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新生仓鼠肺和脑中存在犬尿氨酸的证据。

Evidence for presence of kynurenine in lung and brain of neonate hamsters.

作者信息

Keith I M, Brownfield M S

出版信息

Histochemistry. 1985;83(5):465-71. doi: 10.1007/BF00509210.

Abstract

Using immunocytochemical techniques, we report here direct evidence of kynurenine (Kyn) presence and localization in the lung and brain. Kyn is a metabolite of tryptophan and 5-hydroxytryptophan, produced by indoleamine 2,3-dioxygenase (IDO). Whereas IDO has been quantitated in tissues from lung, brain, and other organs, Kyn has only been identified in brain (by HPLC), and its specific localization has not been determined. We reacted alternate serial paraffin sections with antisera raised in rabbits against a L-Kyn-albumin conjugate, and with anti-5HT (serotonin, 5-hydroxytryptamine), using the PAP method. Kyn-like immunoreactivity in the lung was specifically localized to cells of the bronchiolar epithelium resembling basal cells. Taller epithelial cells in the bronchi and dorsal trachea were likewise positive whereas neuroepithelial bodies were negative. Immunoreactivity in the brain was typically localized to cells localized in the ependyma of the walls of all ventricles, and to nerve fibers. The cellular Kyn-like reactivity was totally separate from that of anti-5HT, the latter uniquely staining argyrophil lung neuroendocrine cells and raphae neurons of the brain. Our findings suggest a route of tryptophan metabolism in the lung and brain alternate to the common pathway leading to 5-hydroxyindoleacetic acid via 5-HT. This route is of physiologic and pathologic significance as many metabolites are pharmacologically active.

摘要

利用免疫细胞化学技术,我们在此报告犬尿氨酸(Kyn)在肺和脑中存在及定位的直接证据。Kyn是色氨酸和5-羟色氨酸的代谢产物,由吲哚胺2,3-双加氧酶(IDO)产生。尽管已对肺、脑及其他器官组织中的IDO进行了定量分析,但Kyn仅在脑中被鉴定出来(通过高效液相色谱法),其具体定位尚未确定。我们采用过氧化物酶抗过氧化物酶(PAP)法,用兔抗L-Kyn-白蛋白偶联物抗血清以及抗5-羟色胺(5-HT,血清素)对交替的连续石蜡切片进行反应。肺中的Kyn样免疫反应性特异性定位于类似于基底细胞的细支气管上皮细胞。支气管和背侧气管中较高的上皮细胞同样呈阳性,而神经上皮体呈阴性。脑中的免疫反应性通常定位于所有脑室壁室管膜中的细胞以及神经纤维。细胞Kyn样反应性与抗5-HT的反应性完全分开,后者独特地染色肺嗜银神经内分泌细胞和脑的中缝神经元。我们的研究结果表明,肺和脑中色氨酸代谢途径与通过5-HT生成5-羟吲哚乙酸的常见途径不同。由于许多代谢产物具有药理活性,这条途径具有生理和病理意义。

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