如何战胜公牛番茄红素是提高多精症公牛体外受精效率的工具。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-05-14 DOI:10.1016/j.repbio.2024.100888
Andrea Fernández-Montoro , Daniel Angel-Velez , Berta Cava-Cami , Osvaldo Bogado Pascottini , Krishna Chaitanya Pavani , Katrien Smits , Ann Van Soom
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引用次数: 0

摘要

体外条件下产生的高浓度活性氧(ROS)会影响卵母细胞的质量以及随后通过透明带和膜阻滞防止多精子症。在体外成熟(IVM)过程中补充番茄红素等抗氧化剂可减轻ROS的影响,但其在阻止多精症方面的功效仍不确定。本研究旨在评估在体外成熟过程中补充番茄红素对卵母细胞成熟、受精和发育参数的影响。为此,在牛卵母细胞中添加了 0.2 µM 番茄红素,并用三头公牛的精液进行受精。三头公牛表现出不同的体外受精潜力,其中公牛 1 的穿透率和多精子率最高,体外受精(IVF)效率最低。有趣的是,在公牛 1 中,番茄红素处理提高了体外受精效率(p = 0.043),降低了多精子率(p = 0.028)。然而,在公牛 2 号和 3 号中没有观察到这些影响。穿透率较高的公牛表现出较高的囊胚率,但这些率似乎与多精症或体外受精效率无关。卵母细胞线粒体的分布和活性以及皮质颗粒的迁移和分布不受番茄红素的影响。总之,我们证明了在卵母细胞成熟过程中添加番茄红素对试管受精效率有积极影响,因为番茄红素能降低多精子症的发生率,而多精子症的发生率则取决于公牛。多精子率的降低并不是由皮质颗粒迁移或卵母细胞线粒体分布的变化引起的。因此,番茄红素必须诱导卵母细胞发生其他变化,以降低易发生多精子症的特定公牛的体外穿透率。
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How to beat the bull: Lycopene as a tool to improve in vitro fertilization efficiency in bulls with high polyspermy

High levels of reactive oxygen species (ROS) derived from in vitro conditions compromise oocyte quality and subsequent polyspermy prevention by the zona and membrane block. Antioxidant supplementation, like lycopene, during in vitro maturation (IVM) mitigates ROS effects, yet, its efficacy in blocking polyspermy remains uncertain. This study aims to evaluate the effect of lycopene supplementation during IVM on oocyte maturation, fertilization, and developmental parameters. To this end, bovine oocytes were supplemented with 0.2 µM lycopene and fertilized with semen from three bulls. The three bulls showed different fertilization potential in vitro, with bull 1 showing the highest penetration and polyspermy rates and the lowest in vitro fertilization (IVF) efficiency. Interestingly, in bull 1, the treatment with lycopene improved IVF efficiency (p = 0.043) and reduced the polyspermy rate (p = 0.028). However, none of these effects were observed in bulls 2 and 3. Bulls with higher penetration rates exhibited better blastocyst rates although those rates did not seem to be associated with polyspermy or IVF efficiency. Oocyte mitochondrial distribution and activity and cortical granule migration and distribution were not influenced by lycopene. In conclusion, we demonstrated that lycopene addition during oocyte maturation had a positive impact on IVF efficiency by reducing polyspermy rates in a bull-dependent manner. The reduction in polyspermy rates was not caused by changes in cortical granule migration or oocyte mitochondrial distribution. Lycopene must therefore induce other changes in the oocyte that lower the in vitro penetration rates of specific bulls prone to polyspermy.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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