Hormonal changes and sperm quality of stallions after testicular thermal insult

IF 1.6 3区 农林科学 Q2 VETERINARY SCIENCES Journal of Equine Veterinary Science Pub Date : 2025-02-01 Epub Date: 2025-02-11 DOI:10.1016/j.jevs.2024.105273
T.M.S. Cavalero , M.S. Frasson , C.M. Trinque , L.E.F. Canuto , C.P. Freitas-Dell'Aqua , A.J. Conley , M.A. Alvarenga , J.A. Dell'Aqua Jr , F.O. Papa
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Abstract

Testicular thermal insult negatively affects spermatogenesis and it's a common cause of testicular degeneration. Changes in semen quality after heat stress are well understood but its effects in hormone synthesis still not well characterized. Recently, hormones produced by Sertoli cells as antimulleriano hormone (AMH) and Inhibin-B have been suggested as potential fertility biomarkers. Thus, the aim of this study was to verify the changes in hormone profile, especially serum inhibin-B and AMH after scrotal insulation. Stallions (n=6) were submitted to scrotal insulation for 1 hour in the morning and 1 hour in the afternoon, for two consecutive days, using a thermal blanket surrounding the scrotum. The intratesticular temperature was measured immediately after the blanket was removed and increased ∼10oC during the insulation time. The stallions were weekly evaluated for 98 days after the procedure. Testicular response was assessed by measuring testosterone and estrone sulphate (interstitial compartment) and AMH and inhibin-B (tubular compartment). Sperm kinetics were evaluated by CASA (IVOS Version 12 Hamilton Thorne Research, MA, USA), sperm concentration by Neubauer hemocytometer (Optik Labor, Lancing, England), serum concentrations of AMH, inhibin- B and estrone sulfate were determined by ELISA and testosterone by RIA. Lipid peroxidation, plasma membrane stability (MPAI) and superoxide anion generation were assessed by flow cytometry (BD LSR II, Becton Dickinson, Mountain View, CA, USA) and sperm morphology by differential phase interference contrast microscope. The correlations between semen parameters and hormones were analyzed by Pearson correlation analysis. Testosterone correlated with MT (r=0,39), RAP (r=0.34), sperm concentration (r=0.29), MPAI (r=0.26), head defects (r= - 0.49) and total sperm defects (r= - 0.37). Estrone sulfate correlated with MT (r=0.3908), RAP (r=0.3401), sperm concentration (r=0.37), head defects (r=-0.42) and total sperm defects (r=-0.41). Inhibin-B positively correlated with sperm concentration (r=0.41) and negatively with total sperm defects (r=-0.39), whereas AMH did not correlate with the other sperm parameters evaluated. In conclusion, the correlation between hormones and sperm output indicates these hormones, besides AMH, are good markers for testicular harm and recovery when damages are caused by thermal insults.
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睾丸热损伤后种马的激素变化和精子质量
睾丸热损伤对精子发生有负面影响,是睾丸变性的常见原因。热应激后精液质量的变化已被充分了解,但其对激素合成的影响仍未很好地表征。近年来,支持细胞产生的激素如AMH (anti - mulleriano hormone)和Inhibin-B被认为是潜在的生育生物标志物。因此,本研究的目的是验证阴囊绝缘后激素谱的变化,特别是血清抑制素- b和AMH。6匹公马(n=6)在阴囊周围使用热毯进行阴囊保温,每天上午1小时,下午1小时,连续两天。取下毛毯后立即测量睾丸内温度,并在保温期间升高~ 10℃。这些种马在手术后的98天内每周接受一次评估。通过测量睾丸激素和硫酸雌酮(间质室)以及AMH和抑制素- b(小管室)来评估睾丸反应。精子动力学采用CASA (IVOS Version 12 Hamilton Thorne Research, MA, USA),精子浓度采用Neubauer血细胞计(Optik LaborⓇ,Lancing, England),血清AMH、抑制素- B和硫酸雌酮浓度采用ELISA测定,睾酮浓度采用RIA测定。采用流式细胞仪(BD LSR II, Becton Dickinson, Mountain View, CA, USA)和差相干涉对比显微镜检测精子的脂质过氧化、质膜稳定性(MPAI)和超氧阴离子生成。采用Pearson相关分析分析精液参数与激素的相关性。睾酮与MT (r=0,39)、RAP (r=0.34)、精子浓度(r=0.29)、MPAI (r=0.26)、头部缺陷(r= - 0.49)、总精子缺陷(r= - 0.37)相关。硫酸雌酮与MT (r=0.3908)、RAP (r=0.3401)、精子浓度(r=0.37)、头部缺陷(r=-0.42)、总精子缺陷(r=-0.41)相关。抑制素- b与精子浓度呈正相关(r=0.41),与精子总缺陷呈负相关(r=-0.39),而AMH与其他精子参数无相关性。综上所述,激素与精子输出量的相关性表明,当热损伤引起睾丸损伤和恢复时,除AMH外,这些激素也是很好的标志物。
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来源期刊
Journal of Equine Veterinary Science
Journal of Equine Veterinary Science 农林科学-兽医学
CiteScore
2.70
自引率
7.70%
发文量
249
审稿时长
77 days
期刊介绍: Journal of Equine Veterinary Science (JEVS) is an international publication designed for the practicing equine veterinarian, equine researcher, and other equine health care specialist. Published monthly, each issue of JEVS includes original research, reviews, case reports, short communications, and clinical techniques from leaders in the equine veterinary field, covering such topics as laminitis, reproduction, infectious disease, parasitology, behavior, podology, internal medicine, surgery and nutrition.
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