Bjelic Maja M, Stojkov Natasa J, Baburski Aleksandar Z, Sokanovic Srdjan J, Mihajlovic Aleksandar I, Janjic Marija M, Kostic Tatjana S, Andric Silvana A
Reproductive Endocrinology and Signaling Group, Department of Biology and Ecology, Faculty of Sciences, University of Novi Sad, Novi Sad, Serbia.
Reproductive Endocrinology and Signaling Group, Department of Biology and Ecology, Faculty of Sciences, University of Novi Sad, Novi Sad, Serbia.
Mol Cell Endocrinol. 2014 Oct;396(1-2):10-25. doi: 10.1016/j.mce.2014.08.007. Epub 2014 Aug 19.
This study systematically evaluates the effects of androgen receptor (AR) blockade on molecular events in Leydig cells. Results showed that intramuscular administration of testosterone-enanthate, at clinically relevant dose, decreased testosterone in interstitial fluid and Leydig cells from adult rats. AR-blocker (Androcur) prevented this effect and testosterone-reduced Leydig cells steroidogenic capacity/activity. Testosterone-reduced expression of some steroidogenic enzymes/proteins (Tspo,StAR,Hsd3b1/2) and transcription factors (Nur77,Gata4,Dax1) was completely abrogated, while decreased expression of Star,Cyp11a1,Cyp17a1,Hsd17b4,Creb1a was partially prevented. In the same cells, increased expression of Hsd3b5/HSD3B and Ar/AR was abolished. Androcur-treatment abolished testosterone-reduced cAMP, coupled with a changed expressional milieu of cAMP signaling elements. Results from in vitro experiments suggest that some of these effects are testosterone-AR dependent, while others could be due to disturbed LH and/or other signals. Presented data provide new molecular insight into Leydig cells function and are important in terms of human reproductive health and the wide-spread use of Androcur as well as use/abuse of testosterone-enanthate.
本研究系统评估了雄激素受体(AR)阻断对睾丸间质细胞分子事件的影响。结果显示,以临床相关剂量肌肉注射庚酸睾酮可降低成年大鼠间质液和睾丸间质细胞中的睾酮水平。AR阻滞剂(安雄)可预防此效应,并阻止睾酮降低睾丸间质细胞的类固醇生成能力/活性。睾酮降低的一些类固醇生成酶/蛋白(Tspo、StAR、Hsd3b1/2)和转录因子(Nur77、Gata4、Dax1)的表达被完全消除,而Star、Cyp11a1、Cyp17a1、Hsd17b4、Creb1a表达的降低则被部分阻止。在相同细胞中,Hsd3b5/HSD3B和Ar/AR表达的增加也被消除。安雄治疗消除了睾酮降低的cAMP,并伴有cAMP信号元件表达环境的改变。体外实验结果表明,其中一些效应依赖于睾酮-AR,而其他效应可能是由于LH和/或其他信号紊乱所致。所呈现的数据为睾丸间质细胞功能提供了新的分子见解,对于人类生殖健康以及安雄的广泛使用和庚酸睾酮的使用/滥用而言具有重要意义。