Institute of Environmental Biotechnology and Health, Faculty of Exact, Physicochemical and Natural Sciences, National University of Río Cuarto, Río Cuarto, Córdoba, Argentina.
Institute of Animal Science, Faculty of Veterinary Sciences, Austral University of Chile, Valdivia, Chile.
Microsc Res Tech. 2024 May;87(5):1122-1127. doi: 10.1002/jemt.24502. Epub 2024 Jan 23.
A protocol for the analysis of a binary system comprising polyacrylamide hydrogel-attached sperm cells using high-vacuum scanning electron microscopy (SEM) is presented. This protocol focuses on optimizing the SEM procedure to obtain accurate and detailed imaging of the sperm cells and their interactions with the hydrogel scaffold. The methodology involves a stepwise sample preparation, including sample dehydration through a gradual exchange of ethanol/water ratios, followed by the application of a conductive metal coating. By employing this modified protocol, the traditional use of acetone dehydration, which may introduce chemical alterations to the materials, is avoided. The proposed approach enables a comprehensive evaluation of the morphology and interactions within the biological system in contact with the soft material scaffold. Furthermore, the potential application of this protocol extends to the study of other mammalian reproductive cells or cells of different origins adhered to hydrogel scaffolds. RESEARCH HIGHLIGHTS: Novel SEM protocol reveals precise imaging of sperm-hydrogel attachment in a binary system, enhancing our understanding of cell-material interactions. By optimizing SEM procedures, the protocol achieves precise imaging of sperm-hydrogel interactions using ethanol/water dehydration and a conductive metal coating. This modified approach enables a thorough assessment of morphology and interactions in the binary system,extending its potential applicability to other reproductive cells on hydrogelscaffolds.
本研究提出了一种使用高真空扫描电子显微镜(SEM)分析包含聚丙烯酰胺水凝胶附着精子细胞的二元系统的方案。该方案侧重于优化 SEM 程序,以获得精子细胞及其与水凝胶支架相互作用的准确和详细成像。该方法包括逐步的样品制备,包括通过逐渐交换乙醇/水比例进行样品脱水,然后应用导电金属涂层。通过采用这种改进的方案,可以避免传统的丙酮脱水方法,因为丙酮脱水可能会对材料造成化学改变。该方法可以全面评估与软材料支架接触的生物系统内的形态和相互作用。此外,该方案的潜在应用还扩展到研究附着在水凝胶支架上的其他哺乳动物生殖细胞或来自不同来源的细胞。研究亮点:新的 SEM 方案揭示了二元系统中精子-水凝胶附着的精确成像,增强了我们对细胞-材料相互作用的理解。通过优化 SEM 程序,该方案使用乙醇/水脱水和导电金属涂层实现了对精子-水凝胶相互作用的精确成像。这种改进的方法可以全面评估二元系统中的形态和相互作用,将其潜在应用扩展到水凝胶支架上的其他生殖细胞。