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首页> 外文期刊>Journal of biomedical nanotechnology >Nano-TiO2 Reduces Testosterone Production in Primary Cultured Leydig Cells from Rat Testis Through the Cyclic Adenosine Phosphate/Cyclic Guanosine Phosphate/Epidermal Growth Factor Receptor/Matrix Metalloproteinase Signaling Pathway
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Nano-TiO2 Reduces Testosterone Production in Primary Cultured Leydig Cells from Rat Testis Through the Cyclic Adenosine Phosphate/Cyclic Guanosine Phosphate/Epidermal Growth Factor Receptor/Matrix Metalloproteinase Signaling Pathway

机译:纳米TiO2通过环状腺苷磷酸盐/环状鸟嘌呤磷酸盐/表皮生长因子受体/基质金属蛋白信号传导途径从大鼠睾丸中从大鼠睾丸中减少睾酮产生的睾酮产生。

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Nano-titanium dioxide (nano-TiO2) has been shown to inhibit testosterone synthesis in male mice or rats; however, the mechanisms underlying these effects have yet to be elucidated. In this study, we investigated whether the inhibition of testosterone synthesis by nano-TiO2 on Leydig cells (LCs) was related to the dysfunction of the cAMP/CGMP/EGFR/MMP signaling pathway in primary cultures of LCs prepared from rat testis exposed to nano-TiO2. We found that the early apoptotic rate of LCs increased by 4.34 and 4.94 times, respectively, after exposure to 20 mu g/mL and 40 mu g/mL nano-TiO2; we also found that NO increased by 1.1 and 2.86 times, respectively. ROS increased by times of 0.71, 3.15 and 3.43; RNS increased by 0.62, 1.34 and 1.14 times; and SOD activity decreased by 18.3%, 28.16%, and 67.6%, respectively, when the concentration of nano-TiO2 was 10, 20 and 40 mu g/mL. These results indicated that nano-TiO2 treatment resulted caused damage to the LCs, including an imbalance of oxidation and antioxidation. Following nano-TiO2 treatment, the cAMP content had decreased by 48%, 48% and 47.6%; cGMP content had decreased by 18.7%, 52.2% and 56.7%; the levels of ATP in the LCs had decreased by 15.15%, 45.75% and 66.67%; the expression of HCGR protein had decreased by 26.7%, 45.07% and 74.64%; the expression of LHR protein had decreased by 18.3%, 28.16% and 67.6%; and the levels of T had decreased by 34.48%, 46.62% and 44.12%. Collectively, our results indicated that the inhibition of testosterone production by nano-TiO2 is related to the dysfunction of the cAMP/CGMP/EGFR/MMP signaling pathway.
机译:纳米二氧化钛(Nano-TiO2)已被证明能抑制雄性小鼠或大鼠的睾酮合成;然而,这些效应背后的机制尚未阐明。在本研究中,我们研究了纳米TiO2对睾丸间质细胞(LCs)睾酮合成的抑制是否与暴露于纳米TiO2的大鼠睾丸LCs原代培养物中cAMP/CGMP/EGFR/MMP信号通路的功能障碍有关。我们发现,暴露于20μg/mL和40μg/mL纳米TiO2后,LCs的早期凋亡率分别增加了4.34倍和4.94倍;我们还发现NO分别增加了1.1倍和2.86倍。活性氧分别增加0.71、3.15和3.43倍;RNS分别增加了0.62、1.34和1.14倍;当纳米TiO2浓度为10、20和40μg/mL时,SOD活性分别下降18.3%、28.16%和67.6%。这些结果表明,纳米TiO2处理导致LCs受损,包括氧化和抗氧化失衡。纳米TiO2处理后,cAMP含量分别降低了48%、48%和47.6%;cGMP含量分别下降了18.7%、52.2%和56.7%;LCs中ATP水平分别下降了15.15%、45.75%和66.67%;HCGR蛋白表达分别下降26.7%、45.07%和74.64%;LHR蛋白表达分别下降了18.3%、28.16%和67.6%;T水平分别下降了34.48%、46.62%和44.12%。总之,我们的结果表明,纳米TiO2对睾酮生成的抑制与cAMP/CGMP/EGFR/MMP信号通路的功能障碍有关。

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