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Protective effects of tripterygium glycoside-loaded solid lipid nanoparticles on male reproductive toxicity in rats.

机译:雷公藤多甙苷固体脂质纳米粒对大鼠雄性生殖毒性的保护作用。

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The protective effects of tripterygium glycoside-loaded solid lipid nanoparticles (TG-SLNs) on male reproductive toxicity were investigated in rats. Thirty-six male Sprague-Dawley rats were randomly divided into three groups of 12: control group, tripterygium glycoside (TG) group, and TG-SLN group. After the animals had been orally administered with the substances for 28 consecutive days, their sperm count and sperm motility, organ coefficients, serum testosterone levels, testicular ultrastructure, and reproductive ability were observed. The results showed that the sperm motility rate in the TG group was only 3%, whereas the rates in the TG-SLN and control groups were 33% and 71%, respectively. Compared with those in the control group, the motion counts of path velocity, track speed, progressive velocity, straightness, linearity, beat cross frequency, amplitude of lateral head displacement, and sperm concentrations in the TG-SLN group were not significantly different while those in the TG group significantly decreased (p < 0.01). TG-SLNs did not cause testicular atrophy and instead maintained normal serum testosterone levels. The effect of TG-SLNs on the testicular ultrastructure was very evident; the morphologies of Sertoli, spermatogonial, mitochondrial, and sperm cells were normal. In terms of reproductive ability, one rat (17%) from the TG-SLN group and five rats (83%) from the control group became pregnant, whereas none of the rats from the TG group became pregnant. These data indicate that TG-SLNs have potentially protective effects on male reproductive toxicity in rats.
机译:在大鼠中研究了雷公藤多甙糖脂固体脂质纳米粒(TG-SLNs)对雄性生殖毒性的保护作用。将36只雄性Sprague-Dawley大鼠随机分为三组,每组12只:对照组,雷公藤多甙(TG)组和TG-SLN组。连续28天给动物口服该物质后,观察其精子数量和精子活力,器官系数,血清睾丸激素水平,睾丸超微结构和生殖能力。结果显示,TG组的精子运动率仅为3%,而TG-SLN组和对照组的精子运动率分别为33%和71%。与对照组相比,TG-SLN组的运动速度,轨迹速度,渐进速度,直线度,直线度,拍打交叉频率,头部横向位移幅度和精子浓度的运动计数无显着差异,而TG组的患者明显减少(p <0.01)。 TG-SLNs不会引起睾丸萎缩,而是保持正常的血清睾丸激素水平。 TG-SLNs对睾丸超微结构的影响非常明显。 Sertoli,精原细胞,线粒体和精子细胞的形态正常。就生殖能力而言,TG-SLN组的一只大鼠(17%)和对照组的五只大鼠(83%)怀孕,而TG组的大鼠均未怀孕。这些数据表明TG-SLNs对大鼠雄性生殖毒性具有潜在的保护作用。

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