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Folic acid supplementation during oocytes maturation influences in vitro production and gene expression of bovine embryos

胚胎 体外成熟 男科 卵母细胞 胚胎质量 胚胎发生 胚胎培养 基因表达 生物 后代 体外 基因 怀孕 遗传学 医学
作者
Carolina Gennari Verruma,Matheus Credendio Eiras,Artur José de Brum Fernandes,Reginaldo Aparecido Vila,Cristiana Libardi Miranda Furtado,Ester Silveira Ramos,Raysildo Barbosa Lôbo
出处
期刊:Zygote [Cambridge University Press]
卷期号:29 (5): 342-349 被引量:13
标识
DOI:10.1017/s0967199421000022
摘要

Embryos that are produced in vitro frequently present epigenetic modifications. However, maternal supplementation with folic acid (FA) may improve oocyte maturation and embryo development, preventing epigenetic errors in the offspring. We sought to evaluate the influence of FA supplementation during in vitro maturation of grade I (GI) and grade III (GIII) bovine oocytes on embryo production rate and the expression of IGF2 and KCNQ1OT1 genes. The oocytes were matured in vitro with different concentrations of FA (0, 10, 30 and 100 μM), followed by in vitro fertilization and embryo culture. On the seventh day (D7) of culture, embryo production was evaluated and gene expression was measured using real-time qPCR. Supplementation with 10 μM of FA did not affect embryo production for GI and GIII oocytes. Moderate supplementation (30 μM) seemed to be a positive influence, increasing embryo production for GIII (P = 0.012), while the highest dose (100 μM) reduced embryo production (P = 0.010) for GI, and IGF2 expression was not detected. In GIII, only embryos whose oocyte maturation was not supplemented with FA demonstrated detected IGF2 expression. The lowest concentration of FA (10 μM) reduced KCNQ1OT1 expression (P = 0.05) on embryos from GIII oocytes. Different FA concentrations induced different effects on bovine embryo production and gene expression that was related to oocyte quality. Despite the epigenetic effects of FA, supplementation seems to be a promising factor to improve bovine embryo production if used carefully, as concentration is an important factor, especially in oocytes with impaired quality.
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