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结合样本扩展和光片显微镜技术用于病毒感染细胞的超分辨率三维成像。

Combining sample expansion and light sheet microscopy for the volumetric imaging of virus-infected cells with super-resolution.

作者信息

Mascheroni Luca, Scherer Katharina M, Manton James D, Ward Edward, Dibben Oliver, Kaminski Clemens F

机构信息

Department of Chemical Engineering and Biotechnology, University of Cambridge, Cambridge, UK.

These authors contributed equally.

出版信息

Biomed Opt Express. 2020 Aug 14;11(9):5032-5044. doi: 10.1364/BOE.399404. eCollection 2020 Sep 1.

Abstract

Expansion microscopy is a sample preparation technique that enables the optical imaging of biological specimens at super-resolution owing to their physical magnification, which is achieved through water-absorbing polymers. The technique uses readily available chemicals and does not require sophisticated equipment, thus offering super-resolution to laboratories that are not microscopy-specialised. Here we present a protocol combining sample expansion with light sheet microscopy to generate high-contrast, high-resolution 3D reconstructions of whole virus-infected cells. The results are superior to those achievable with comparable imaging modalities and reveal details of the infection cycle that are not discernible before expansion. An image resolution of approximately 95 nm could be achieved in samples labelled in 3 colours. We resolve that the viral nucleoprotein is accumulated at the membrane of vesicular structures within the cell cytoplasm and how these vesicles are positioned relative to cellular structures. We provide detailed guidance and a video protocol for the optimal application of the method and demonstrate its potential to study virus-host cell interactions.

摘要

扩张显微镜技术是一种样本制备技术,由于通过吸水聚合物实现了物理放大,从而能够对生物标本进行超分辨率光学成像。该技术使用易于获得的化学物质,不需要复杂的设备,因此为非专业显微镜实验室提供了超分辨率成像。在这里,我们展示了一种将样本扩张与光片显微镜相结合的方案,以生成全病毒感染细胞的高对比度、高分辨率三维重建图像。结果优于使用类似成像方式所能获得的结果,并揭示了扩张前无法辨别的感染周期细节。在三色标记的样本中可以实现约95纳米的图像分辨率。我们解析了病毒核蛋白在细胞质内囊泡结构膜上的积累情况以及这些囊泡相对于细胞结构的定位方式。我们为该方法的最佳应用提供了详细指导和视频方案,并展示了其在研究病毒-宿主细胞相互作用方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dadf/7510880/e43be658e3f8/boe-11-9-5032-g001.jpg

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