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Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids

Nowadays, three dimensional (3D) cell cultures are widely used in the biological laboratories and several optical clearing approaches have been proposed to visualize individual cells in the deepest layers of cancer multicellular spheroids. However, defining the most appropriate clearing approach for...

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Autores principales: Diosdi, Akos, Hirling, Dominik, Kovacs, Maria, Toth, Timea, Harmati, Maria, Koos, Krisztian, Buzas, Krisztina, Piccinini, Filippo, Horvath, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8134717/
https://www.ncbi.nlm.nih.gov/pubmed/34026984
http://dx.doi.org/10.1016/j.dib.2021.107090
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author Diosdi, Akos
Hirling, Dominik
Kovacs, Maria
Toth, Timea
Harmati, Maria
Koos, Krisztian
Buzas, Krisztina
Piccinini, Filippo
Horvath, Peter
author_facet Diosdi, Akos
Hirling, Dominik
Kovacs, Maria
Toth, Timea
Harmati, Maria
Koos, Krisztian
Buzas, Krisztina
Piccinini, Filippo
Horvath, Peter
author_sort Diosdi, Akos
collection PubMed
description Nowadays, three dimensional (3D) cell cultures are widely used in the biological laboratories and several optical clearing approaches have been proposed to visualize individual cells in the deepest layers of cancer multicellular spheroids. However, defining the most appropriate clearing approach for the different cell lines is an open issue due to the lack of a gold standard quantitative metric. In this article, we describe and share a single-cell resolution 3D image dataset of human carcinoma spheroids imaged using a light-sheet fluorescence microscope. The dataset contains 90 multicellular cancer spheroids derived from 3 cell lines (i.e. T-47D, 5-8F, and Huh-7D12) and cleared with 5 different protocols, precisely Clear(T), Clear(T2), CUBIC, ScaleA2, and Sucrose. To evaluate image quality and light penetration depth of the cleared 3D samples, all the spheroids have been imaged under the same experimental conditions, labelling the nuclei with the DRAQ5 stain and using a Leica SP8 Digital LightSheet microscope. The clearing quality of this dataset was annotated by 10 independent experts and thus allows microscopy users to qualitatively compare the effects of different optical clearing protocols on different cell lines. It is also an optimal testbed to quantitatively assess different computational metrics evaluating the image quality in the deepest layers of the spheroids.
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spelling pubmed-81347172021-05-21 Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids Diosdi, Akos Hirling, Dominik Kovacs, Maria Toth, Timea Harmati, Maria Koos, Krisztian Buzas, Krisztina Piccinini, Filippo Horvath, Peter Data Brief Data Article Nowadays, three dimensional (3D) cell cultures are widely used in the biological laboratories and several optical clearing approaches have been proposed to visualize individual cells in the deepest layers of cancer multicellular spheroids. However, defining the most appropriate clearing approach for the different cell lines is an open issue due to the lack of a gold standard quantitative metric. In this article, we describe and share a single-cell resolution 3D image dataset of human carcinoma spheroids imaged using a light-sheet fluorescence microscope. The dataset contains 90 multicellular cancer spheroids derived from 3 cell lines (i.e. T-47D, 5-8F, and Huh-7D12) and cleared with 5 different protocols, precisely Clear(T), Clear(T2), CUBIC, ScaleA2, and Sucrose. To evaluate image quality and light penetration depth of the cleared 3D samples, all the spheroids have been imaged under the same experimental conditions, labelling the nuclei with the DRAQ5 stain and using a Leica SP8 Digital LightSheet microscope. The clearing quality of this dataset was annotated by 10 independent experts and thus allows microscopy users to qualitatively compare the effects of different optical clearing protocols on different cell lines. It is also an optimal testbed to quantitatively assess different computational metrics evaluating the image quality in the deepest layers of the spheroids. Elsevier 2021-04-23 /pmc/articles/PMC8134717/ /pubmed/34026984 http://dx.doi.org/10.1016/j.dib.2021.107090 Text en © 2021 The Author(s). Published by Elsevier Inc. https://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 Data Article
Diosdi, Akos
Hirling, Dominik
Kovacs, Maria
Toth, Timea
Harmati, Maria
Koos, Krisztian
Buzas, Krisztina
Piccinini, Filippo
Horvath, Peter
Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids
title Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids
title_full Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids
title_fullStr Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids
title_full_unstemmed Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids
title_short Cell lines and clearing approaches: a single-cell level 3D light-sheet fluorescence microscopy dataset of multicellular spheroids
title_sort cell lines and clearing approaches: a single-cell level 3d light-sheet fluorescence microscopy dataset of multicellular spheroids
topic Data Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8134717/
https://www.ncbi.nlm.nih.gov/pubmed/34026984
http://dx.doi.org/10.1016/j.dib.2021.107090
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