The study investigated the effects of Heracleum persicum L. extract (HPE) on oxidative damage caused by mercuric chloride (HgClâ) in rat testes. Sixty male Wistar rats were divided into six groups: a sham group, a HgClâ group, three groups receiving HgClâ with HPE at doses of 250, 500, and 750Â mg/kg, and a control group treated with 750Â mg/kg HPE alone over 50Â days. HgClâ was administered intraperitoneally for the first 10Â days, followed by HPE gavage for 40Â days. On day 51, hormone levels (testosterone, FSH, LH), nitric oxide levels, antioxidant enzyme activity, and pro-inflammatory cytokines were measured. Testicular tissue was analyzed for thiobarbituric acid reactive substances, ferric reducing capacity, thiol levels, and stereological indicators of seminiferous tubules. The study also examined the p53/Cas-3/Bax/Bcl-2 apoptotic pathway. LC-ESI/MS and SEM-EDS analysis detected 25 substances and 14 mineral elements. HgClâ exposure significantly reduced LH, T, and FSH levels, while HPE improved these hormones, especially at higher doses. Inflammatory cytokines were elevated due to HgClâ, but HPE reduced (Pâ<â0.05) these levels and enhanced (Pâ<â0.05) antioxidant enzyme activity, indicating protective effects against oxidative stress. Testicular analysis showed significant (Pâ<â0.05) damage from HgClâ, but HPE preserved tissue integrity and improved parameters. Weight measurements indicated that HgClâ reduced (Pâ<â0.05) body and reproductive weights, while HPE restored these weights. HPE also counteracted apoptotic changes, highlighting its potential as a therapeutic agent against HgClâ-induced damage.
Exploring the protective role of Heracleum persicum L. extract in testicular toxicity induced by mercuric chloride: insights into hormonal modulation and cell survival pathways.
探索波斯独活提取物在氯化汞引起的睾丸毒性中的保护作用:对激素调节和细胞存活途径的深入了解
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作者:Zhao Ronghui, Xu Shijuan, Jia Chao, Zhu Shufang, Ma Lianshun, Chen Yalan, Chen Dalei
| 期刊: | Toxicology Research | 影响因子: | 2.100 |
| 时间: | 2025 | 起止号: | 2025 Feb 3; 14(1):tfaf015 |
| doi: | 10.1093/toxres/tfaf015 | 研究方向: | 细胞生物学 |
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