短期接触高剂量草甘膦杀草剂后,成年 Wistar 大鼠睾丸的精子发生受到破坏:组织病理学和生化变化

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-24 DOI:10.1016/j.repbio.2024.100865
Meriem Hariti , Assia Kamel , Amel Ghozlani , Nacima Djennane , Kamel Djenouhat , Kahina Aksas , Zohra Hamouli-Saïd
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引用次数: 0

摘要

草甘膦是一种内分泌干扰物,可影响某些代谢酶的活性,进而改变某些功能,如生殖功能。本研究的目的是评估草甘膦杀草剂(GBH)对精子发生的干扰,并调查短期接触 GBH 对成年 Wistar 大鼠睾丸的哪些细胞影响最大。试验组口服 GBH 稀释溶液 21 天(D1:102.5 毫克/千克;D2:200 毫克/千克;D3:400 毫克/千克)。对照组(C)以同样的方式饮水。评估了激素水平、氧化应激标记物,进行了组织学和形态计量学分析,并检测了 AR 和 p53 的表达。观察到精曲小管基底的 Sertoli 和精原细胞被侵蚀,导致精曲小管上皮脱落,管腔内细胞脱落,并伴有未成熟精子。所有治疗组的形态测量结果均有明显变化,Sertoli 细胞中的 AR 表达量也有明显下降。200毫克/千克体重/天和400毫克/千克体重/天处理组的动物体内NO水平和髓质细胞中p53的表达均有明显增加。这些数据表明,短期暴露于高剂量的 GBH 会导致某些可能干扰精子发生的参数发生紊乱。处理结果表明,GBH 对 Leydig 细胞和 Sertoli 细胞的影响方式相同,Lydig 细胞和管周肌层细胞核中的 p53 表达被激活,Sertoli 细胞中的 AR 表达减少,导致睾丸严重受损。
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Disruption of spermatogenesis in testicular adult Wistar rats after short-term exposure to high dose of glyphosate based-herbicide: Histopathological and biochemical changes

Glyphosate is an endocrine disruptor and can act on the activity of certain enzymes of metabolism subsequently altering some functions such as reproduction. The goal of the present study is to evaluate the involvement of glyphosate based-herbicide (GBH) in spermatogenesis disruption and to investigate which cells of the adult Wistar rat testis are most affected by short-term exposure to GBH. Treated groups received a diluted solution of GBH orally for 21 days (D1: 102.5 mg/Kg; D2: 200 mg/Kg; D3: 400 mg/Kg). The control group (C) received water in the same manner. Hormone levels, oxidative stress markers were evaluated, histological and morphometric analysis were performed, AR and p53 expression was conducted. Seminiferious epithelium sloughing associated to erosion of Sertoli and spermatogonia from the basement of the seminiferous tubules, with intraluminal exfoliated cells among with immature spermatids were observed. A significant change in morphometric measurement and significant decrease in AR expression in Sertoli cells were noted for all treated groups. A significant increase in NO level and p53 expression in Leydig cells were showed for animals treated with 200 and 400 mg/kg BW/day. These data demonstrate that short-term exposure to high doses of GBH has led to a disruption of certain parameters that could disturb spermatogenesis. The treatment showed that both Leydig and Sertoli cells are affected in the same manner by GBH, the activation of p53 expression in both Leydig cells and peritubular myloid cells nuclei, and the reduction in AR expression in Sertoli cells, which resulted in important testicular damage.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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