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鸡卵巢的儿茶酚胺能神经支配。特别提及卵泡壁。

Catecholaminergic innervation of the chicken ovary. With special reference to the follicular wall.

作者信息

Unsicker K, Seidel F, Hofmann H D, Müller T H, Schmidt R, Wilson A

出版信息

Cell Tissue Res. 1983;230(2):431-50. doi: 10.1007/BF00213816.

Abstract

The innervation of the chicken ovary was investigated with special emphasis on adrenergic nerves in the follicular wall. Quantitative determinations of catecholamines (CA) by high-performance liquid chromatography and electrochemical detection (hplc-ed) revealed 15.4 +/- 3.3 ng/mg protein of norepinephrine (NE) and 3.14 ng/mg protein of epinephrine (E), with even larger amounts in the cranial part of the ovary close to the adrenal gland. Serial sections that had been processed for the visualisation of aminergic nerves (Falck-Hillarp- or glyoxylic acid techniques) showed CA localized in nerve-fibre bundles; cell bodies of chromaffin and sympathetic neurons were only found at the ovarian-adrenal junction suggesting that ovarian nerves stored considerable quantities of E. An antiserum against bovine phenylethanolamine N-methyltransferase (PNMT, the E-synthesizing enzyme) produced no immunostaining in chicken ovary or adrenal gland, due to a lack of cross-reactivity between the antiserum and chicken PNMT. Serial sections processed alternately for the visualisation of aminergic nerves and myosin (from chicken gizzard) immunoreactivity revealed a scarce nerve supply of contractile cells in the theca externa compared to an extraordinarily dense innervation of the endocrine interstitial tissue of the theca interna. This distribution pattern of nerve fibres in the follicular wall was confirmed by electron microscopy in ovarian tissue that had been pretreated with 5- or 6-hydroxydopamine (HDA). More than 90% of the terminal axons were specifically labeled by these false adrenergic transmitters. Many of these terminals were seen in close contact (20 nm) with steroidogenic cells suggesting a neuromodulatory function of CA in hormone synthesis and/or release. It is yet unclear whether E and NE are stored in separate or identical axon moieties and within the same organelles. Choline acetyltransferase activity, which was taken as a measure for a cholinergic nerve component in the ovary, amounted to only 7% of its adrenal activity. It is suggested that the chicken ovary may serve as an excellent model to investigate the modulatory role of nerves in the endocrine function of the ovary.

摘要

对鸡卵巢的神经支配进行了研究,特别关注卵泡壁中的肾上腺素能神经。通过高效液相色谱和电化学检测(hplc-ed)对儿茶酚胺(CA)进行定量测定,结果显示去甲肾上腺素(NE)含量为15.4±3.3 ng/mg蛋白质,肾上腺素(E)含量为3.14 ng/mg蛋白质,在靠近肾上腺的卵巢头部含量更高。经过处理以显示胺能神经的连续切片(Falck-Hillarp法或乙醛酸技术)显示CA定位于神经纤维束中;嗜铬细胞和交感神经元的细胞体仅在卵巢-肾上腺交界处发现,这表明卵巢神经储存了大量的E。针对牛苯乙醇胺N-甲基转移酶(PNMT,E合成酶)的抗血清在鸡卵巢或肾上腺中未产生免疫染色,因为该抗血清与鸡PNMT之间缺乏交叉反应性。交替处理以显示胺能神经和肌球蛋白(来自鸡砂囊)免疫反应性的连续切片显示,与内膜内分泌间质组织的极其密集的神经支配相比,外膜中收缩细胞的神经供应稀少。通过对用5-或6-羟基多巴胺(HDA)预处理的卵巢组织进行电子显微镜检查,证实了卵泡壁中神经纤维的这种分布模式。超过90%的终末轴突被这些假肾上腺素能递质特异性标记。许多这些终末与类固醇生成细胞紧密接触(20 nm),表明CA在激素合成和/或释放中具有神经调节功能。目前尚不清楚E和NE是储存在单独的还是相同的轴突部分以及相同的细胞器内。胆碱乙酰转移酶活性作为卵巢中胆碱能神经成分的指标,仅为其肾上腺活性的7%。有人提出,鸡卵巢可能是研究神经在卵巢内分泌功能中调节作用的极佳模型。

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