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[(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations

BACKGROUND: Alzheimer’s disease (AD) is the most common form of dementia. Neuroimaging methods have widened the horizons for AD diagnosis and therapy. The goals of this work are the synthesis of 2-(3-fluoropropyl)-6-methoxynaphthalene (5) and its [(18)F]-radiolabeled counterpart ([(18)F]Amylovis), t...

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Autores principales: Rivera-Marrero, Suchitil, Fernández-Maza, Laura, León-Chaviano, Samila, Sablón-Carrazana, Marquiza, Bencomo-Martínez, Alberto, Perera-Pintado, Alejandro, Prats-Capote, Anais, Zoppolo, Florencia, Kreimerman, Ingrid, Pardo, Tania, Reyes, Laura, Balcerzyk, Marcin, Dubed-Bandomo, Geyla, Mercerón-Martínez, Daymara, Espinosa-Rodríguez, Luis A., Engler, Henry, Savio, Eduardo, Rodríguez-Tanty, Chryslaine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bentham Science Publishers 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6463402/
https://www.ncbi.nlm.nih.gov/pubmed/30605068
http://dx.doi.org/10.2174/1874471012666190102165053
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author Rivera-Marrero, Suchitil
Fernández-Maza, Laura
León-Chaviano, Samila
Sablón-Carrazana, Marquiza
Bencomo-Martínez, Alberto
Perera-Pintado, Alejandro
Prats-Capote, Anais
Zoppolo, Florencia
Kreimerman, Ingrid
Pardo, Tania
Reyes, Laura
Balcerzyk, Marcin
Dubed-Bandomo, Geyla
Mercerón-Martínez, Daymara
Espinosa-Rodríguez, Luis A.
Engler, Henry
Savio, Eduardo
Rodríguez-Tanty, Chryslaine
author_facet Rivera-Marrero, Suchitil
Fernández-Maza, Laura
León-Chaviano, Samila
Sablón-Carrazana, Marquiza
Bencomo-Martínez, Alberto
Perera-Pintado, Alejandro
Prats-Capote, Anais
Zoppolo, Florencia
Kreimerman, Ingrid
Pardo, Tania
Reyes, Laura
Balcerzyk, Marcin
Dubed-Bandomo, Geyla
Mercerón-Martínez, Daymara
Espinosa-Rodríguez, Luis A.
Engler, Henry
Savio, Eduardo
Rodríguez-Tanty, Chryslaine
author_sort Rivera-Marrero, Suchitil
collection PubMed
description BACKGROUND: Alzheimer’s disease (AD) is the most common form of dementia. Neuroimaging methods have widened the horizons for AD diagnosis and therapy. The goals of this work are the synthesis of 2-(3-fluoropropyl)-6-methoxynaphthalene (5) and its [(18)F]-radiolabeled counterpart ([(18)F]Amylovis), the in silico and in vitro comparative evaluations of [(18)F]Amylovis and [(11)C]Pittsburg compound B (PIB) and the in vivo preclinical evaluation of [(18)F]Amylovis in transgenic and wild mice. METHODS: Iron-catalysis cross coupling reaction, followed by fluorination and radiofluorination steps were carried out to obtain 5 and (18)F-Amylovis. Protein/Aß plaques binding, biodistribution, PET/CT Imaging and immunohistochemical studies were conducted in healthy/transgenic mice. RESULTS: The synthesis of 5 was successful obtained. Comparative in silico studies predicting that 5 should have affinity to the Aβ-peptide, mainly through π-π interactions. According to a dynamic simula-tion study the ligand-Aβ peptide complexes are stable in simulation-time (ΔG = -5.31 kcal/mol). [(18)F]Amylovis was obtained with satisfactory yield, high radiochemical purity and specific activity. The [(18)F]Amylovis log P(oct/PBS) value suggests its potential ability for crossing the blood brain barrier (BBB). According to in vitro assays, [(18)F]Amylovis has an adequate stability in time. Higher affinity to Aβ plaques were found for [(18)F]Amylovis (K(d) 0.16 nmol/L) than PIB (K(d) 8.86 nmol/L) in brain serial sections of 3xTg-AD mice. Biodistribution in healthy mice showed that [(18)F]Amylovis crosses the BBB with rapid uptake (7%ID/g at 5 min) and good washout (0.11±0.03%ID/g at 60 min). Comparative PET dynamic studies of [(18)F]Amylovis in healthy and transgenic APPSwe/PS1dE9 mice, revealed a significant high uptake in the mice model. CONCLUSION: The in silico, in vitro and in vivo results justify that [(18)F]Amylovis should be studied as a promissory PET imaging agent to detect the presence of Aβ senile plaques.
