Maitan Paula, Bromfield Elizabeth G, Stout Tom A E, Gadella Bart M, Leemans Bart
Departments of Clinical Sciences, Faculty of Veterinary Medicine, Utrecht University, Yalelaan 112, 3584 CM Utrecht, The Netherlands; Department of Veterinary Sciences, Universidade Federal de Viçosa, Viçosa, MG, Brazil.
Biomolecular Health Sciences, Faculty of Veterinary Medicine, Utrecht University, The Netherlands; Priority Research Centre for Reproductive Science, College of Engineering, Science and Environment, University of Newcastle, Australia.
Anim Reprod Sci. 2022 Nov;246:106848. doi: 10.1016/j.anireprosci.2021.106848. Epub 2021 Sep 14.
Conventional in vitro fertilization is not efficacious when working with equine gametes. Although stallion spermatozoa bind to the zona pellucida in vitro, these gametes fail to initiate the acrosome reaction in the vicinity of the oocyte and cannot, therefore, penetrate into the perivitelline space. Failure of sperm penetration most likely relates to the absence of optimized in vitro fertilization media containing molecules essential to support stallion sperm capacitation. In vivo, the female reproductive tract, especially the oviductal lumen, provides an environmental milieu that appropriately regulates interactions between the gametes and promotes fertilization. Identifying these 'fertilization supporting factors' would be a great contribution for development of equine in vitro fertilization media. In this review, a description of the current understanding of the interactions stallion spermatozoa undergo during passage through the female genital tract, and related specific molecular changes that occur at the sperm plasma membrane is provided. Understanding these molecular changes may hold essential clues to achieving successful in vitro fertilization with equine gametes.
传统的体外受精技术在处理马的配子时并不有效。尽管公马精子在体外能与透明带结合,但这些配子无法在卵母细胞附近引发顶体反应,因此不能穿透到卵周隙。精子穿透失败很可能与缺乏含有支持公马精子获能所需分子的优化体外受精培养基有关。在体内,雌性生殖道,尤其是输卵管腔,提供了一个能适当调节配子间相互作用并促进受精的环境。识别这些“受精支持因子”将对马体外受精培养基的开发有很大贡献。在这篇综述中,描述了目前对公马精子在通过雌性生殖道过程中所经历的相互作用以及精子质膜上发生的相关特定分子变化的理解。了解这些分子变化可能是实现马配子体外受精成功的关键线索。