Research Institute of Family Planning of Hebei Province, Key Laboratory for Family Planning and Birth Health of the National Health and Family Planning Committee, Shijiazhuang 050071, China.
College of Life Science, Hebei Normal University, Shijiazhuang 050024, China.
Gen Comp Endocrinol. 2019 Dec 1;284:113268. doi: 10.1016/j.ygcen.2019.113268. Epub 2019 Sep 3.
CPFX is a highly effective antibiotic, but it has been reported to significantly impair both testicular function and structure in rats. In this study, we assessed reversal of CPFX-induced variation in mice testicular structure and testosterone synthesis by probiotic microbes in the infected model and normal model. We detected testicular weight, testicular structure and Leydig cell variables in numbers. We detected the levels of serum testosterone and steroidogenic enzymes, as well as DBC1, Sirt1, NF-κB, and related redox state and inflammatory response in the testes. The results showed that probiotic microbes had significantly elevated serum testosterone levels and steroidogenic enzymes, higher Sirt1, anti-oxidative enzymes and anti-inflammatory cytokine expression, and lower NF-κB, DBC1, oxidative damage, pro-inflammatory cytokine expression. The results suggest that the testis-protective, antiinflammatory and antioxidation effects of probiotics largely resulted from its ability to decrease oxidative stress and preserve antioxidant activity by stabilizing antioxidant defense systems, reducing oxidative damage and inflammatory response.
CPFX 是一种高效抗生素,但据报道,它会显著损害大鼠的睾丸功能和结构。在这项研究中,我们评估了益生菌微生物对感染模型和正常模型中 CPFX 诱导的睾丸结构和睾酮合成变化的逆转作用。我们检测了睾丸重量、睾丸结构和 Leydig 细胞数量的变化。我们检测了血清睾酮和类固醇生成酶的水平,以及睾丸中的 DBC1、Sirt1、NF-κB 及相关氧化还原状态和炎症反应。结果表明,益生菌微生物显著提高了血清睾酮水平和类固醇生成酶,提高了 Sirt1、抗氧化酶和抗炎细胞因子的表达,降低了 NF-κB、DBC1、氧化损伤、促炎细胞因子的表达。结果表明,益生菌的睾丸保护、抗炎和抗氧化作用主要归因于其通过稳定抗氧化防御系统、减少氧化损伤和炎症反应来降低氧化应激和保持抗氧化活性的能力。