• Title of article

    Gold nanoparticles improve the embryonic developmental competency of artificially activated mouse oocytes

  • Author/Authors

    Muhammad, Tahir Department of Theriogenology - Faculty of Veterinary Sciences - University of Veterinary and Animal Sciences, Lahore, Pakistan , Ameen Jamal, Muhammad Department of Theriogenology - University of Veterinary and Animal Sciences, Lahore, Pakistan , Ashraf, Muhammad Department of Theriogenology - University of Veterinary and Animal Sciences, Lahore, Pakistan , Zafar, Nosheen Department of Physics - Faculty of Natural Sciences - University of Engineering and Technology, Lahore, Pakistan , Shahzadi, Shamaila Department of Physics - Faculty of Natural Sciences - University of Engineering and Technology, Lahore, Pakistan , Maqbool, Tahir Institute of Molecular Biology and Biotechnology - University of Lahore, Lahore, Pakistan , Hadi , Faheem Institute of Molecular Biology and Biotechnology - University of Lahore, Lahore, Pakistan , Amjad , Riaz Department of Theriogenology - Faculty of Veterinary Sciences - University of Veterinary and Animal Sciences, Lahore, Pakistan

  • Pages
    15
  • From page
    415
  • To page
    429
  • Abstract
    Currently, artificial oocyte activation has attracted wide attention in assisted reproduction due to extensive range of applications, particularly in somatic cell nuclear transfer and deriving pluripotent stem cell lines and it is the unique model to determine the role of paternal genome. Numbers of artificial activating agents have been used extensively to induce the oocytes activation; however, embryos developmental competency of artificially activated oocytes is still very low. In the present study, we determined the functional impact of strontium chloride supplementation with gold nanoparticles (AuNPs) in artificial oocytes activation and subsequent embryonic development. Oocytes were activated artificially in the culture medium containing 250 nM AuNPs with constant concentration of strontium chloride 10.00 mM. We found that adding 250 nM AuNPs with constant concentration of strontium chloride (10.00 mM for 3 hr) in culture medium improves the proportion of embryos reaching to the morula and blastocyst stages from 61.00% and 42.00% (controls) to 75.00% and 58.00% (250 nM AuNPs), respectively. In addition, foster mothers receiving AuNPs-treated embryos showed more implantation percentage and pregnancy rate relative to females received control embryos. Finally, embryos treated with 250 nM AuNPs concentration showed no toxic effect in term of blastocyst development. Collectively, our findings suggest the potential role of AuNPs in early embryonic development for mouse oocytes activated artificially and provide new insights in the field of animal biotechnology and assisted reproduction in humans.
  • Keywords
    Embryonic development , Parthenogenesis , Gold nanoparticles , Mice , Oocytes
  • Journal title
    Veterinary Research Forum
  • Serial Year
    2021
  • Record number

    2697738