Cargando…

A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET

Duchenne muscular dystrophy (DMD) is a neuromuscular disorder caused by dystrophin loss—notably within muscles and the central neurons system. DMD presents as cognitive weakness, progressive skeletal and cardiac muscle degeneration until pre-mature death from cardiac or respiratory failure. Innovati...

Descripción completa

Detalles Bibliográficos
Autores principales: Tang, Joanne M., McClennan, Andrew, Liu, Linshan, Hadway, Jennifer, Ronald, John A., Hicks, Justin W., Hoffman, Lisa, Anazodo, Udunna C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10144317/
https://www.ncbi.nlm.nih.gov/pubmed/37108685
http://dx.doi.org/10.3390/ijms24087522
_version_ 1785034071603150848
author Tang, Joanne M.
McClennan, Andrew
Liu, Linshan
Hadway, Jennifer
Ronald, John A.
Hicks, Justin W.
Hoffman, Lisa
Anazodo, Udunna C.
author_facet Tang, Joanne M.
McClennan, Andrew
Liu, Linshan
Hadway, Jennifer
Ronald, John A.
Hicks, Justin W.
Hoffman, Lisa
Anazodo, Udunna C.
author_sort Tang, Joanne M.
collection PubMed
description Duchenne muscular dystrophy (DMD) is a neuromuscular disorder caused by dystrophin loss—notably within muscles and the central neurons system. DMD presents as cognitive weakness, progressive skeletal and cardiac muscle degeneration until pre-mature death from cardiac or respiratory failure. Innovative therapies have improved life expectancy; however, this is accompanied by increased late-onset heart failure and emergent cognitive degeneration. Thus, better assessment of dystrophic heart and brain pathophysiology is needed. Chronic inflammation is strongly associated with skeletal and cardiac muscle degeneration; however, neuroinflammation’s role is largely unknown in DMD despite being prevalent in other neurodegenerative diseases. Here, we present an inflammatory marker translocator protein (TSPO) positron emission tomography (PET) protocol for in vivo concomitant assessment of immune cell response in hearts and brains of a dystrophin-deficient mouse model [mdx:utrn(+/−)]. Preliminary analysis of whole-body PET imaging using the TSPO radiotracer, [(18)F]FEPPA in four mdx:utrn(+/−) and six wildtype mice are presented with ex vivo TSPO-immunofluorescence tissue staining. The mdx:utrn(+/−) mice showed significant elevations in heart and brain [(18)F]FEPPA activity, which correlated with increased ex vivo fluorescence intensity, highlighting the potential of TSPO-PET to simultaneously assess presence of cardiac and neuroinflammation in dystrophic heart and brain, as well as in several organs within a DMD model.
format Online
Article
Text
id pubmed-10144317
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101443172023-04-29 A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET Tang, Joanne M. McClennan, Andrew Liu, Linshan Hadway, Jennifer Ronald, John A. Hicks, Justin W. Hoffman, Lisa Anazodo, Udunna C. Int J Mol Sci Article Duchenne muscular dystrophy (DMD) is a neuromuscular disorder caused by dystrophin loss—notably within muscles and the central neurons system. DMD presents as cognitive weakness, progressive skeletal and cardiac muscle degeneration until pre-mature death from cardiac or respiratory failure. Innovative therapies have improved life expectancy; however, this is accompanied by increased late-onset heart failure and emergent cognitive degeneration. Thus, better assessment of dystrophic heart and brain pathophysiology is needed. Chronic inflammation is strongly associated with skeletal and cardiac muscle degeneration; however, neuroinflammation’s role is largely unknown in DMD despite being prevalent in other neurodegenerative diseases. Here, we present an inflammatory marker translocator protein (TSPO) positron emission tomography (PET) protocol for in vivo concomitant assessment of immune cell response in hearts and brains of a dystrophin-deficient mouse model [mdx:utrn(+/−)]. Preliminary analysis of whole-body PET imaging using the TSPO radiotracer, [(18)F]FEPPA in four mdx:utrn(+/−) and six wildtype mice are presented with ex vivo TSPO-immunofluorescence tissue staining. The mdx:utrn(+/−) mice showed significant elevations in heart and brain [(18)F]FEPPA activity, which correlated with increased ex vivo fluorescence intensity, highlighting the potential of TSPO-PET to simultaneously assess presence of cardiac and neuroinflammation in dystrophic heart and brain, as well as in several organs within a DMD model. MDPI 2023-04-19 /pmc/articles/PMC10144317/ /pubmed/37108685 http://dx.doi.org/10.3390/ijms24087522 Text en © 2023 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
Tang, Joanne M.
McClennan, Andrew
Liu, Linshan
Hadway, Jennifer
Ronald, John A.
Hicks, Justin W.
Hoffman, Lisa
Anazodo, Udunna C.
A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET
title A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET
title_full A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET
title_fullStr A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET
title_full_unstemmed A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET
title_short A Protocol for Simultaneous In Vivo Imaging of Cardiac and Neuroinflammation in Dystrophin-Deficient MDX Mice Using [(18)F]FEPPA PET
title_sort protocol for simultaneous in vivo imaging of cardiac and neuroinflammation in dystrophin-deficient mdx mice using [(18)f]feppa pet
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10144317/
https://www.ncbi.nlm.nih.gov/pubmed/37108685
http://dx.doi.org/10.3390/ijms24087522
work_keys_str_mv AT tangjoannem aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT mcclennanandrew aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT liulinshan aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT hadwayjennifer aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT ronaldjohna aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT hicksjustinw aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT hoffmanlisa aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT anazodoudunnac aprotocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT tangjoannem protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT mcclennanandrew protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT liulinshan protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT hadwayjennifer protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT ronaldjohna protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT hicksjustinw protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT hoffmanlisa protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet
AT anazodoudunnac protocolforsimultaneousinvivoimagingofcardiacandneuroinflammationindystrophindeficientmdxmiceusing18ffeppapet