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Early prediction of revascularisation by angiomotin-targeting positron emission tomography

This study aimed to develop a PET imaging agent of angiomotin (AMOT) expression, a potential biomarker of functional tissue regeneration in post-ischaemic conditions. Methods: Hindlimb ischaemia was induced by ligature and resection of the right femoral artery in mice, and clinical score and limb pe...

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Autores principales: Moyon, Anais, Garrigue, Philippe, Balasse, Laure, Fernandez, Samantha, Brige, Pauline, Nollet, Marie, Hache, Guillaume, Blot-Chabaud, Marcel, Dignat-George, Françoise, Guillet, Benjamin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6217063/
https://www.ncbi.nlm.nih.gov/pubmed/30429881
http://dx.doi.org/10.7150/thno.27728
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author Moyon, Anais
Garrigue, Philippe
Balasse, Laure
Fernandez, Samantha
Brige, Pauline
Nollet, Marie
Hache, Guillaume
Blot-Chabaud, Marcel
Dignat-George, Françoise
Guillet, Benjamin
author_facet Moyon, Anais
Garrigue, Philippe
Balasse, Laure
Fernandez, Samantha
Brige, Pauline
Nollet, Marie
Hache, Guillaume
Blot-Chabaud, Marcel
Dignat-George, Françoise
Guillet, Benjamin
author_sort Moyon, Anais
collection PubMed
description This study aimed to develop a PET imaging agent of angiomotin (AMOT) expression, a potential biomarker of functional tissue regeneration in post-ischaemic conditions. Methods: Hindlimb ischaemia was induced by ligature and resection of the right femoral artery in mice, and clinical score and limb perfusion were evaluated up to 30 days after surgery. AMOT expression was evaluated by histology and Western blot analysis. NODAGA-conjugates of AMOT ligand, sCD146, were designed, synthesised and radiolabelled with gallium-68. (68)Ga-sCD146 microPET/CT imaging was performed from day 1 to day 30 after ischaemia.( 68)Ga-sCD146 specificity for AMOT was evaluated by autoradiography. Results: Immunohistochemistry showed a significant endothelial overexpression of AMOT from day 5 up to day 10 in the ischaemic hindlimb. (68)Ga-sCD146 PET signal intensity correlated significantly with AMOT immunohistochemistry evaluation. (68)Ga-sCD146 PET imaging showed a significant uptake in the ischaemic hindlimb from day 2 to day 15, peaking on day 5 (ipsi/contralateral ratio = 2.4 ± 1.3, P = 0.0005) and significantly decreased after pharmacological blocking (62.57 ± 11% decrease in PET signal P = 0.032). Finally, we observed a significant correlation between day 5 (68)Ga-sCD146 PET signal intensity and clinical recovery (day 28) or hindlimb perfusion recovery (day 30). Conclusions: This work reports for the first time an early and sustained increase in AMOT expression after hindlimb ischaemia in mice. We therefore developed an AMOT-targeting imaging agent, (68)Ga-sCD146, and showed its specific uptake up to 21 days after ischaemic hindlimb using microPET imaging. Correlation of early post-ischaemic PET signal with both delayed perfusion recovery and clinical outcome allows us to postulate that (68)Ga-sCD146 represents a promising radiotracer for tissue angiogenesis assessment.
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spelling pubmed-62170632018-11-14 Early prediction of revascularisation by angiomotin-targeting positron emission tomography Moyon, Anais Garrigue, Philippe Balasse, Laure Fernandez, Samantha Brige, Pauline Nollet, Marie Hache, Guillaume Blot-Chabaud, Marcel Dignat-George, Françoise Guillet, Benjamin Theranostics Research Paper This study aimed to develop a PET imaging agent of angiomotin (AMOT) expression, a potential biomarker of functional tissue regeneration in post-ischaemic conditions. Methods: Hindlimb ischaemia was induced by ligature and resection of the right femoral artery in mice, and clinical score and limb perfusion were evaluated up to 30 days after surgery. AMOT expression was evaluated by histology and Western blot analysis. NODAGA-conjugates of AMOT ligand, sCD146, were designed, synthesised and radiolabelled with gallium-68. (68)Ga-sCD146 microPET/CT imaging was performed from day 1 to day 30 after ischaemia.( 68)Ga-sCD146 specificity for AMOT was evaluated by autoradiography. Results: Immunohistochemistry showed a significant endothelial overexpression of AMOT from day 5 up to day 10 in the ischaemic hindlimb. (68)Ga-sCD146 PET signal intensity correlated significantly with AMOT immunohistochemistry evaluation. (68)Ga-sCD146 PET imaging showed a significant uptake in the ischaemic hindlimb from day 2 to day 15, peaking on day 5 (ipsi/contralateral ratio = 2.4 ± 1.3, P = 0.0005) and significantly decreased after pharmacological blocking (62.57 ± 11% decrease in PET signal P = 0.032). Finally, we observed a significant correlation between day 5 (68)Ga-sCD146 PET signal intensity and clinical recovery (day 28) or hindlimb perfusion recovery (day 30). Conclusions: This work reports for the first time an early and sustained increase in AMOT expression after hindlimb ischaemia in mice. We therefore developed an AMOT-targeting imaging agent, (68)Ga-sCD146, and showed its specific uptake up to 21 days after ischaemic hindlimb using microPET imaging. Correlation of early post-ischaemic PET signal with both delayed perfusion recovery and clinical outcome allows us to postulate that (68)Ga-sCD146 represents a promising radiotracer for tissue angiogenesis assessment. Ivyspring International Publisher 2018-10-05 /pmc/articles/PMC6217063/ /pubmed/30429881 http://dx.doi.org/10.7150/thno.27728 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Moyon, Anais
Garrigue, Philippe
Balasse, Laure
Fernandez, Samantha
Brige, Pauline
Nollet, Marie
Hache, Guillaume
Blot-Chabaud, Marcel
Dignat-George, Françoise
Guillet, Benjamin
Early prediction of revascularisation by angiomotin-targeting positron emission tomography
title Early prediction of revascularisation by angiomotin-targeting positron emission tomography
title_full Early prediction of revascularisation by angiomotin-targeting positron emission tomography
title_fullStr Early prediction of revascularisation by angiomotin-targeting positron emission tomography
title_full_unstemmed Early prediction of revascularisation by angiomotin-targeting positron emission tomography
title_short Early prediction of revascularisation by angiomotin-targeting positron emission tomography
title_sort early prediction of revascularisation by angiomotin-targeting positron emission tomography
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6217063/
https://www.ncbi.nlm.nih.gov/pubmed/30429881
http://dx.doi.org/10.7150/thno.27728
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