Effects of administration of mycobacterium cell wall fraction during the periovulatory period on embryo development following superovulation in virgin dairy heifers

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Abstract

Proinflammatory cytokines are involved in regulating several reproductive processes that occur during the periovulatory period, including ovulation, corpus luteum formation, and preimplantation embryo development. The objective of this study was to determine whether stimulation of proinflammatory cytokines through administration of mycobacterium cell wall fraction (MCWF; Amplimune, NovaVive) could improve embryo development following superovulation in dairy heifers. A total of 34 independent embryo recovery procedures were performed using nulliparous Holstein heifers (n = 20; age 12–18 mo) as donors. For superovulation, dominant follicle removal was performed and an intravaginal progesterone device was inserted on d −6. Thirty-six hours later, on d −4, FSH (420 IU total) was administered in a decreasing dose regimen consisting of 8 injections given twice daily at 12-h intervals. Prostaglandin F was administered in conjunction with the fifth and sixth injections of FSH on d −2 and the intravaginal progesterone device was removed on the morning of d −1. Twenty-four hours later, on d 0, donors received their randomly assigned treatment (sterile saline or MCWF, 5 mL, i.m.) and gonadotropin-releasing hormone was administered to induce ovulation. Donors were artificially inseminated with frozen-thawed semen at 12 and 24 h after induced ovulation. Nonsurgical embryo recovery procedures were performed on d 7. Recovered structures were evaluated using a stereomicroscope to assess embryo development. There was no effect of MCWF treatment on the numbers of total structures, unfertilized oocytes, degenerate embryos, transferable embryos, or blastocysts. However, there was a trend for donors treated with MCWF to have a greater proportion of blastocysts out of total structures recovered. Overall, the efficacy of superovulation in virgin dairy heifer donors was not improved by administration of MCWF during the peri-ovulatory period, but results indicate that MCWF treatment may enhance embryo developmental kinetics.

在围排卵期服用分枝杆菌细胞壁成分对处女乳牛超排卵后胚胎发育的影响
促炎细胞因子参与调节围排卵期的几个生殖过程,包括排卵、黄体形成和植入前胚胎发育。本研究的目的是确定通过服用分枝杆菌细胞壁组分(MCWF;Amplimune,NovaVive)刺激促炎细胞因子是否能改善奶牛超级排卵后的胚胎发育。以无产荷斯坦小母牛(n = 20;年龄 12-18 月)为供体,共进行了 34 次独立的胚胎复苏程序。对于超排卵,在第 6 天切除优势卵泡并插入阴道内黄体酮装置。36小时后,即第-4天,以递减剂量方案注射FSH(总剂量为420 IU),每天注射8次,每次间隔12小时。在第 2 天注射第 5 次和第 6 次 FSH 的同时,还注射了前列腺素 F2α,并在第 1 天上午移除阴道内的黄体酮装置。24 小时后,即第 0 天,供体接受随机分配的治疗(无菌生理盐水或 MCWF,5 毫升,静注),并注射促性腺激素释放激素以诱导排卵。在诱导排卵后的 12 和 24 小时,用冷冻解冻的精液对供体进行人工授精。第 7 天进行非手术胚胎复苏程序。使用体视显微镜评估胚胎发育情况。MCWF 处理对总结构、未受精卵细胞、退化胚胎、可移植胚胎或囊胚的数量没有影响。不过,使用 MCWF 处理的供体在回收的总结构中囊胚的比例有增加的趋势。总体而言,在围排卵期施用 MCWF 并未提高处女乳牛供体超排卵的效果,但结果表明 MCWF 治疗可提高胚胎发育动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JDS communications
JDS communications Animal Science and Zoology
CiteScore
2.00
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