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人类泌尿生殖系统中的副神经节。

Paraganglia in the urogential tract of man.

作者信息

Hervonen A, Vaalasti A, Vaalasti T, Partanen M, Kanerva L

出版信息

Histochemistry. 1976 Sep 13;48(4):307-13. doi: 10.1007/BF00499247.

Abstract

According to the earlier concept, the paraganglia of man are believed to degenerate during the first postnatal years after their dominance during the fetal period. Clinical case reports on persisting paraganglia led us to extensive exploration of surgical material obtained from urological and gynecological surgery. The formaldehyde induced fluorescence (FIF) was used for tracing the catecholamine containing tissues. The fluorescence intensities were recorded with a Leitz MPV 2 microspectrophotometer. Solitary, small paraganglia were found in all patients studied. They were especially frequent in the walls of the urinary bladder and in the connective tissue surrounding the urogenital organs. The intensity of the fluorescence was comparable to pharmacological standard of 10(-2) M noradrenaline and at the same level as the FIF of human fetal paraganglia. All cells of the paraganglionic clusters exhibited FIF and no signs of degeneration could be observed. It is suggested that the paraganglia of man do not degenerate postnatally but persist as a remarcable catecholamine reservoir, which might be of physiological importance.

摘要

根据早期的概念,人们认为人类的副神经节在胎儿期占主导地位后,会在出生后的头几年退化。关于持续存在副神经节的临床病例报告促使我们对从泌尿外科和妇科手术中获取的手术材料进行广泛研究。使用甲醛诱导荧光(FIF)来追踪含儿茶酚胺的组织。用Leitz MPV 2显微分光光度计记录荧光强度。在所有研究的患者中都发现了孤立的小副神经节。它们在膀胱壁和泌尿生殖器官周围的结缔组织中尤为常见。荧光强度与10(-2)M去甲肾上腺素的药理学标准相当,与人胎儿副神经节的FIF处于同一水平。副神经节簇的所有细胞都表现出FIF,且未观察到退化迹象。有人提出,人类的副神经节在出生后不会退化,而是作为一个显著的儿茶酚胺储存库持续存在,这可能具有生理重要性。

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