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Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA

Apoptosis is a feature of stroke and Alzheimer's disease (AD), yet there is no accepted method to detect or follow apoptosis in the brain in vivo. We developed a bifunctional tracer [(68)Ga]Ga-TC3-OGDOTA containing a cell-penetrating peptide separated from fluorescent Oregon Green and (68)Ga-bo...

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Autores principales: Ostapchenko, Valeriy G., Snir, Jonatan, Suchy, Mojmir, Fan, Jue, Cobb, M. Rebecca, Chronik, Blaine A., Kovacs, Michael, Prado, Vania F., Hudson, Robert H. E., Pasternak, Stephen H., Prado, Marco A. M., Bartha, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6348924/
https://www.ncbi.nlm.nih.gov/pubmed/30755766
http://dx.doi.org/10.1155/2019/6403274
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author Ostapchenko, Valeriy G.
Snir, Jonatan
Suchy, Mojmir
Fan, Jue
Cobb, M. Rebecca
Chronik, Blaine A.
Kovacs, Michael
Prado, Vania F.
Hudson, Robert H. E.
Pasternak, Stephen H.
Prado, Marco A. M.
Bartha, Robert
author_facet Ostapchenko, Valeriy G.
Snir, Jonatan
Suchy, Mojmir
Fan, Jue
Cobb, M. Rebecca
Chronik, Blaine A.
Kovacs, Michael
Prado, Vania F.
Hudson, Robert H. E.
Pasternak, Stephen H.
Prado, Marco A. M.
Bartha, Robert
author_sort Ostapchenko, Valeriy G.
collection PubMed
description Apoptosis is a feature of stroke and Alzheimer's disease (AD), yet there is no accepted method to detect or follow apoptosis in the brain in vivo. We developed a bifunctional tracer [(68)Ga]Ga-TC3-OGDOTA containing a cell-penetrating peptide separated from fluorescent Oregon Green and (68)Ga-bound labels by the caspase-3 recognition peptide DEVD. We hypothesized that this design would allow [(68)Ga]Ga-TC3-OGDOTA to accumulate in apoptotic cells. In vitro, Ga-TC3-OGDOTA labeled apoptotic neurons following exposure to camptothecin, oxygen-glucose deprivation, and β-amyloid oligomers. In vivo, PET showed accumulation of [(68)Ga]Ga-TC3-OGDOTA in the brain of mouse models of stroke or AD. Optical clearing revealed colocalization of [(68)Ga]Ga-TC3-OGDOTA and cleaved caspase-3 in brain cells. In stroke, [(68)Ga]Ga-TC3-OGDOTA accumulated in neurons in the penumbra area, whereas in AD mice [(68)Ga]Ga-TC3-OGDOTA was found in single cells in the forebrain and diffusely around amyloid plaques. In summary, this bifunctional tracer is selectively associated with apoptotic cells in vitro and in vivo in brain disease models and represents a novel tool for apoptosis detection that can be used in neurodegenerative diseases.
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spelling pubmed-63489242019-02-12 Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA Ostapchenko, Valeriy G. Snir, Jonatan Suchy, Mojmir Fan, Jue Cobb, M. Rebecca Chronik, Blaine A. Kovacs, Michael Prado, Vania F. Hudson, Robert H. E. Pasternak, Stephen H. Prado, Marco A. M. Bartha, Robert Contrast Media Mol Imaging Research Article Apoptosis is a feature of stroke and Alzheimer's disease (AD), yet there is no accepted method to detect or follow apoptosis in the brain in vivo. We developed a bifunctional tracer [(68)Ga]Ga-TC3-OGDOTA containing a cell-penetrating peptide separated from fluorescent Oregon Green and (68)Ga-bound labels by the caspase-3 recognition peptide DEVD. We hypothesized that this design would allow [(68)Ga]Ga-TC3-OGDOTA to accumulate in apoptotic cells. In vitro, Ga-TC3-OGDOTA labeled apoptotic neurons following exposure to camptothecin, oxygen-glucose deprivation, and β-amyloid oligomers. In vivo, PET showed accumulation of [(68)Ga]Ga-TC3-OGDOTA in the brain of mouse models of stroke or AD. Optical clearing revealed colocalization of [(68)Ga]Ga-TC3-OGDOTA and cleaved caspase-3 in brain cells. In stroke, [(68)Ga]Ga-TC3-OGDOTA accumulated in neurons in the penumbra area, whereas in AD mice [(68)Ga]Ga-TC3-OGDOTA was found in single cells in the forebrain and diffusely around amyloid plaques. In summary, this bifunctional tracer is selectively associated with apoptotic cells in vitro and in vivo in brain disease models and represents a novel tool for apoptosis detection that can be used in neurodegenerative diseases. Hindawi 2019-01-14 /pmc/articles/PMC6348924/ /pubmed/30755766 http://dx.doi.org/10.1155/2019/6403274 Text en Copyright © 2019 Valeriy G. Ostapchenko et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ostapchenko, Valeriy G.
Snir, Jonatan
Suchy, Mojmir
Fan, Jue
Cobb, M. Rebecca
Chronik, Blaine A.
Kovacs, Michael
Prado, Vania F.
Hudson, Robert H. E.
Pasternak, Stephen H.
Prado, Marco A. M.
Bartha, Robert
Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA
title Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA
title_full Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA
title_fullStr Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA
title_full_unstemmed Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA
title_short Detection of Active Caspase-3 in Mouse Models of Stroke and Alzheimer's Disease with a Novel Dual Positron Emission Tomography/Fluorescent Tracer [(68)Ga]Ga-TC3-OGDOTA
title_sort detection of active caspase-3 in mouse models of stroke and alzheimer's disease with a novel dual positron emission tomography/fluorescent tracer [(68)ga]ga-tc3-ogdota
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6348924/
https://www.ncbi.nlm.nih.gov/pubmed/30755766
http://dx.doi.org/10.1155/2019/6403274
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