The effects of green synthesized anionic cupric oxide nanoparticles on Zaraibi goat spermatozoa during cryopreservation with and without removal of seminal plasma

Elshamy, Ayat A; Kotram, Laila E; Barakat, Olfat Sayed; Mahmoud, Sara Mohamed;

Abstract


Sperm motility, normal morphology, viability, spermatozoa DNA damage, and lipid peroxidation are all affected by semen cryopreservation. The goal of this study was to see how effective cupric oxide nanoparticles (CuONPs) are as a cryo-extender additive on post-thawed sperm parameters. An artificial vagina was used to collect semen samples from five mature Zaraibi bucks (2-3 years). Ejaculates were pooled and separated into two fractions (A&B), a fraction (A) was left without being centrifuged and a fraction (B) was centrifuged to remove seminal plasma. Both fractions were diluted with tris egg yolk citrate extender (TECE) and then divided into five equal aliquots, each supplemented with (0, 10, 20, 40, and 60 ppm/ml) CuONPs. The findings revealed that removing seminal plasma before cryopreservation harms sperm parameters. Sperm motility, viability index, membrane integrity, biochemical antioxidant marker, DNA integrity, and MDA level improved after supplementation with CuONPs up to 60 ppm/ml, the most prominent significant positive effect was obtained with the highest dose (60 ppm/ml) without removal of the seminal plasm compared to control group. In conclusion: The presence of seminal plasma with a high concentration of CuONPs (up to 60 ppm/ml) may help to mitigate the negative effects of cryo-preservation.


Other data

Title The effects of green synthesized anionic cupric oxide nanoparticles on Zaraibi goat spermatozoa during cryopreservation with and without removal of seminal plasma
Authors Elshamy, Ayat A; Kotram, Laila E; Barakat, Olfat Sayed; Mahmoud, Sara Mohamed 
Keywords Green CuONPs;Zaraibi goat;cryopreservation;seminal plasma removal
Issue Date Dec-2023
Journal Animal Biotechnology 
Volume 34
Issue 7
Start page 2582
End page 2595
ISSN 10495398
DOI 10.1080/10495398.2022.2106992
PubMed ID 35930359
Scopus ID 2-s2.0-85135459932

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