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人类骨骼肌细胞中,性激素代谢的性别二态性对不同睾酮暴露的反应。

Sexual Dimorphism in Sex Hormone Metabolism in Human Skeletal Muscle Cells in Response to Different Testosterone Exposure.

作者信息

Sgrò Paolo, Antinozzi Cristina, Wasson Christopher W, Del Galdo Francesco, Dimauro Ivan, Di Luigi Luigi

机构信息

Endocrinology Unit, Department of Movement, Human and Health Sciences, University of Rome Foro Italico, 00135 Rome, Italy.

Leeds Institute of Rheumatic and Musculoskeletal Medicine, Faculty of Medicine and Health, University of Leeds, Leeds LS7 4SA, UK.

出版信息

Biology (Basel). 2024 Oct 5;13(10):796. doi: 10.3390/biology13100796.

Abstract

Muscle tissue is an important target of sex steroids, and particularly, testosterone plays essential roles in muscle cell metabolism. Wide ranges of studies have reported sex differences in basal muscle steroidogenesis, and recently several genes have been identified to be regulated by androgen response elements that show innate sex differences in muscle. However, studies accounting for and demonstrating cell sexual dimorphism in vitro are still scarce and not well characterized. Here, we demonstrated the ability of 46XX and 46XY human primary skeletal muscle cells to differently activate steroidogenesis in vitro, likely related to sex-chromosome onset, and to differently induce hormone release after increasing doses of testosterone exposure. Cells were treated with testosterone at concentrations of 0.5, 2, 5, 10, 32, and 100 nmol/L for 24 h. Variations in 17β-HSD, 5α-R2, CYP-19 expression, DHT, estradiol, and androstenedione release, as well as IL6 and IL8 release, were analyzed, respectively, by RT-PCR, ELISA, and luminex-assay. Following testosterone treatments, and potentially at any concentration level, an increase in the expression of 17β-HSD, 5α-R2, and CYP-19 was observed in 46XY cells, accompanied by elevated levels of DHT, androstenedione, and IL6/IL8 release. Following the same treatment, 46XX cells exhibited an increase in 5α-R2 and CYP-19 expression, a conversion of androgens to estrogens, and a reduction in IL6 and IL8 release. In conclusion, this study demonstrated that sex-chromosome differences may influence in vitro muscle cell steroidogenesis and hormone homeostasis, which are pivotal for skeletal muscle metabolism.

摘要

肌肉组织是性类固醇的重要靶标,尤其是睾酮在肌肉细胞代谢中发挥着重要作用。大量研究报道了基础肌肉类固醇生成中的性别差异,最近已鉴定出几个受雄激素反应元件调控的基因,这些元件在肌肉中表现出先天性别的差异。然而,在体外解释和证明细胞性二态性的研究仍然很少,且特征不明确。在这里,我们证明了46XX和46XY人原代骨骼肌细胞在体外激活类固醇生成的能力不同,这可能与性染色体起始有关,并且在增加剂量的睾酮暴露后诱导激素释放的能力也不同。细胞用浓度为0.5、2、5、10、32和100 nmol/L的睾酮处理24小时。分别通过RT-PCR、ELISA和luminex检测分析17β-HSD、5α-R2、CYP-19表达、双氢睾酮(DHT)、雌二醇和雄烯二酮释放以及IL6和IL8释放的变化。睾酮处理后,可能在任何浓度水平下,46XY细胞中观察到17β-HSD、5α-R2和CYP-19表达增加,同时DHT、雄烯二酮和IL6/IL8释放水平升高。经过相同处理后,46XX细胞表现出5α-R2和CYP-19表达增加,雄激素向雌激素的转化,以及IL6和IL8释放减少。总之,本研究表明性染色体差异可能影响体外肌肉细胞类固醇生成和激素稳态,而这对骨骼肌代谢至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/debc/11504033/5bd3fd628cdd/biology-13-00796-g001.jpg

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