绵羊人工授精(AI)和胚胎移植(ET)的研究进展,特别是激素诱导宫颈扩张及其对动物生殖控制和外科技术的影响

Ivanka B. R. Candappa, P. Bartlewski
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引用次数: 36

摘要

人工授精(AI)和胚胎移植(ET)在羊群遗传改良中发挥着重要作用。这篇综述主要描述了最近研究和/或适应的方法,以避免绵羊子宫颈的解剖问题,这阻碍了经宫颈AI和ET在该物种中的广泛应用。分娩时宫颈成熟的机制和内分泌对宫颈张力的影响被描述为了解用于诱导宫颈扩张的各种药物作用的背景。虽然已经设计了几种导管来穿透羊子宫颈,并且已经制定了用于绵羊TCAI的特定方案(Guelph法),但穿透率和由此产生的妊娠/产羔率仍然不一致和不可预测。宫颈的激素扩张可以显著地改善羊宫颈的穿行性。Cervidil®是一种含有迪诺前列石的阴道插入物,具有缓释机制,目前用于女性引产,可显著改善母羊宫颈插入,而不会对子宫收缩性产生不良影响。这种给药方式有望开发一种安全的方法来诱导宫颈扩张,用于哺乳动物物种的广泛经宫颈生殖操作,包括但不限于人工授精、体外受精、胚胎和卵母细胞恢复、环子宫治疗和经宫颈外科手术。然而,需要更多的研究来评估激素方法对周期和季节性无卵母羊宫颈形态/病理形态学、精子/胚胎运输和活力以及生育能力的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Advances in Artificial Insemination (AI) and Embryo Transfer (ET) in Sheep, with the Special Reference to Hormonal Induction of Cervical Dilation and its Implications for Controlled Animal Reproduction and Surgical Techniques
Artificial insemination (AI) and embryo transfer (ET) play an important role in the genetic improvement of sheep herds. This review primarily describes the methods that have recently been researched and/or adapted to circumvent the problematic anatomy of the ovine cervix, which prevents the widespread application of transcervical AI and ET in this species. A mechanism of cervical ripening at parturition and the endocrine influences on cervical tone are described as a backdrop to understanding the action of various pharmacological agents used to induce cervical dilation. Although several catheters have been designed to penetrate the ovine cervix, and a specific protocol has been developed for TCAI in sheep (Guelph Method), penetration rates and resulting pregnancy/lambing rates are still inconsistent and unpredictable. Hormonal dilation of the cervix may significantly improve the ease with which the ovine cervix can be traversed. Treatment with Cervidil ® , a dinoprostone-containing vaginal insert with a slow release mechanism, currently used to induce labor in women, could significantly improve cervical penetration in ewes without adverse effects on uterine contractility. This mode of drug delivery holds promise to result in the development of a safe method to induce cervical dilation for a broad range of transcervical reproductive manipulations in mammalian species including, but not limited to, AI, ET, embryo and oocyte recovery, treatment of ringwomb and transcervical surgical procedures. However, more studies are needed to evaluate the effects of hormonal methods on cervical morphology/pathomorphology, sperm/embryo transport and viability, and fertility in both cyclic and seasonally anovular ewes.
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