Impact of low-dose ozone supplementation on motility parameters and bacterial growth in horse cryopreserved semen

IF 1.9 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Veterinary and Animal Science Pub Date : 2024-07-21 DOI:10.1016/j.vas.2024.100380
Diana Fanelli , Rebecca Moroni , Giulia Sala , Pierre Melanie , Ilaria Tarabella , Nicole Telleschi , Saverio Maltinti , Mario Giorgi , Giovanni Barsotti , Fabrizio Passamonti , Paola Marmorini , Alessandra Rota , Francesco Camillo , Duccio Panzani
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Abstract

Two studies were conducted to evaluate the use of medical ozone (O3) in commercial extenders for equine semen cryopreservation. In the first study (Study 1), 0, 5, and 15 µg/mL of O3 were added to diluents of refrigerated or frozen semen. Samples were evaluated for sperm kinematics at different time points for the chilled samples and after a thermoresistence test for the frozen/thawed samples. In the second study (Study 2), 0, 5, and 10 µg/mL of O3 were added to an antibiotic-free diluent for refrigerated semen for comparison with the control group in which semen was diluted in the same diluent enriched with antibiotics. Semen sample kinematics were analyzed and an aliquot was collected after ozonification for bacteriological analyses. For Study 1 no difference was found comparing all the kinematic parameters analyzed over time, in the various treatments (P > 0.05). In Study 2 the absence of antibiotics did not affect the kinematic parameters compared to the control (P > 0.05). However when antibiotics were added, a smaller number of bacterial colony-forming units were detected compared to samples without antibiotics and without or with different O3 supplementations. In conclusion, O3 treatment at low dosages did not affect the semen kinematics, although it was ineffective in preventing bacterial overgrowth. Higher O3 concentrations should be evaluated to explore the possibility of reducing the use of antibiotics in equine sperm conservation.

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低剂量臭氧对马冷冻精液中运动参数和细菌生长的影响
我们进行了两项研究,以评估医用臭氧(O3)在马精液冷冻保存的商用扩展剂中的应用。在第一项研究(研究 1)中,将 0、5 和 15 µg/mL 的 O3 添加到冷藏或冷冻精液的稀释液中。在不同的时间点对冷藏样本进行精子运动学评估,在对冷冻/解冻样本进行热稳定性测试后对其进行精子运动学评估。在第二项研究(研究 2)中,在冷藏精液的不含抗生素的稀释液中分别添加了 0、5 和 10 µg/mL 的 O3,以便与对照组进行比较,对照组的精液是用同样的富含抗生素的稀释液稀释的。对精液样本的运动学进行分析,并在臭氧处理后收集等量样本进行细菌分析。在研究 1 中,在不同的处理方法中,所有运动学参数的时间分析结果均无差异(P > 0.05)。在研究 2 中,与对照组相比,不使用抗生素不会影响运动参数(P > 0.05)。然而,在添加抗生素后,与不添加抗生素、不添加或添加不同 O3 的样品相比,检测到的细菌菌落形成单位数量较少。总之,低剂量的 O3 处理虽然不能有效防止细菌过度生长,但不会影响精液动力学。应该对更高浓度的 O3 进行评估,以探索在马精子保存过程中减少抗生素使用的可能性。
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来源期刊
Veterinary and Animal Science
Veterinary and Animal Science Veterinary-Veterinary (all)
CiteScore
3.50
自引率
0.00%
发文量
43
审稿时长
47 days
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