.1002/neu.480250711
PMID:8089663
Abstract

The rat lumbar spinal cord contains a sexually dimorphic motor nucleus, the spinal nucleus of the bulbocavernosus (SNB), whose motoneurons innervate perineal muscles involved in copulatory reflexes. Dendritic development of SNB motoneurons is biphasic and androgen dependent. During the first 4 postnatal weeks, SNB dendrites grow exuberantly, and subsequently retract to mature lengths by 7 weeks of age. After early postnatal castration, SNB dendrites fail to grow, and testosterone replacement restores this growth. In other systems, testosterone and its metabolites, dihydrotestosterone and estrogen, are important for somatic and neural sexual differentiation. The purpose of the present study was to examine the effects of castration and dihydrotestosterone or estrogen replacement on the growth of SNB motoneuron somata and dendritic arbors. Male rat pups were castrated on postnatal (P) day 7 and treated daily with either dihydrotestosterone propionate (DHTP; 2 mg) or estradiol benzoate (EB; 100 micrograms) until P28 or P49. By using cholera toxin horseradish peroxidase (BHRP) histochemistry, the soma size, dendritic length, dendritic extent, and arbor area of BHRP-labeled SNB motoneurons were measured and analyzed. Both DHTP and EB treatment supported the initial exuberant growth of SNB dendrites through P28, but EB treatment was ineffective in maintaining mature, adult lengths at P49. The possible sites of hormone action and functional implications of these hormonal treatments are discussed.

摘要

大鼠腰段脊髓包含一个具有性别二态性的运动核团,即球海绵体肌脊髓核(SNB),其运动神经元支配参与交配反射的会阴肌。SNB运动神经元的树突发育呈双相性且依赖雄激素。在出生后的前4周,SNB树突大量生长,随后在7周龄时回缩至成熟长度。出生后早期去势后,SNB树突无法生长,而睾酮替代可恢复这种生长。在其他系统中,睾酮及其代谢产物双氢睾酮和雌激素对躯体和神经的性别分化很重要。本研究的目的是研究去势以及双氢睾酮或雌激素替代对SNB运动神经元胞体和树突分支生长的影响。雄性幼鼠在出生后(P)第7天去势,并每天用丙酸双氢睾酮(DHTP;2mg)或苯甲酸雌二醇(EB;100微克)处理,直至P28或P49。通过使用霍乱毒素辣根过氧化物酶(BHRP)组织化学方法,测量并分析了BHRP标记的SNB运动神经元的胞体大小、树突长度、树突范围和分支面积。DHTP和EB处理均支持SNB树突在P28之前的初始旺盛生长,但EB处理在维持P49时的成熟成年长度方面无效。本文讨论了激素作用的可能位点以及这些激素处理的功能意义。

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