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首页> 外文期刊>Methods and Protocols >Assessment of Sperm Binding Capacity in the Tubal Reservoir Using a Bovine Ex Vivo Oviduct Culture and Fluorescence Microscopy
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Assessment of Sperm Binding Capacity in the Tubal Reservoir Using a Bovine Ex Vivo Oviduct Culture and Fluorescence Microscopy

机译:使用牛离体输卵管培养和荧光显微镜评估管液中的精子结合能力

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Sperm binding within the oviductal sperm reservoir plays an important role for reproductive success by enabling sperm survival and maintaining fertilizing capacity. To date, numerous in vitro technologies have been established to measure sperm binding capacity to cultured oviductal cells or oviductal explants. However, these methods do not accurately represent the microenvironment and complex multi-molecular nature of the oviduct. In this paper, we describe a novel protocol for assessing sperm binding capacity in the tubal sperm reservoir using an ex vivo oviduct culture in the bovine model. This protocol includes the staining of frozen-thawed bovine spermatozoa with the DNA-binding dye Hoechst 33342, the co-incubation of stained sperm in closed segments of the oviduct and the visualization and quantification of bound spermatozoa by fluorescence microscopy. By generating overlays of multiple Z-stacks of randomly selected regions of interest (ROIs), spermatozoa bound in the sperm reservoir can be visualized and quantified within the 3D arrangement of the oviductal folds. This method, which is applicable to multiple species, can be used to assess individual sperm binding capacity in males for prognostic purposes as well as to assess the impact of diseases and medications on the formation of the sperm reservoir in the oviduct in humans and animals.
机译:通过使精子存活和维持施肥能力,在产卵储层内的精子结合对生殖成功起着重要作用。迄今为止,已经建立了许多体外技术,以测量培养的卵状细胞或产卵外植体的精子结合能力。然而,这些方法不能准确地代表流浪管的微环境和复杂的多分子性质。在本文中,我们描述了一种用于评估输卵管精子储层中的精子结合能力的新方案,使用牛模型中的exvivo输卵管培养。该方案包括用DNA结合染料Hoechst 33342的冷冻解冻牛精子的染色,通过荧光显微镜通过荧光显微镜的封闭细胞的染色精子的共培养。通过产生多个Z叠的随机选择的感兴趣区域(ROI)的叠加,可以在输卵管折叠的3D布置内可视化和量化在精子储存器中的精子。这种适用于多种物种的方法可用于评估男性中的单独精子结合能力,以便预后目的,以及评估疾病和药物的影响对人类和动物的输卵管中的精子储层的形成。

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