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首页> 外文期刊>Theriogenology >Beta-cypermethrin impairs reproductive function in male mice by inducing oxidative stress
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Beta-cypermethrin impairs reproductive function in male mice by inducing oxidative stress

机译:β-氯氰菊酯通过诱导氧化应激损害雄性小鼠的生殖功能

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摘要

Cypermethrin (CYP), an insecticide, has deleterious effects on male reproductive function. The objective was to identify whether the effects of beta-CYP on male reproductive organs were associated with oxidative stress. Three doses of beta-CYP (1, 10, and 20mg/kg) were administered to male mice for 35 d, with or without vitamin E (20mg/kg). The moderate (10mg/kg) and high (20mg/kg) doses of beta-CYP not only decreased body weight and the weight of the testes, epididymides, seminal vesicles, and prostate (P<0.05) but also reduced serum testosterone concentration and the expression of steroidogenic acute regulatory protein (P<0.05), in addition to damaging the seminiferous tubules and sperm development. Furthermore, moderate and high doses of beta-CYP administration decreased sperm number, sperm motility, and intact acrosome rate (P<0.05). Based on ultrastructural analyses, high doses of beta-CYP produced swelling and degeneration of mitochondria and the smooth endoplasmic reticulum of Leydig cells and caused the formation of concentric circles. These toxic effects of beta-CYP may be mediated by increasing oxidative stress, as the moderate and high doses of this compound increased malondialdehyde and nitric oxide in testes (P<0.05); reduced the activity of catalase, glutathione peroxidase (GSH-Px), and superoxide dismutase (P<0.05); and activated ERK1/2 (P<0.05). Vitamin E reversed the effects of beta-CYP on testosterone production and testis damage (P<0.05 vs. the high-dose group). Therefore, we inferred that beta-CYP damaged the structure of testes and decreased sperm output by inducing oxidative stress.
机译:氯氰菊酯(CYP)是一种杀虫剂,对男性生殖功能具有有害作用。目的是确定β-CYP对男性生殖器官的影响是否与氧化应激有关。在有或没有维生素E(20mg / kg)的情况下,对雄性小鼠给药三剂beta-CYP(1、10和20mg / kg)35 d。中剂量(10mg / kg)和高剂量(20mg / kg)的β-CYP不仅降低了体重和睾丸,附睾,精囊和前列腺的重量(P <0.05),而且降低了血清睾丸激素的浓度和除损害曲细精管和精子发育外,还表达了类固醇生成的急性调节蛋白(P <0.05)。此外,适量和高剂量的β-CYP给药可降低精子数量,精子活力和完整的顶体率(P <0.05)。根据超微结构分析,高剂量的β-CYP会导致线粒体肿胀和变性以及Leydig细胞的平滑内质网,并导致同心圆的形成。 β-CYP的这些毒性作用可能是由氧化应激的增加所介导的,因为适量和高剂量的该化合物会增加睾丸中的丙二醛和一氧化氮(P <0.05);降低过氧化氢酶,谷胱甘肽过氧化物酶(GSH-Px)和超氧化物歧化酶的活性(P <0.05);并激活ERK1 / 2(P <0.05)。维生素E逆转了β-CYP对睾丸激素产生和睾丸损伤的影响(与高剂量组相比,P <0.05)。因此,我们推断β-CYP通过诱导氧化应激而破坏了睾丸的结构并降低了精子的产量。

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