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Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations

Extracellular vesicles (EVs) are nanoparticles (30 to 1000 nm in diameter) surrounded by a lipid-bilayer which carry bioactive molecules between local and distal cells and participate in intercellular communication. Because of their small size and heterogenous nature they are challenging to characte...

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Autores principales: Bağcı, Canan, Sever-Bahcekapili, Melike, Belder, Nevin, Bennett, Adam P. S., Erdener, Şefik Evren, Dalkara, Turgay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society of Photo-Optical Instrumentation Engineers 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8978261/
https://www.ncbi.nlm.nih.gov/pubmed/35386596
http://dx.doi.org/10.1117/1.NPh.9.2.021903
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author Bağcı, Canan
Sever-Bahcekapili, Melike
Belder, Nevin
Bennett, Adam P. S.
Erdener, Şefik Evren
Dalkara, Turgay
author_facet Bağcı, Canan
Sever-Bahcekapili, Melike
Belder, Nevin
Bennett, Adam P. S.
Erdener, Şefik Evren
Dalkara, Turgay
author_sort Bağcı, Canan
collection PubMed
description Extracellular vesicles (EVs) are nanoparticles (30 to 1000 nm in diameter) surrounded by a lipid-bilayer which carry bioactive molecules between local and distal cells and participate in intercellular communication. Because of their small size and heterogenous nature they are challenging to characterize. Here, we discuss commonly used techniques that have been employed to yield information about EV size, concentration, mechanical properties, and protein content. These include dynamic light scattering, nanoparticle tracking analysis, flow cytometry, transmission electron microscopy, atomic force microscopy, western blotting, and optical methods including super-resolution microscopy. We also introduce an innovative technique for EV characterization which involves immobilizing EVs on a microscope slide before staining them with antibodies targeting EV proteins, then using the reflectance mode on a confocal microscope to locate the EV plane. By then switching to the microscope’s fluorescence mode, immunostained EVs bearing specific proteins can be identified and the heterogeneity of an EV preparation can be determined. This approach does not require specialist equipment beyond the confocal microscopes that are available in many cell biology laboratories, and because of this, it could become a complementary approach alongside the aforementioned techniques to identify molecular heterogeneity in an EV preparation before subsequent analysis requiring specialist apparatus.
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spelling pubmed-89782612022-04-05 Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations Bağcı, Canan Sever-Bahcekapili, Melike Belder, Nevin Bennett, Adam P. S. Erdener, Şefik Evren Dalkara, Turgay Neurophotonics Special Section on Imaging Neuroimmune, Neuroglial, and Neurovascular Interfaces (Part I) Extracellular vesicles (EVs) are nanoparticles (30 to 1000 nm in diameter) surrounded by a lipid-bilayer which carry bioactive molecules between local and distal cells and participate in intercellular communication. Because of their small size and heterogenous nature they are challenging to characterize. Here, we discuss commonly used techniques that have been employed to yield information about EV size, concentration, mechanical properties, and protein content. These include dynamic light scattering, nanoparticle tracking analysis, flow cytometry, transmission electron microscopy, atomic force microscopy, western blotting, and optical methods including super-resolution microscopy. We also introduce an innovative technique for EV characterization which involves immobilizing EVs on a microscope slide before staining them with antibodies targeting EV proteins, then using the reflectance mode on a confocal microscope to locate the EV plane. By then switching to the microscope’s fluorescence mode, immunostained EVs bearing specific proteins can be identified and the heterogeneity of an EV preparation can be determined. This approach does not require specialist equipment beyond the confocal microscopes that are available in many cell biology laboratories, and because of this, it could become a complementary approach alongside the aforementioned techniques to identify molecular heterogeneity in an EV preparation before subsequent analysis requiring specialist apparatus. Society of Photo-Optical Instrumentation Engineers 2022-04-04 2022-04 /pmc/articles/PMC8978261/ /pubmed/35386596 http://dx.doi.org/10.1117/1.NPh.9.2.021903 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/Published by SPIE under a Creative Commons Attribution 4.0 International License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
spellingShingle Special Section on Imaging Neuroimmune, Neuroglial, and Neurovascular Interfaces (Part I)
Bağcı, Canan
Sever-Bahcekapili, Melike
Belder, Nevin
Bennett, Adam P. S.
Erdener, Şefik Evren
Dalkara, Turgay
Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations
title Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations
title_full Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations
title_fullStr Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations
title_full_unstemmed Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations
title_short Overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations
title_sort overview of extracellular vesicle characterization techniques and introduction to combined reflectance and fluorescence confocal microscopy to distinguish extracellular vesicle subpopulations
topic Special Section on Imaging Neuroimmune, Neuroglial, and Neurovascular Interfaces (Part I)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8978261/
https://www.ncbi.nlm.nih.gov/pubmed/35386596
http://dx.doi.org/10.1117/1.NPh.9.2.021903
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