Department of Animal Sciences, D.H. Barron Reproductive and Perinatal Biology Research Program, and Genetics Institute, University of Florida, Gainesville, FL.
J Anim Sci. 2020 Apr 1;98(4). doi: 10.1093/jas/skaa115.
Colony-stimulating factor 3 (CSF3), also known as granulocyte colony-stimulating factor, is used to reduce the incidence of mastitis in cattle. Here, we tested whether recombinant bovine CSF3 at 1, 10, or 100 ng/mL acts on the bovine oocyte during maturation or on the developing embryo to modify competence for development and characteristics of the resultant blastocyst. For experiment 1, oocytes were matured with or without CSF3. The resultant embryos were cultured in a serum-free medium for 7.5 d. There was no effect of CSF3 on cleavage or on development to the blastocyst stage except that 100 ng/mL reduced the percent of putative zygotes and cleaved embryos becoming blastocysts. Expression of transcripts for 93 genes in blastocysts was evaluated by RT-PCR using the Fluidigm platform. Transcript abundance was affected by one or more concentrations of CSF3 for four genes only (CYP11A1, NOTCH2, RAC1, and YAP1). For experiment 2, cumulus-oocyte complexes (COC) were fertilized with either X- or Y-sorted semen. Putative zygotes were cultured in medium containing CSF3 treatments added at the beginning of culture. There was no effect of CSF3, sex, or the interaction on the percent of putative zygotes that cleaved or on the percent of putative zygotes or cleaved embryos becoming a blastocyst. For experiment 3, CSF3 was added from day 4 to 7.5 of development. There was no effect of CSF3 on development to the blastocyst stage. Transcript abundance of 10 genes was increased by 100 ng/mL CSF3, including markers of epiblast (NANOG, SOX2), hypoblast (ALPL, FN1, KDM2B, and PDGFRA), epiblast and hypoblast (HNF4A) and trophectoderm (TJAP1). Results are indicative that concentrations of CSF3 higher than typical after therapeutic administration can reduce oocyte competence and act on the embryo to affect characteristics of the blastocyst.
集落刺激因子 3(CSF3),也称为粒细胞集落刺激因子,用于降低奶牛乳腺炎的发病率。在这里,我们测试了 1、10 或 100ng/mL 的重组牛 CSF3 在成熟过程中是否对牛卵母细胞或发育中的胚胎起作用,以改变其发育能力和囊胚的特征。在实验 1 中,卵母细胞在有或没有 CSF3 的情况下成熟。所得胚胎在无血清培养基中培养 7.5 天。CSF3 对卵裂或发育为囊胚阶段没有影响,除了 100ng/mL 降低了假定受精卵和卵裂胚胎成为囊胚的比例。通过使用 Fluidigm 平台的 RT-PCR 评估囊胚中 93 个基因的转录本表达。只有 4 个基因的转录本丰度受到一种或多种浓度的 CSF3 的影响(CYP11A1、NOTCH2、RAC1 和 YAP1)。在实验 2 中,用 X 或 Y 分选的精液使卵丘-卵母细胞复合物(COC)受精。假定的受精卵在含有 CSF3 处理的培养基中培养,在培养开始时添加 CSF3 处理。CSF3、性别或它们的相互作用对卵裂的假定受精卵的比例或卵裂的假定受精卵或胚胎成为囊胚的比例没有影响。在实验 3 中,从发育的第 4 天到第 7.5 天添加 CSF3。CSF3 对发育为囊胚阶段没有影响。100ng/mL CSF3 增加了 10 个基因的转录本丰度,包括内胚层(NANOG、SOX2)、下胚层(ALPL、FN1、KDM2B 和 PDGFRA)、内胚层和下胚层(HNF4A)和滋养层(TJAP1)的标志物。结果表明,高于治疗后典型浓度的 CSF3 可以降低卵母细胞的能力,并作用于胚胎,影响囊胚的特征。