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首页> 外文期刊>Investigational new drugs. >Effects of dutasteride on the expression of genes related to androgen metabolism and related pathway in human prostate cancer cell lines.
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Effects of dutasteride on the expression of genes related to androgen metabolism and related pathway in human prostate cancer cell lines.

机译:度他雄胺对人前列腺癌细胞系雄激素代谢相关基因表达及相关途径的影响。

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摘要

Androgens play an important role in controlling the growth of the normal prostate gland and in the pathogenesis of benign prostate hyperplasia, and prostate cancer. Although testosterone is the main androgen secreted from the testes, dihydrotestosterone (DHT), a more potent androgen converted from testosterone by 5alpha-reductase isozymes, type I and II, is the major androgen in the prostate cells. The aim of this study is to investigate the cellular and molecular effects of dutasteride, a potent inhibitor of 5alpha-reductase type I and type II, in androgen-responsive (LNCaP) and androgen-unresponsive (DU145) human prostate cancer(PCa) cell lines. The expression pattern of 190 genes, selected on the basis of their proved or potential role in prostate cancerogenesis related to androgen signalling, were analysed using a low density home-made oligoarray (AndroChip 2). Our results show that dutasteride reduces cell viability and cell proliferation in both cell lines tested. AndroChip 2 gene signature identified in LNCaP a total of 11 genes differentially expressed (FC >or= +/-1.5). Eight of these genes, were overexpressed and three were underexpressed. Overexpressed genes included genes encoding for proteins involved in biosynthesis and metabolism of androgen (HSD17B1;HSD17B3;CYP11B2), androgen receptor and androgen receptor co-regulators (AR;CCND1), and signal transduction(ERBB2; V-CAM; SOS1) whereas, underexpressed genes (KLK3; KLK2; DHCR24) were androgen-regulated genes (ARGs). No differentially expressed genes were scored in DU145. Microarray data were confirmed by quantitative real-time PCR assay (QRT-PCR). These data offer a selective genomic signature for dutasteride treatment in prostate epithelial cells and provide important insights in prostate cancer pathophysiology.
机译:雄激素在控制正常前列腺的生长以及良性前列腺增生和前列腺癌的发病机理中起重要作用。尽管睾丸激素是睾丸分泌的主要雄激素,但双氢睾丸激素(DHT)是前列腺细胞中的主要雄激素,它是通过5α-还原酶同工酶I和II型从睾丸激素转化而来的更有效的雄激素。这项研究的目的是研究dutasteride(一种有效的I型和II型5alpha还原酶抑制剂)在雄激素反应性(LNCaP)和雄激素反应性(DU145)人前列腺癌(PCa)细胞中的细胞和分子作用线。使用低密度自制寡核苷酸阵列(AndroChip 2)分析了190个基因的表达模式,根据其在与雄激素信号转导相关的前列腺癌发生中的已证明或潜在作用进行选择。我们的结果表明,度他雄胺会降低两种测试细胞系的细胞活力和细胞增殖。在LNCaP中鉴定出的AndroChip 2基因标记共有11个差异表达的基因(FC>或= +/- 1.5)。这些基因中有8个过表达,而3个则表达不足。过表达的基因包括编码与雄激素的生物合成和代谢有关的蛋白质的基因(HSD17B1,HSD17B3,CYP11B2),雄激素受体和雄激素受体协同调节剂(AR; CCND1)和信号转导(ERBB2; V-CAM; SOS1)表达不足的基因(KLK3; KLK2; DHCR24)是雄激素调节基因(ARGs)。 DU145中没有评分差异表达的基因。通过定量实时PCR测定法(QRT-PCR)证实了微阵列数据。这些数据为在前列腺上皮细胞中度他雄胺治疗提供了选择性的基因组特征,并为前列腺癌的病理生理学提供了重要的见识。

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