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High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System
3D imaging in animal models, during development or in adults, facilitates the identification of structural morphological changes that cannot be achieved with traditional 2D histological staining. Through the reconstruction of whole embryos or a region-of-interest, specific changes are better delimit...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8301480/ https://www.ncbi.nlm.nih.gov/pubmed/34356832 http://dx.doi.org/10.3390/biomedicines9070767 |
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author | Wendling, Olivia Hentsch, Didier Jacobs, Hugues Lemercier, Nicolas Taubert, Serge Pertuy, Fabien Vonesch, Jean-Luc Sorg, Tania Di Michele, Michela Le Cam, Laurent Rosahl, Thomas Carballo-Jane, Ester Liu, Mindy Mu, James Mark, Manuel Herault, Yann |
author_facet | Wendling, Olivia Hentsch, Didier Jacobs, Hugues Lemercier, Nicolas Taubert, Serge Pertuy, Fabien Vonesch, Jean-Luc Sorg, Tania Di Michele, Michela Le Cam, Laurent Rosahl, Thomas Carballo-Jane, Ester Liu, Mindy Mu, James Mark, Manuel Herault, Yann |
author_sort | Wendling, Olivia |
collection | PubMed |
description | 3D imaging in animal models, during development or in adults, facilitates the identification of structural morphological changes that cannot be achieved with traditional 2D histological staining. Through the reconstruction of whole embryos or a region-of-interest, specific changes are better delimited and can be easily quantified. We focused here on high-resolution episcopic microscopy (HREM), and its potential for visualizing and quantifying the organ systems of normal and genetically altered embryos and adult organisms. Although the technique is based on episcopic images, these are of high resolution and are close to histological quality. The images reflect the tissue structure and densities revealed by histology, albeit in a grayscale color map. HREM technology permits researchers to take advantage of serial 2D aligned stacks of images to perform 3D reconstructions. Three-dimensional visualization allows for an appreciation of topology and morphology that is difficult to achieve with classical histological studies. The nature of the data lends itself to novel forms of computational analysis that permit the accurate quantitation and comparison of individual embryos in a manner that is impossible with histology. Here, we have developed a new HREM prototype consisting of the assembly of a Leica Biosystems Nanocut rotary microtome with optics and a camera. We describe some examples of applications in the prenatal and adult lifestage of the mouse to show the added value of HREM for phenotyping experimental cohorts to compare and quantify structure volumes. At prenatal stages, segmentations and 3D reconstructions allowed the quantification of neural tissue and ventricular system volumes of normal brains at E14.5 and E16.5 stages. 3D representations of normal cranial and peripheric nerves at E15.5 and of the normal urogenital system from stages E11.5 to E14.5 were also performed. We also present a methodology to quantify the volume of the atherosclerotic plaques of ApoE(tm1Unc/tm1Unc) mutant mice and illustrate a 3D reconstruction of knee ligaments in adult mice. |
format | Online Article Text |
id | pubmed-8301480 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-83014802021-07-24 High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System Wendling, Olivia Hentsch, Didier Jacobs, Hugues Lemercier, Nicolas Taubert, Serge Pertuy, Fabien Vonesch, Jean-Luc Sorg, Tania Di Michele, Michela Le Cam, Laurent Rosahl, Thomas Carballo-Jane, Ester Liu, Mindy Mu, James Mark, Manuel Herault, Yann Biomedicines Article 3D imaging in animal models, during development or in adults, facilitates the identification of structural morphological changes that cannot be achieved with traditional 2D histological staining. Through the reconstruction of whole embryos or a region-of-interest, specific changes are better delimited and can be easily quantified. We focused here on high-resolution episcopic microscopy (HREM), and its potential for visualizing and quantifying the organ systems of normal and genetically altered embryos and adult organisms. Although the technique is based on episcopic images, these are of high resolution and are close to histological quality. The images reflect the tissue structure and densities revealed by histology, albeit in a grayscale color map. HREM technology permits researchers to take advantage of serial 2D aligned stacks of images to perform 3D reconstructions. Three-dimensional visualization allows for an appreciation of topology and morphology that is difficult to achieve with classical histological studies. The nature of the data lends itself to novel forms of computational analysis that permit the accurate quantitation and comparison of individual embryos in a manner that is impossible with histology. Here, we have developed a new HREM prototype consisting of the assembly of a Leica Biosystems Nanocut rotary microtome with optics and a camera. We describe some examples of applications in the prenatal and adult lifestage of the mouse to show the added value of HREM for phenotyping experimental cohorts to compare and quantify structure volumes. At prenatal stages, segmentations and 3D reconstructions allowed the quantification of neural tissue and ventricular system volumes of normal brains at E14.5 and E16.5 stages. 3D representations of normal cranial and peripheric nerves at E15.5 and of the normal urogenital system from stages E11.5 to E14.5 were also performed. We also present a methodology to quantify the volume of the atherosclerotic plaques of ApoE(tm1Unc/tm1Unc) mutant mice and illustrate a 3D reconstruction of knee ligaments in adult mice. MDPI 2021-07-01 /pmc/articles/PMC8301480/ /pubmed/34356832 http://dx.doi.org/10.3390/biomedicines9070767 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Wendling, Olivia Hentsch, Didier Jacobs, Hugues Lemercier, Nicolas Taubert, Serge Pertuy, Fabien Vonesch, Jean-Luc Sorg, Tania Di Michele, Michela Le Cam, Laurent Rosahl, Thomas Carballo-Jane, Ester Liu, Mindy Mu, James Mark, Manuel Herault, Yann High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System |
title | High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System |
title_full | High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System |
title_fullStr | High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System |
title_full_unstemmed | High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System |
title_short | High Resolution Episcopic Microscopy for Qualitative and Quantitative Data in Phenotyping Altered Embryos and Adult Mice Using the New “Histo3D” System |
title_sort | high resolution episcopic microscopy for qualitative and quantitative data in phenotyping altered embryos and adult mice using the new “histo3d” system |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8301480/ https://www.ncbi.nlm.nih.gov/pubmed/34356832 http://dx.doi.org/10.3390/biomedicines9070767 |
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