Department of Animal Science, Faculty of Agriculture and Natural Resources, Arak University, Arak, Iran.
Animal Science Research Institute of Iran (ASRI), Agricultural Research Education and Extension Organization (AREEO), Karaj, Iran.
Reprod Domest Anim. 2024 Apr;59(4):e14568. doi: 10.1111/rda.14568.
Sperm cryopreservation is one of the main methods for preserving rooster sperm for artificial insemination (AI) in commercial flocks. Yet, rooster sperm is extremely susceptible to reactive oxygen species (ROS) produced during the freezing process. Oxidative stress could be prevented by using nanoparticles containing antioxidants. The present study was conducted to investigate the effect of zinc oxide nanoparticles (ZnONP) in rooster semen freezing extender on quality parameters and fertility potential. For this aim, semen samples were collected and diluted in Lake extenders as follows: control: Lake without ZnONP, ZnO100: Lake with 100-μg zinc oxide (ZnO), ZnONP50: Lake with 50-μg ZnONP, ZnONP100: Lake with 100-μg ZnONP and ZnONP200: Lake with 200-μg ZnONP. After freezing and thawing, sperm motility, viability, membrane integrity, morphology, mitochondrial activity, acrosome integrity, DNA fragmentation, lipid peroxidation and ROS, as well as fertility and hatchability were assessed. According to the current results, higher rates of motility, membrane integrity, mitochondrial activity, acrosome integrity and live cells were detected in the ZnO100, ZnONP50 and ZnONP100 groups compared to other groups (p ≤ .05). Yet, the percentage of dead cells, DNA fragmentation, lipid peroxidation and ROS levels were lower in the mentioned groups (p ≤ .05). Furthermore, a higher percentage of fertility was observed in the ZnO100 and ZnONP100 groups than in the control group (p ≤ .05). In conclusion, the use of 100-μg ZnO and 50- to 100-μg ZnONP represents a valuable and safe additive material that could be used to improve the quality and fertility potential of rooster sperm under cryopreservation conditions.
精子冷冻保存是商业鸡群人工授精(AI)中保存公鸡精子的主要方法之一。然而,公鸡精子在冷冻过程中极易受到活性氧(ROS)的影响。通过使用含有抗氧化剂的纳米颗粒可以防止氧化应激。本研究旨在探讨纳米氧化锌(ZnONP)在公鸡精液冷冻稀释液中的作用对精液质量参数和受精能力的影响。为此,采集精液样本并在以下 Lake 稀释液中进行稀释:对照组:不含 ZnONP 的 Lake 稀释液;ZnO100 组:含 100μg 氧化锌(ZnO)的 Lake 稀释液;ZnONP50 组:含 50μg ZnONP 的 Lake 稀释液;ZnONP100 组:含 100μg ZnONP 的 Lake 稀释液;ZnONP200 组:含 200μg ZnONP 的 Lake 稀释液。冷冻和解冻后,评估精子活力、活力、膜完整性、形态、线粒体活性、顶体完整性、DNA 碎片化、脂质过氧化和 ROS 以及受精率和孵化率。根据目前的结果,与其他组相比,ZnO100、ZnONP50 和 ZnONP100 组的运动率、膜完整性、线粒体活性、顶体完整性和活细胞率较高(p≤.05)。然而,这些组的死细胞、DNA 碎片化、脂质过氧化和 ROS 水平较低(p≤.05)。此外,ZnO100 和 ZnONP100 组的受精率高于对照组(p≤.05)。总之,使用 100μg ZnO 和 50-100μg ZnONP 代表一种有价值且安全的添加剂材料,可用于提高冷冻条件下公鸡精子的质量和受精能力。