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Nanotechnology-based approach for safer enrichment of semen with best spermatozoa

机译:基于纳米技术的方法可最佳精子更安全地富集精液

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Advances in nanotechnology have permitted molecular-based targeting of cells through safe and biocompatible magnetic nanoparticles (MNP). Their use to detect and remove damaged spermatozoa from semen doses could be of great interest. Here, MNP were synthesized and tested for their ability to target apoptotic (annexin V) and acrosome-reacted (lectin) boar spermatozoa, for high-throughout retrieval in a magnetic field (nanoselection). The potential impacts of nanoselection on sperm functions and performance of offspring sired by sperm subjected to nanoselection were determined. Fresh harvested and extended boar semen was mixed with various amounts (0, 87.5, and 175?μg) of MNP-conjugates (Annexin V-MNP or Lectin-MNP) and incubated (10 to 15?min) for 37?°C in Exp. 1. In Exp. 2, extended semen was mixed with optimal concentrations of MNP-conjugates and incubated (0, 30, 90, or 120?min). In Exp. 3, the synergistic effects of both MNP-conjugates (87.5?μg – 30?min) on spermatozoa was evaluated, followed by sperm fertility assessments through pregnancy of inseminated gilts and performance of neonatal offspring. Sperm motion, viability, and morphology characteristics were evaluated in all experiments. Transmission electron microscopy, atomic force microscopy, and hyperspectral imaging techniques were used to confirm attachment of MNP-conjugates to damaged spermatozoa. The motility of nanoselected spermatozoa was improved (P 0.05). The findings revealed the benefit of magnetic nanoselection for high-throughput targeting of damaged sperm, for removal and rapid and effortless enrichment of semen doses with highly motile, viable, and fertile spermatozoa. Therefore, magnetic nanoselection for removal of abnormal spermatozoa from semen is a promising tool for improving fertility of males, particularly during periods, such as heat stress during the summer months.
机译:纳米技术的进步已允许通过基于分子的安全和生物相容性磁性纳米粒子(MNP)靶向细胞。将它们用于从精液剂量中检测和去除受损的精子可能引起极大的兴趣。在这里,合成了MNP并测试了其针对凋亡(annexin V)和顶体反应(凝集素)公猪精子的能力,以便在磁场中进行高通量检索(纳倍选择)。确定了纳米选择对精子功能和受精子影响的后代性能的潜在影响。将新鲜收获和延伸的公​​猪精液与各种量(0、87.5和175μg)的MNP-缀合物(膜联蛋白V-MNP或凝集素-MNP)混合,并在37°C下温育(10-15分钟)。经验1.在实验中2,将延长的精液与最适浓度的MNP偶联物混合并孵育(0、30、90或120?min)。在实验中3,评估了两种MNP共轭物(87.5μg–30μmin)对精子的协同作用,然后通过怀孕的后备小母猪和新生儿后代的表现评估了精子的育性。在所有实验中都评估了精子的运动,活力和形态特征。透射电子显微镜,原子力显微镜和高光谱成像技术被用来确认MNP结合物对受损精子的附着。纳米选择的精子的运动性得到改善(P 0.05)。这些发现揭示了磁性纳米选择对于高通量靶向受损精子,去除并快速轻松地富集具有高活动性,活力和可育精子的精液剂量的益处。因此,用于从精液中去除异常精子的磁性纳米筛选是改善男性生育力的有前途的工具,特别是在夏季,如热应激期。

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