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Substance P enhances the proliferation of rat anterior pituitary cells in vitro

机译:P物质在体外增强大鼠垂体前叶细胞的增殖

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摘要

Laboratory of Neuroendocrinology, Department of Physiology, The 4th Military Medical University, Xi'an 710032, China The undecapeptide substance P(SP) was shown to be intimately involved in both the structural and functional aspects of the anterior pituitary. Yet, in addition to its influences on hormonal secretion, SP may well possess more actions in this master gland. The present study was ftherefore aimed to investigate the effect of SP on the proliferation of rat anterior pituitary cells in primary culture. It was found that SP could dose-dependently increase the incorporation of tritiated thymidine (~3H-TdR) into cultured anterior pituitary cells. Other mammalian tachykinins such as neurokinin A and neurokinin B had similar effect but to varying degrees. The equipotent analogue of SP, Norleucine11 -SP(Nle~(11)-SP), also acted likewise, with its action antagonizable by spantide, a SP receptor blocker. To further characterize the nature of cells responsive to the challenge of SP, immunocytochemical staining against S-100 protein and some adenohypophyseal hormones was performed alone or plus autoradiography. The results showed that the percentage of S-100 protein-immunoreactive cells was apparently elevated by the ad-dtion of Nle~(11)-SP for 48 h, which indicates a preferential proliferation of folliculo-stellate cells under the regime. This was confirmed by increases in immunocytochemical or autoradiographical labelling indices of anterior pituitary cells treated similarly. Taken together, these results reveal that the trophic action of SP observed previously in other tissues is also present at least in cultured rat anterior pituitary cells, with responding cells being predominantly folliculo-stellate cells as typified by S-100 protein-immunoreactivity. Therefore, an intra-pituitary trophic action of SP in vivo could be anticipated.
机译:第四军医大学生理学系神经内分泌实验室,西安710032十一肽P(SP)与垂体前叶的结构和功能密切相关。然而,除了对荷尔蒙分泌的影响外,SP在这个主腺中可能还具有更多的作用。因此,本研究旨在研究SP对原代培养中大鼠垂体前叶细胞增殖的影响。发现SP可以剂量依赖性地增加tri化胸苷(〜3H-TdR)向培养的垂体前叶细胞的掺入。其他哺乳动物速激肽如神经激肽A和神经激肽B具有相似的作用,但程度不同。 SP的等价类似物Norleucine11 -SP(Nle〜(11)-SP)也具有相同的作用,其作用被SP受体阻滞剂spantide拮抗。为了进一步表征对SP攻击作出反应的细胞的性质,单独或结合放射自显影对S-100蛋白和一些腺垂体激素进行了免疫细胞化学染色。结果表明,添加Nle〜(11)-SP 48 h可明显提高S-100蛋白免疫反应细胞的百分率,表明卵泡星状细胞在该条件下优先增殖。相似处理的垂体前叶细胞的免疫细胞化学或放射自显影标记指数增加证实了这一点。综上所述,这些结果表明,至少在培养的大鼠垂体前叶细胞中也存在先前在其他组织中观察到的SP的营养作用,其中应答细胞主要是卵泡星状细胞,以S-100蛋白免疫反应性为代表。因此,可以预期体内SP的垂体内营养作用。

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