Sperm microencapsulation in bovine: An overview

N. Paul, T. Talluri, Arumugam Kumaresan
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Abstract

Artificial insemination is so far the most successful and widely adopted assisted reproductive technique for genetic improvement in bovines. Despite their widespread adoption, the field conception rate using frozen semen straws remain low. Prediction of ovulation time, the short lifespan of frozen-thawed sperm, and retrograde backflow of semen following insemination result in fewer sperm available in the sperm reservoir in the oviduct and thus lessen the chances of fertilization. To tackle this, the idea of sustained release of spermatozoa inside the oviduct to maximize the odds of fertilizing the descendent ova is generated. Cell microencapsulation is a strategy that allows the implantation of cells, keeping the cells isolated from the host immune response by semipermeable membrane permitting the selective diffusion of gases, nutrients, and therapeutics but not of host immune cells. At present, few studies have been conducted where spermatozoa were encapsulated in a polymer shell/bead and successfully cryopreserved. The frozen-thawed encapsulated spermatozoa had shown comparable results in terms of in vitro functional assessment as well as in achieving pregnancy as compared to conventional semen dose. The purity of encapsulating material is very crucial to nullify maternal immune response as well as to achieve higher biocompatibility. In this manuscript, an overview of sperm encapsulation has been compiled, with more stress on types of encapsulating materials, their characterization, purity, and prospects of this method to come up as a robust method for achieving higher success following artificial insemination.
牛的精子微囊化:概述
人工授精是迄今为止最成功、最广泛采用的牛遗传改良辅助生殖技术。尽管人工授精被广泛采用,但使用冷冻精液吸管的现场受孕率仍然很低。对排卵时间的预测、冷冻解冻精子的寿命短以及人工授精后精液的逆向倒流都会导致输卵管精子库中的精子数量减少,从而降低受精几率。为了解决这个问题,人们产生了在输卵管内持续释放精子以最大限度提高后代卵子受精几率的想法。细胞微囊化是一种允许细胞植入的策略,通过半透膜将细胞与宿主免疫反应隔离,允许气体、营养物质和治疗药物选择性扩散,但不允许宿主免疫细胞扩散。目前,将精子封装在聚合物外壳/珠子中并成功冷冻保存的研究很少。与传统精液剂量相比,冷冻解冻的封装精子在体外功能评估和怀孕方面显示出相似的结果。封装材料的纯度对于消除母体免疫反应和实现更高的生物相容性至关重要。本手稿对精子封装技术进行了概述,重点介绍了封装材料的类型、特性、纯度以及该方法的前景,以期成为人工授精后取得更高成功率的可靠方法。
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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