Beta(β)-sitosterol attenuates Chronic Unpredictable Stress (CUS) Induced Testicular Damage in the Experimental Rat Model.

IF 2.5 3区 医学 Q2 OBSTETRICS & GYNECOLOGY Reproductive Sciences Pub Date : 2025-04-01 Epub Date: 2025-03-05 DOI:10.1007/s43032-025-01825-7
Jiten Singh, Siddhi Srivastava, Areesh Zehra, Priyanka Prajapati, Vipul Agarwal, Anand Kumar, Vikas Mishra, Sapana Kushwaha
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Abstract

Chronic stress is a major contributor to male reproductive dysfunction leading to testicular damage and impaired spermatogenesis. This study investigates the protective effects of β-sitosterol, a phytosterol with known antioxidant properties, against CUS-induced testicular damage in rats. Male Wistar rats were divided into Control, Chronic Unpredictable Stress (CUS), and CUS + β-sitosterol. The CUS and CUS + β-sitosterol groups were exposed to random stressors for eight weeks. β-Sitosterol was administered orally at a dose of 20 mg/kg for three weeks, starting from the fifth week of CUS induction. Behavioral tests like EPMT and NSFT were conducted to confirm CUS induction, after which serum, testis, and epididymis samples were collected for analysis. β-sitosterol significantly increased testis and epididymis weight, along with sperm counts in CUS rats. Histological analysis revealed restoration of testicular cellular structure, as indicated by an improved Johnsen's index scores. Additionally, β-sitosterol restored antioxidant levels and oxidative stress parameters in testicular tissue. TEM showed germ cell integrity and restored basement membrane structure in the CUS + β-sitosterol group. In silico analysis indicated strong interactions of β-sitosterol with FNDC5, P450scc, and 3β-HSD proteins involved in steroidogenesis. Immunohistochemistry confirmed an increased expression of FNDC5 in the CUS + β-sitosterol group, β-sitosterol ameliorates CUS-induced testicular damage and improves sperm count, highlighting its potential as a dietary intervention for stress-related male infertility. Further preclinical and clinical studies are warranted to explore its therapeutic potential.

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β(β)-谷甾醇减轻实验大鼠模型中由慢性不可预知应激(CUS)引起的睾丸损伤
慢性压力是男性生殖功能障碍的主要原因,导致睾丸损伤和精子发生障碍。本研究探讨了β-谷甾醇(一种已知具有抗氧化特性的植物甾醇)对cu诱导的大鼠睾丸损伤的保护作用。雄性Wistar大鼠分为对照组、慢性不可预知应激组和慢性不可预知应激组+ β-谷甾醇组。CUS组和CUS + β-谷甾醇组随机应激8周。从CUS诱导第5周开始,以20 mg/kg的剂量口服β-谷甾醇3周。进行EPMT、NSFT等行为学测试,确认CUS诱导后,采集血清、睾丸、附睾样本进行分析。β-谷甾醇显著增加CUS大鼠睾丸和附睾重量,以及精子数量。组织学分析显示睾丸细胞结构恢复,如改善的约翰森指数评分所示。此外,β-谷甾醇还能恢复睾丸组织的抗氧化水平和氧化应激参数。透射电镜显示CUS + β-谷甾醇组生殖细胞完整,基底膜结构恢复。硅分析表明,β-谷甾醇与FNDC5、P450scc和参与类固醇生成的3β-HSD蛋白有很强的相互作用。免疫组织化学证实,FNDC5在CUS + β-谷甾醇组中表达增加,β-谷甾醇可改善CUS诱导的睾丸损伤,提高精子数量,突出其作为应激相关性男性不育饮食干预的潜力。需要进一步的临床前和临床研究来探索其治疗潜力。
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来源期刊
Reproductive Sciences
Reproductive Sciences 医学-妇产科学
CiteScore
5.50
自引率
3.40%
发文量
322
审稿时长
4-8 weeks
期刊介绍: Reproductive Sciences (RS) is a peer-reviewed, monthly journal publishing original research and reviews in obstetrics and gynecology. RS is multi-disciplinary and includes research in basic reproductive biology and medicine, maternal-fetal medicine, obstetrics, gynecology, reproductive endocrinology, urogynecology, fertility/infertility, embryology, gynecologic/reproductive oncology, developmental biology, stem cell research, molecular/cellular biology and other related fields.
期刊最新文献
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