Institute of Environmental Biotechnology and Health, Faculty of Exact, Physicochemical and Natural Sciences, National University of Río Cuarto, National Route 36, KM. 601, 5800, Argentina.
Research Institute in Energy Technologies and Advanced Materials, Faculty of Exact, Physicochemical and Natural Sciences, National University of Río Cuarto, National Route 36, KM. 601, 5800, Argentina.
Colloids Surf B Biointerfaces. 2023 Nov;231:113575. doi: 10.1016/j.colsurfb.2023.113575. Epub 2023 Oct 2.
Novel soft materials based on hydrogel are proposed to enhance the selection of high-quality stallion sperm based on their adhesion capacity. The hydrogel surfaces are derived from polyacrylamide (PAAm), which is copolymerized with neutral and ionic co-monomers to modify the interfacial properties. The hydrogels undergo characterization through FTIR spectroscopy, assessment of swelling capacity, and wettability under various experimental conditions. Sperm adhesion capacity on the hydrogels is examined through several parameters including the percentage of bound sperm (%Sp) to hydrogels, tail oscillation intensity and flagellar movement. The biointerfacial properties of sperm-hydrogel systems vary based on the chemical composition of hydrogel as well as the components present in the culture medium. High %Sp and excellent metabolic activity of the spermatozoa are observed on hydrogel surfaces that possess moderate hydrophilicity. Specifically, a cationic hydrogel in BGM3 culture medium and a neutral surface in BGM3 medium supplemented with BSA exhibit favorable outcomes. Scanning Electron Microscopy (SEM) reveals the normal morphology of the head and tail in spermatozoa adhered to the hydrogel. Therefore, these hydrogel surfaces are potential materials for selecting stallion sperm with high quality, and their application could be extended to the study of other mammalian reproductive cells.
基于水凝胶的新型软材料被提出,以基于其粘附能力来增强对优质种马精子的选择。水凝胶表面源自聚丙烯酰胺(PAAm),它与中性和离子共聚单体共聚以改变界面性质。水凝胶通过傅里叶变换红外光谱(FTIR)进行表征,评估在各种实验条件下的溶胀能力和润湿性。通过几种参数检查精子在水凝胶上的粘附能力,包括与水凝胶结合的精子百分比(%Sp)、尾巴摆动强度和鞭毛运动。精子-水凝胶系统的生物界面性质取决于水凝胶的化学成分以及培养基中存在的成分。在具有适度亲水性的水凝胶表面上观察到高的%Sp 和精子的优异代谢活性。具体而言,在 BGM3 培养基中的阳离子水凝胶和在补充有 BSA 的 BGM3 培养基中的中性表面表现出良好的效果。扫描电子显微镜(SEM)揭示了粘附在水凝胶上的精子头部和尾部的正常形态。因此,这些水凝胶表面是用于选择高质量种马精子的潜在材料,并且它们的应用可以扩展到其他哺乳动物生殖细胞的研究。