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良性前列腺增生上皮细胞和基质原代培养中的睾酮代谢

Testosterone metabolism in primary cultures of epithelial cells and stroma from benign prostatic hyperplasia.

作者信息

Tsugaya M, Habib F K, Chisholm G D, Ross M, Tozawa K, Hayashi Y, Kohri K, Tanaka S

机构信息

Department of Urology, Toyokawa City Hospital, Aichi, Japan.

出版信息

Urol Res. 1996;24(5):265-71. doi: 10.1007/BF00304775.

Abstract

We studied the metabolism of testosterone in primary cultures of prostate epithelial cells and fibroblasts obtained from patients with benign prostatic hyperplasia (BPH). The conversion of 3H-testosterone in both cell cultures was predominantly to the oxidative pathway, with the formation of 3H-androstenedione increasing with cell number and time of incubation. Although we also detected some 5 alpha-reductase activity in these cells, the activity in the stroma component (0.00688 pmol/mg protein/min) was nonetheless insignificant when compared to the 5 alpha-reductase activity in the tissue of origin (0.0616 pmol/mg protein/min) and well below the 17 beta-hydroxysteroid dehydrogenase activity of the same cells (0.0518 pmol/mg protein/min). The aromatase activity in our cells was also measured by two separate techniques, but neither the deuterium procedure nor the production of oestrone from androgen precursors yielded any positive results, suggesting that under these experimental conditions there was no aromatase activity within the cells. The shift from the reductive to the oxidative pathways in these primary cell cultures was reminiscent of the androgen-metabolizing enzyme profiles seen in poorly differentiated prostate cancer. Whether this transition is an obligatory step in the development of hormone refractiveness remains to be elucidated.

摘要

我们研究了从良性前列腺增生(BPH)患者获取的前列腺上皮细胞和成纤维细胞原代培养物中睾酮的代谢情况。在两种细胞培养物中,3H-睾酮的转化主要通过氧化途径,随着细胞数量和孵育时间的增加,3H-雄烯二酮的形成也增多。虽然我们在这些细胞中也检测到了一些5α-还原酶活性,但与起源组织中的5α-还原酶活性(0.0616 pmol/mg蛋白/分钟)相比,基质成分中的活性(0.00688 pmol/mg蛋白/分钟)微不足道,且远低于相同细胞的17β-羟基类固醇脱氢酶活性(0.0518 pmol/mg蛋白/分钟)。我们还通过两种不同的技术测量了细胞中的芳香化酶活性,但无论是氘程序还是从雄激素前体生成雌酮的过程都没有产生任何阳性结果,这表明在这些实验条件下细胞内不存在芳香化酶活性。这些原代细胞培养物中从还原途径到氧化途径的转变让人联想到在低分化前列腺癌中看到的雄激素代谢酶谱。这种转变是否是激素抵抗性发展中的一个必要步骤仍有待阐明。

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