Avantea, Cremona, Italy; Fondazione Avantea Onlus, Cremona, Italy; Equigea, Ocala, FL.
Avantea, Cremona, Italy.
J Equine Vet Sci. 2020 Jun;89:103097. doi: 10.1016/j.jevs.2020.103097. Epub 2020 Apr 21.
Assisted reproduction technologies (ART) are well developed in humans and cattle and are gaining momentum also in the equine industry because of the fact that the mare does not respond to superovulation but can donate large numbers of oocytes through ovum pick up (OPU). After collection, the oocytes can be fertilized by intracytoplasmic sperm injection (ICSI) using a variety of stallion semen samples, even of poor quality, and the resulting embryos can establish high pregnancy rates after cryopreservation and transfer. The discoveries that equine oocytes can be held at room temperature without loss of viability and that an increase in vitro maturation time can double the number of embryos produced are fueling the uptake of the OPU technique by several clinics that are shipping oocytes of their client's mares to specialized ICSI laboratories for embryo production and freezing. In this article, we present a retrospective analysis of 10 years of work at Avantea with a special focus on the last 3 years. Based on our data, an average production of 1.7 to 2 embryos per OPU-ICSI procedure can be obtained from warmblood donor mares with a pregnancy rate of 70% and a foaling rate in excess of 50%. OPU-ICSI offers the added value of freezing embryos that allows the development of embryo commercialization worldwide to the benefit of top horse breeders who are endorsing this technology as never before.
辅助生殖技术(ART)在人类和牛中得到了很好的发展,并且由于母马对超数排卵没有反应,但可以通过卵母细胞采集(OPU)捐献大量卵母细胞这一事实,在马业中也逐渐得到普及。采集后,卵母细胞可以通过胞浆内精子注射(ICSI)受精,使用各种种马精液样本,即使是质量较差的精液样本,并且经过冷冻和移植后,胚胎可以建立较高的妊娠率。发现马的卵母细胞可以在室温下保存而不会失去活力,并且体外成熟时间的增加可以使胚胎数量增加一倍,这促使几家诊所采用 OPU 技术,将客户母马的卵母细胞运送到专门的 ICSI 实验室进行胚胎生产和冷冻。在本文中,我们回顾了 Avantea 10 年的工作,特别关注过去 3 年的情况。根据我们的数据,从温血供体母马中,每进行一次 OPU-ICSI 手术可获得 1.7 到 2 个胚胎,妊娠率为 70%,产驹率超过 50%。OPU-ICSI 的附加价值在于可以冷冻胚胎,这使得胚胎商业化在全球范围内得以发展,从而使顶级马饲养者受益,他们以前所未有的方式认可这项技术。