Testosterone metabolism in primary cultures of human prostate epithelial cells and fibroblasts

被引:47
作者
Delos, S
Carsol, JL
Ghazarossian, E
Raynaud, JP
Martin, PM
机构
[1] CHU,SERV UROL,F-13916 MARSEILLE 20,FRANCE
[2] ARIBIO,F-75016 PARIS,FRANCE
关键词
D O I
10.1016/0960-0760(95)00184-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We compare testosterone (T) metabolism in primary cultures of epithelial cells and fibroblasts separated from benign prostate hypertrophy (BPH) and prostate cancer tissues. In all cultures, androstenedione (Delta 4) formed by oxidation of T by 17 beta-hydroxysteroid dehydrogenase (17 beta-HSD) represented 80% of the metabolites recovered. The amounts of 5 alpha-dihydrotestosterone (DHT), formed by reduction of T by 5 alpha-reductase (5 alpha-R), were small: 5 and 2% (BPH) and 8 and 15% (adenocarcinoma) for epithelial cells and fibroblasts, respectively. Northern blot analysis of total RNA from epithelial cells (BPH or adenocarcinoma) attributed the reductive activity to the Sd-reductase type 1 isozyme and oxidative activity to the 17 beta-HSD type 2. In cancer fibroblasts, only little 17 beta-HSD type 2 mRNA was detected. The Sa-reductase inhibitors, 4-MA (17 beta-(N,N-diethyl)carbamoyl-4-methyl-4-aza-5 alpha-androstan-3-one) and finasteride, inhibited DHT formation with a preferential action of 4-MA on epithelial cells (BPH or adenocarcinoma) and of finasteride on fibroblasts from adenocarcinoma. Neither inhibitor acted on Delta 4 formation. On the other hand, the lipido-sterol extract of Serenoa repens (LSESr, Permixon(R)) inhibited the formation of all the T metabolites studied [IC(50)s = 40 and 200 mu g/ml (BPH) and 90 and 70 mu g/ml (adenocarcinoma) in epithelial cells and fibroblasts, respectively]. These results have important therapeutic implications when selecting appropriate treatment options for BPH.
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页码:375 / 383
页数:9
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