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相关显微镜对分离的外泌体的成像。

Imaging of Isolated Exosomes by Correlative Microscopy.

机构信息

Department of Histology and Embryology, Faculty of Medicine.

Department of Histology and Embryology, Health Science Institute.

出版信息

J Histochem Cytochem. 2024 Mar;72(3):149-156. doi: 10.1369/00221554241233346. Epub 2024 Feb 24.

Abstract

Correlative microscopy is a sophisticated imaging technique that combines optical and electron microscopes, with the most common approach being the integration of light microscopy and electron microscopy, known as correlative light and electron microscopy (CLEM). While CLEM provides a comprehensive view of biological samples, it presents a significant challenge in sample preparation due to the distinct processes involved in each technique. Striking a balance between these methods is crucial. Despite numerous approaches, achieving seamless imaging with CLEM remains a complex task. Exosomes, nanovesicles ranging from 30 to 150 nm in size, are enclosed by a lipid bilayer and released by various cell types. Visualizing exosomes poses difficulties due to their small size and minimal electric charge. However, imaging exosomes at high resolution offers a direct method to understand their morphology and functions. In this study, we evaluated exosome imaging with CLEM using a combination of confocal, transmission electron microscope, and scanning electron microscope (SEM). In addition, we conducted a comparative analysis of these two techniques, evaluating their suitability and efficiency in imaging nanoscale structures. In this study, we found that confocal-SEM correlation is more applicable for imaging exosomes. Moreover, we observed that exosomes were found in clusters in confocal-SEM correlation.

摘要

相关显微镜是一种复杂的成像技术,它结合了光学显微镜和电子显微镜,最常见的方法是将光学显微镜和电子显微镜结合在一起,称为相关光和电子显微镜 (CLEM)。虽然 CLEM 提供了对生物样本的全面观察,但由于每种技术涉及的过程明显不同,因此在样本制备方面提出了重大挑战。在这些方法之间取得平衡至关重要。尽管有许多方法,但实现 CLEM 的无缝成像仍然是一项复杂的任务。外泌体是一种大小在 30 到 150nm 之间的纳米囊泡,由脂质双层包裹,并由各种细胞类型释放。由于其体积小且电荷量极小,因此对外泌体进行成像具有一定难度。然而,对外泌体进行高分辨率成像提供了一种直接了解其形态和功能的方法。在这项研究中,我们使用共聚焦、透射电子显微镜和扫描电子显微镜 (SEM) 的组合评估了 CLEM 中的外泌体成像。此外,我们还对这两种技术进行了比较分析,评估了它们在成像纳米结构方面的适用性和效率。在这项研究中,我们发现共聚焦-SEM 相关性更适用于外泌体成像。此外,我们观察到在共聚焦-SEM 相关性中,外泌体以簇的形式存在。

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