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Altered branching patterns of Purkinje cells in mouse model for cortical development disorder

Disrupted cortical cytoarchitecture in cerebellum is a typical pathology in reeler. Particularly interesting are structural problems at the cellular level: dendritic morphology has important functional implication in signal processing. Here we describe a combinatorial imaging method of synchrotron X...

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Autores principales: Kim, Jinkyung, Kwon, Namseop, Chang, Soeun, Kim, Kyong-Tai, Lee, Dongmyeong, Kim, Seunghwan, Yun, So Jeong, Hwang, Daehee, Kim, Jee Woong, Hwu, Yeukuang, Margaritondo, Giorgio, Je, Jung Ho, Rhyu, Im Joo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3216603/
https://www.ncbi.nlm.nih.gov/pubmed/22355639
http://dx.doi.org/10.1038/srep00122
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author Kim, Jinkyung
Kwon, Namseop
Chang, Soeun
Kim, Kyong-Tai
Lee, Dongmyeong
Kim, Seunghwan
Yun, So Jeong
Hwang, Daehee
Kim, Jee Woong
Hwu, Yeukuang
Margaritondo, Giorgio
Je, Jung Ho
Rhyu, Im Joo
author_facet Kim, Jinkyung
Kwon, Namseop
Chang, Soeun
Kim, Kyong-Tai
Lee, Dongmyeong
Kim, Seunghwan
Yun, So Jeong
Hwang, Daehee
Kim, Jee Woong
Hwu, Yeukuang
Margaritondo, Giorgio
Je, Jung Ho
Rhyu, Im Joo
author_sort Kim, Jinkyung
collection PubMed
description Disrupted cortical cytoarchitecture in cerebellum is a typical pathology in reeler. Particularly interesting are structural problems at the cellular level: dendritic morphology has important functional implication in signal processing. Here we describe a combinatorial imaging method of synchrotron X-ray microtomography with Golgi staining, which can deliver 3-dimensional(3-D) micro-architectures of Purkinje cell(PC) dendrites, and give access to quantitative information in 3-D geometry. In reeler, we visualized in 3-D geometry the shape alterations of planar PC dendrites (i.e., abnormal 3-D arborization). Despite these alterations, the 3-D quantitative analysis of the branching patterns showed no significant changes of the 77 ± 8° branch angle, whereas the branch segment length strongly increased with large fluctuations, comparing to control. The 3-D fractal dimension of the PCs decreased from 1.723 to 1.254, indicating a significant reduction of dendritic complexity. This study provides insights into etiologies and further potential treatment options for lissencephaly and various neurodevelopmental disorders.
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spelling pubmed-32166032011-12-22 Altered branching patterns of Purkinje cells in mouse model for cortical development disorder Kim, Jinkyung Kwon, Namseop Chang, Soeun Kim, Kyong-Tai Lee, Dongmyeong Kim, Seunghwan Yun, So Jeong Hwang, Daehee Kim, Jee Woong Hwu, Yeukuang Margaritondo, Giorgio Je, Jung Ho Rhyu, Im Joo Sci Rep Article Disrupted cortical cytoarchitecture in cerebellum is a typical pathology in reeler. Particularly interesting are structural problems at the cellular level: dendritic morphology has important functional implication in signal processing. Here we describe a combinatorial imaging method of synchrotron X-ray microtomography with Golgi staining, which can deliver 3-dimensional(3-D) micro-architectures of Purkinje cell(PC) dendrites, and give access to quantitative information in 3-D geometry. In reeler, we visualized in 3-D geometry the shape alterations of planar PC dendrites (i.e., abnormal 3-D arborization). Despite these alterations, the 3-D quantitative analysis of the branching patterns showed no significant changes of the 77 ± 8° branch angle, whereas the branch segment length strongly increased with large fluctuations, comparing to control. The 3-D fractal dimension of the PCs decreased from 1.723 to 1.254, indicating a significant reduction of dendritic complexity. This study provides insights into etiologies and further potential treatment options for lissencephaly and various neurodevelopmental disorders. Nature Publishing Group 2011-10-18 /pmc/articles/PMC3216603/ /pubmed/22355639 http://dx.doi.org/10.1038/srep00122 Text en Copyright © 2011, Macmillan Publishers Limited. All rights reserved http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareALike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Article
Kim, Jinkyung
Kwon, Namseop
Chang, Soeun
Kim, Kyong-Tai
Lee, Dongmyeong
Kim, Seunghwan
Yun, So Jeong
Hwang, Daehee
Kim, Jee Woong
Hwu, Yeukuang
Margaritondo, Giorgio
Je, Jung Ho
Rhyu, Im Joo
Altered branching patterns of Purkinje cells in mouse model for cortical development disorder
title Altered branching patterns of Purkinje cells in mouse model for cortical development disorder
title_full Altered branching patterns of Purkinje cells in mouse model for cortical development disorder
title_fullStr Altered branching patterns of Purkinje cells in mouse model for cortical development disorder
title_full_unstemmed Altered branching patterns of Purkinje cells in mouse model for cortical development disorder
title_short Altered branching patterns of Purkinje cells in mouse model for cortical development disorder
title_sort altered branching patterns of purkinje cells in mouse model for cortical development disorder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3216603/
https://www.ncbi.nlm.nih.gov/pubmed/22355639
http://dx.doi.org/10.1038/srep00122
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