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spelling pubmed-64634022019-05-01 [(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations Rivera-Marrero, Suchitil Fernández-Maza, Laura León-Chaviano, Samila Sablón-Carrazana, Marquiza Bencomo-Martínez, Alberto Perera-Pintado, Alejandro Prats-Capote, Anais Zoppolo, Florencia Kreimerman, Ingrid Pardo, Tania Reyes, Laura Balcerzyk, Marcin Dubed-Bandomo, Geyla Mercerón-Martínez, Daymara Espinosa-Rodríguez, Luis A. Engler, Henry Savio, Eduardo Rodríguez-Tanty, Chryslaine Curr Radiopharm Article BACKGROUND: Alzheimer’s disease (AD) is the most common form of dementia. Neuroimaging methods have widened the horizons for AD diagnosis and therapy. The goals of this work are the synthesis of 2-(3-fluoropropyl)-6-methoxynaphthalene (5) and its [(18)F]-radiolabeled counterpart ([(18)F]Amylovis), the in silico and in vitro comparative evaluations of [(18)F]Amylovis and [(11)C]Pittsburg compound B (PIB) and the in vivo preclinical evaluation of [(18)F]Amylovis in transgenic and wild mice. METHODS: Iron-catalysis cross coupling reaction, followed by fluorination and radiofluorination steps were carried out to obtain 5 and (18)F-Amylovis. Protein/Aß plaques binding, biodistribution, PET/CT Imaging and immunohistochemical studies were conducted in healthy/transgenic mice. RESULTS: The synthesis of 5 was successful obtained. Comparative in silico studies predicting that 5 should have affinity to the Aβ-peptide, mainly through π-π interactions. According to a dynamic simula-tion study the ligand-Aβ peptide complexes are stable in simulation-time (ΔG = -5.31 kcal/mol). [(18)F]Amylovis was obtained with satisfactory yield, high radiochemical purity and specific activity. The [(18)F]Amylovis log P(oct/PBS) value suggests its potential ability for crossing the blood brain barrier (BBB). According to in vitro assays, [(18)F]Amylovis has an adequate stability in time. Higher affinity to Aβ plaques were found for [(18)F]Amylovis (K(d) 0.16 nmol/L) than PIB (K(d) 8.86 nmol/L) in brain serial sections of 3xTg-AD mice. Biodistribution in healthy mice showed that [(18)F]Amylovis crosses the BBB with rapid uptake (7%ID/g at 5 min) and good washout (0.11±0.03%ID/g at 60 min). Comparative PET dynamic studies of [(18)F]Amylovis in healthy and transgenic APPSwe/PS1dE9 mice, revealed a significant high uptake in the mice model. CONCLUSION: The in silico, in vitro and in vivo results justify that [(18)F]Amylovis should be studied as a promissory PET imaging agent to detect the presence of Aβ senile plaques. Bentham Science Publishers 2019-04 2019-04 /pmc/articles/PMC6463402/ /pubmed/30605068 http://dx.doi.org/10.2174/1874471012666190102165053 Text en © 2019 Bentham Science Publishers https://creativecommons.org/licenses/by-nc/4.0/legalcode This is an open access article licensed under the terms of the Creative Commons Attribution-Non-Commercial 4.0 International Public License (CC BY-NC 4.0) (https://creativecommons.org/licenses/by-nc/4.0/legalcode), which permits unrestricted, non-commercial use, distribution and reproduction in any medium, provided the work is properly cited.
spellingShingle Article
Rivera-Marrero, Suchitil
Fernández-Maza, Laura
León-Chaviano, Samila
Sablón-Carrazana, Marquiza
Bencomo-Martínez, Alberto
Perera-Pintado, Alejandro
Prats-Capote, Anais
Zoppolo, Florencia
Kreimerman, Ingrid
Pardo, Tania
Reyes, Laura
Balcerzyk, Marcin
Dubed-Bandomo, Geyla
Mercerón-Martínez, Daymara
Espinosa-Rodríguez, Luis A.
Engler, Henry
Savio, Eduardo
Rodríguez-Tanty, Chryslaine
[(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations
title [(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations
title_full [(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations
title_fullStr [(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations
title_full_unstemmed [(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations
title_short [(18)F]Amylovis as a Potential PET Probe for β-Amyloid Plaque: Synthesis, In Silico, In vitro and In vivo Evaluations
title_sort [(18)f]amylovis as a potential pet probe for β-amyloid plaque: synthesis, in silico, in vitro and in vivo evaluations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6463402/
https://www.ncbi.nlm.nih.gov/pubmed/30605068
http://dx.doi.org/10.2174/1874471012666190102165053
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