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基于大豆卵磷脂纳米粒的 extender 可有效冷冻保存荷斯坦公牛精子。

A soy lecithin nanoparticles-based extender effectively cryopreserves Holstein bull sperm.

机构信息

Department of Animal Science, College of Agriculture and Natural Resources, University of Tehran, Karaj, Iran.

Department of Animal Science, College of Agriculture and Natural Resources, University of Tehran, Karaj, Iran.

出版信息

Anim Reprod Sci. 2023 Oct;257:107326. doi: 10.1016/j.anireprosci.2023.107326. Epub 2023 Sep 2.

Abstract

Plant-based semen extenders, typically derived from soybean lecithin, are easier to modulate more and consistent in their composition than animal-based extenders. As large lecithin particles can, however, reduce effectiveness and solubility in bull semen extenders, sonication was used to create nano-lecithin (NL) particles of soybean lecithin. The objective was to determine the effects of lecithin type and concentration on the quality of frozen-thawed bovine sperm. We hypothesized that reducing the size of lecithin improves its interactions with the sperm and enhances the parameters that favor its motility, viability and fertility. Semen was collected from six mature Holstein bulls and ejaculates meeting minimum standards were pooled. Eight Tris-based extenders that contained 1, 2, 3, or 4 % of either conventional lecithin (L1-L4) or NL (NL1-NL4), plus two control extenders (one animal-based extender containing 20 % egg yolk [EY] and a commercial lecithin-based extender [BioXcell®]) were compared. Among soybean lecithin-based extenders, NL3 had the highest total and progressive sperm motility, and average path, straight-line and curvilinear sperm velocity, and was comparable to EY. Additionally, sperm mitochondrial activity was the highest in NL3, whereas sperm viability was highest in EY, NL3, and L4. Following in vitro fertilization of in vitro-matured bovine oocyes, NL3 had cleavage and hatching rates comparable to BioXcell®, but a lower blastocyst rate than EY. Overall, NL3 performed better than the other extenders for most end points, with efficiency comparable to EY. We, therefore, concluded that reducing lecithin particle size to a nano level improves sperm cryopreservation with optimal performance with 3 % NL.

摘要

植物基精液稀释液,通常来源于大豆卵磷脂,比动物基稀释液更容易调节,组成也更一致。然而,由于大的卵磷脂颗粒可能会降低牛精液稀释液的效果和溶解度,因此采用超声处理来制备大豆卵磷脂的纳米卵磷脂(NL)颗粒。本研究的目的是确定卵磷脂类型和浓度对冷冻-解冻牛精子质量的影响。我们假设减小卵磷脂的粒径可以改善其与精子的相互作用,并增强有利于其运动性、活力和生育力的参数。从六头成熟的荷斯坦公牛采集精液,将符合最低标准的精液混合在一起。比较了 8 种基于 Tris 的稀释液,其中含有 1%、2%、3%或 4%的常规卵磷脂(L1-L4)或 NL(NL1-NL4),外加两种对照稀释液(一种含有 20%蛋黄的动物基稀释液[EY]和一种商业卵磷脂基稀释液[BioXcell®])。在大豆卵磷脂基稀释液中,NL3 具有最高的总运动和渐进运动精子活力、平均路径、直线和曲线精子速度,与 EY 相当。此外,NL3 中精子线粒体活性最高,而 EY、NL3 和 L4 中精子活力最高。在体外成熟的牛卵母细胞进行体外受精后,NL3 的卵裂和孵化率与 BioXcell®相当,但囊胚率低于 EY。总体而言,NL3 在大多数终点的表现优于其他稀释液,效率与 EY 相当。因此,我们得出结论,将卵磷脂颗粒减小到纳米级可以改善精子冷冻保存,其 3% NL 的性能最佳。

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