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Reduced curvilinear velocity of boar sperm on substrates with increased hydrophobicity

机译:降低了疏水性增加的基质上公猪精子的曲线速度

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The curvilinear velocity (VCL) of boar spermatozoa between standard microscopy glassware decreases when the slides are coated with the hydrophobic polymer polystyrene (PS) compared with the less hydrophobic poly(methyl methacrylate) (PMMA) coating. Sperm from three boars were observed and analyzed using particle tracking software. The VCL did not differ significantly between coatings of different thickness, indicating no penetration of the sperm into the coating and that only the surface layer of the polymer film interacts with the sperm and buffer medium. The VCL of sperm between PS-coated surfaces was significantly reduced compared with PMMA surfaces (P < 0.0001), and this was attributed to a stronger hydrophobic effect between PS and water. The size of this effect varied between different boars, perhaps as a consequence of variations in hydrophobicity of sperm from different boars or different ejaculates. The modification of surface properties in this way may improve our understanding of sperm behavior and may provide improvements to assisted conception techniques as animal or human sperm used in assisted conception are frequently manipulated in laboratory plastics as part of diagnostic procedures (e.g., semen analysis) or before injection into an oocyte or during the co-incubation with the oocyte in IVF. Controlling the velocity of sperm using the interaction properties of inert polymer coatings could lead to new sperm selection procedures for clinical use or the development of model systems to better understand sperm surface interactions
机译:与低疏水性的聚甲基丙烯酸甲酯(PMMA)涂层相比,当载玻片涂有疏水性聚合物聚苯乙烯(PS)时,标准显微镜玻璃器皿之间公猪精子的曲线速度(VCL)降低。使用颗粒追踪软件观察并分析了三头公猪的精子。在不同厚度的涂层之间,VCL没有显着差异,表明精子没有渗透到涂层中,并且只有聚合物膜的表面层与精子和缓冲液相互作用。与PMMA表面相比,PS涂层表面之间精子的VCL显着降低(P <0.0001),这归因于PS和水之间的疏水作用更强。不同公猪之间这种效应的大小可能不同,这可能是由于来自不同公猪或不同射精的精子疏水性变化的结果。以这种方式改变表面性质可以改善我们对精子行为的理解,并且可以对辅助受孕技术进行改进,因为辅助受孕中使用的动物或人类精子经常在实验室塑料中作为诊断程序(例如精液分析)的一部分进行操作,或者注射到卵母细胞之前或在IVF中与卵母细胞共同孵育期间。利用惰性聚合物涂层的相互作用特性控制精子的速度可能会导致临床上使用新的精子选择程序或开发模型系统以更好地了解精子表面的相互作用

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