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3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway

Imaging of biological matter across resolution scales entails the challenge of preserving the direct and unambiguous correlation of subject features from the macroscopic to the microscopic level. Here, we present a correlative imaging platform developed specifically for imaging cells in 3D under cry...

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Autores principales: Kounatidis, Ilias, Stanifer, Megan L., Phillips, Michael A., Paul-Gilloteaux, Perrine, Heiligenstein, Xavier, Wang, Hongchang, Okolo, Chidinma A., Fish, Thomas M., Spink, Matthew C., Stuart, David I., Davis, Ilan, Boulant, Steeve, Grimes, Jonathan M., Dobbie, Ian M., Harkiolaki, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7391008/
https://www.ncbi.nlm.nih.gov/pubmed/32610083
http://dx.doi.org/10.1016/j.cell.2020.05.051
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author Kounatidis, Ilias
Stanifer, Megan L.
Phillips, Michael A.
Paul-Gilloteaux, Perrine
Heiligenstein, Xavier
Wang, Hongchang
Okolo, Chidinma A.
Fish, Thomas M.
Spink, Matthew C.
Stuart, David I.
Davis, Ilan
Boulant, Steeve
Grimes, Jonathan M.
Dobbie, Ian M.
Harkiolaki, Maria
author_facet Kounatidis, Ilias
Stanifer, Megan L.
Phillips, Michael A.
Paul-Gilloteaux, Perrine
Heiligenstein, Xavier
Wang, Hongchang
Okolo, Chidinma A.
Fish, Thomas M.
Spink, Matthew C.
Stuart, David I.
Davis, Ilan
Boulant, Steeve
Grimes, Jonathan M.
Dobbie, Ian M.
Harkiolaki, Maria
author_sort Kounatidis, Ilias
collection PubMed
description Imaging of biological matter across resolution scales entails the challenge of preserving the direct and unambiguous correlation of subject features from the macroscopic to the microscopic level. Here, we present a correlative imaging platform developed specifically for imaging cells in 3D under cryogenic conditions by using X-rays and visible light. Rapid cryo-preservation of biological specimens is the current gold standard in sample preparation for ultrastructural analysis in X-ray imaging. However, cryogenic fluorescence localization methods are, in their majority, diffraction-limited and fail to deliver matching resolution. We addressed this technological gap by developing an integrated, user-friendly platform for 3D correlative imaging of cells in vitreous ice by using super-resolution structured illumination microscopy in conjunction with soft X-ray tomography. The power of this approach is demonstrated by studying the process of reovirus release from intracellular vesicles during the early stages of infection and identifying intracellular virus-induced structures.
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spelling pubmed-73910082020-08-04 3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway Kounatidis, Ilias Stanifer, Megan L. Phillips, Michael A. Paul-Gilloteaux, Perrine Heiligenstein, Xavier Wang, Hongchang Okolo, Chidinma A. Fish, Thomas M. Spink, Matthew C. Stuart, David I. Davis, Ilan Boulant, Steeve Grimes, Jonathan M. Dobbie, Ian M. Harkiolaki, Maria Cell Article Imaging of biological matter across resolution scales entails the challenge of preserving the direct and unambiguous correlation of subject features from the macroscopic to the microscopic level. Here, we present a correlative imaging platform developed specifically for imaging cells in 3D under cryogenic conditions by using X-rays and visible light. Rapid cryo-preservation of biological specimens is the current gold standard in sample preparation for ultrastructural analysis in X-ray imaging. However, cryogenic fluorescence localization methods are, in their majority, diffraction-limited and fail to deliver matching resolution. We addressed this technological gap by developing an integrated, user-friendly platform for 3D correlative imaging of cells in vitreous ice by using super-resolution structured illumination microscopy in conjunction with soft X-ray tomography. The power of this approach is demonstrated by studying the process of reovirus release from intracellular vesicles during the early stages of infection and identifying intracellular virus-induced structures. Cell Press 2020-07-23 /pmc/articles/PMC7391008/ /pubmed/32610083 http://dx.doi.org/10.1016/j.cell.2020.05.051 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kounatidis, Ilias
Stanifer, Megan L.
Phillips, Michael A.
Paul-Gilloteaux, Perrine
Heiligenstein, Xavier
Wang, Hongchang
Okolo, Chidinma A.
Fish, Thomas M.
Spink, Matthew C.
Stuart, David I.
Davis, Ilan
Boulant, Steeve
Grimes, Jonathan M.
Dobbie, Ian M.
Harkiolaki, Maria
3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway
title 3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway
title_full 3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway
title_fullStr 3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway
title_full_unstemmed 3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway
title_short 3D Correlative Cryo-Structured Illumination Fluorescence and Soft X-ray Microscopy Elucidates Reovirus Intracellular Release Pathway
title_sort 3d correlative cryo-structured illumination fluorescence and soft x-ray microscopy elucidates reovirus intracellular release pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7391008/
https://www.ncbi.nlm.nih.gov/pubmed/32610083
http://dx.doi.org/10.1016/j.cell.2020.05.051
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