Animal Physiology and Reproduction Division, ICAR-Central Institute for Research on Buffaloes, Hisar, India.
Department of Veterinary Gynaecology and Obstetrics, Lala Lajpat Rai University of Veterinary and Animal Sciences, Hisar, India.
Reprod Domest Anim. 2023 Aug;58(8):1070-1079. doi: 10.1111/rda.14399. Epub 2023 Jun 9.
The use of antibiotics in semen extenders can contribute to the development of antibiotic resistance. The objective of the study was to evaluate epsilon-polylysine (Ɛ-PL) as a substitute for antibiotics in the buffalo semen extender. For this, 20 semen ejaculates were collected from four Murrah buffalo bulls. Each ejaculate was divided into three equal aliquots and extended into an egg yolk-based semen extender containing either antibiotics (strepto-penicillin) or different concentrations of Ɛ-PL (0.64 and 1.28 g/L) to make the final concentration 80 million sperm/mL and cryopreserved as per the standard procedure. The antibiogram sensitivity test confirmed that Ɛ-PL is an effective antimicrobial against microbes present in buffalo semen ejaculates. Furthermore, the addition of Ɛ-PL in the semen extender significantly reduces the colony forming unit (CFU)/mL in cryopreserved semen equivalent to strepto-penicillin. The sperm motility and kinematic parameters assessed by a computer-assisted sperm analyser showed that Ɛ-PL did not inhibit either sperm motility not kinematic parameters of cryopreserved sperm. The flow-cytometric evaluation of frozen-thawed sperm revealed interesting results. The extender supplemented with Ɛ-PL protected sperm acrosome and mitochondrial membrane potential greater than the extender supplemented with strepto-penicillin. Further, Ɛ-PL reduced significantly the production of superoxide anions from mitochondria during the cryopreservation process. In this way, Ɛ-PL may be a suitable alternative to antibiotics in semen extenders. In conclusion, Ɛ-PL at a concentration of 0.64 g/L acts as an effective antimicrobial as well as antioxidant in semen extender for cryopreservation of buffalo sperm.
在精液稀释剂中使用抗生素会导致抗生素耐药性的产生。本研究的目的是评估ε-聚赖氨酸(ε-PL)作为抗生素在水牛精液稀释剂中的替代品。为此,从 4 头摩拉水牛公牛中采集了 20 份精液样本。每份精液样本均分为 3 等份,并分别扩展到含有抗生素(青霉素)或不同浓度 ε-PL(0.64 和 1.28 g/L)的蛋黄基精液稀释剂中,使最终浓度为 8000 万精子/mL,并按照标准程序进行冷冻保存。抗生素药敏试验证实 ε-PL 是一种有效的抗菌剂,可对抗水牛精液样本中存在的微生物。此外,在精液稀释剂中添加 ε-PL 可显著降低冷冻保存精液中的菌落形成单位(CFU)/mL,相当于青霉素。通过计算机辅助精子分析器评估精子活力和运动学参数表明,ε-PL 不会抑制冷冻精子的活力或运动学参数。对冷冻-解冻精子的流式细胞术评估显示出有趣的结果。添加 ε-PL 的稀释剂保护精子顶体和线粒体膜电位的效果优于添加青霉素的稀释剂。此外,ε-PL 显著减少了冷冻保存过程中来自线粒体的超氧阴离子的产生。这样,ε-PL 可能是精液稀释剂中抗生素的合适替代品。总之,浓度为 0.64 g/L 的 ε-PL 在水牛精子冷冻保存的精液稀释剂中既具有抗菌作用,又具有抗氧化作用。