Application of nanomaterial for maturation in vitro of cattle embryos

P. A. Trotskyi, O. Shcherbak, S. Kovtun
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Abstract

Aim. To evaluate the effectiveness of the use of nanomaterial in the environment for the further development of in vitro embryos derived from frozen-thawed oocytes in the system of conservation of genetic resources of animals at the cellular level. Methods. Biotechnological, cryobiological, morphological, cytogenetic, and statistical methods, as well as methods of statistical data processing were used in the research. Results. Oocyte-cumulus complexes (OCC) of cows were divided into four groups: three experimental, in which the maturation was performed in a medium containing 0.1, 0.01 and 0.001% UFS/sucrose and control - without the addition of nanobiomaterial. In vitro fertilization of pre-mature frozen-thawed ova of cows and subsequent maturation of embryos in the medium with the addition of UFS/sucrose (0.001%) showed an increase in the number of embryos by 16.7-22.1% compared with the addition of 0.1; 0.01% and 13.1% compared to the control group. It was found that the fragmentation rate of 2-cell cattle embryos decreased from 65.0 to 39.8% with a decrease in the concentration of UFS/sucrose from 0.1 to 0.001%. The most stable indicators of the fragmentation index from 78.4 to 50.0% were observed on the fourth day of embryo cultivation in experimental group B. Conclusions. Reducing the concentration of UFS/sucrose from 0.1 to 0.001% in the composition of the medium for in vitro maturation of cattle embryos leads to an increase of 16.7-22.1% in the number of embryos obtained. Keywords: oocyte-cumulus complex, cryopreservation, nanomaterial, in vitro maturation, embryo.
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纳米材料在牛胚胎体外成熟中的应用
的目标。在细胞水平的动物遗传资源保护系统中,评估在环境中使用纳米材料进一步发育冻融卵母细胞体外胚胎的有效性。方法。研究采用了生物技术、低温生物学、形态学、细胞遗传学、统计学等方法以及统计数据处理方法。结果。将奶牛卵母细胞-积云复合物(OCC)分为四组:三组实验,分别在含有0.1、0.01和0.001% UFS/蔗糖和对照的培养基中成熟,不添加纳米生物材料。在培养基中添加0.001%的UFS/蔗糖可使奶牛冻融前卵体外受精和胚胎成熟,与添加0.1%的UFS/蔗糖相比,胚胎数量增加16.7 ~ 22.1%;分别为0.01%和13.1%结果表明,当UFS/蔗糖浓度从0.1降低到0.001%时,2细胞牛胚胎的破碎率从65.0降低到39.8%。实验b组胚培养第4天碎化指数在78.4 ~ 50.0%之间最稳定。将牛胚体外成熟培养基中UFS/蔗糖的浓度从0.1降低到0.001%,获得的胚胎数量增加16.7 ~ 22.1%。关键词:卵母细胞积云复合体,低温保存,纳米材料,体外成熟,胚胎。
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