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Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity

[Image: see text] Alzheimer’s disease (AD) exhibits a multitude of syndromes which add up to its complex nature. In AD, amyloid plaques are deposited along with abnormal accumulation of transition-metal ions. These transition-metal ions are redox-active and help to induce the formation of various po...

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Autores principales: Pradhan, Krishnangsu, Das, Gaurav, Kar, Chirantan, Mukherjee, Nabanita, Khan, Juhee, Mahata, Tanushree, Barman, Surajit, Ghosh, Surajit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408195/
https://www.ncbi.nlm.nih.gov/pubmed/32775897
http://dx.doi.org/10.1021/acsomega.0c02235
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author Pradhan, Krishnangsu
Das, Gaurav
Kar, Chirantan
Mukherjee, Nabanita
Khan, Juhee
Mahata, Tanushree
Barman, Surajit
Ghosh, Surajit
author_facet Pradhan, Krishnangsu
Das, Gaurav
Kar, Chirantan
Mukherjee, Nabanita
Khan, Juhee
Mahata, Tanushree
Barman, Surajit
Ghosh, Surajit
author_sort Pradhan, Krishnangsu
collection PubMed
description [Image: see text] Alzheimer’s disease (AD) exhibits a multitude of syndromes which add up to its complex nature. In AD, amyloid plaques are deposited along with abnormal accumulation of transition-metal ions. These transition-metal ions are redox-active and help to induce the formation of various polymorphic forms of amyloid-β. Amyloid oligomeric and fibrillar aggregates are the main cause for neuronal toxicity. Another reason for neuronal toxicity arises from generation of reactive oxygen species (ROS) catalyzed by redox-active metal ions through Fenton’s reaction. In this direction, an Aβ inhibitor possessing the metal chelation property will be the most promising approach against multifaceted AD. Herein, a rhodamine-B-based compound (Rh-BT) has been designed and synthesized. Rhodamine was attached with benzothiazole as a recognition unit for amyloid-β aggregates. The molecule can effectively capture redox metal ions from the Aβ–Cu(2+) complex as well as inhibit Aβ self-assembly such as toxic oligomeric and fibrillar aggregates. Various biophysical assays show that Rh-BT interacts with the Aβ peptide, is capable of decreasing metal-induced ROS generation, and inhibits Aβ–Cu(2+)-induced cytotoxicity. All these results support the multifunctional nature of Rh-BT, which has an Aβ-specific recognition unit. In addition to the above properties, Rh-BT also exhibits good serum stability in vivo and blood–brain barrier permeability. Therefore, Rh-BT can be considered as a potent multifunctional therapeutic for the treatment of AD.
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spelling pubmed-74081952020-08-07 Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity Pradhan, Krishnangsu Das, Gaurav Kar, Chirantan Mukherjee, Nabanita Khan, Juhee Mahata, Tanushree Barman, Surajit Ghosh, Surajit ACS Omega [Image: see text] Alzheimer’s disease (AD) exhibits a multitude of syndromes which add up to its complex nature. In AD, amyloid plaques are deposited along with abnormal accumulation of transition-metal ions. These transition-metal ions are redox-active and help to induce the formation of various polymorphic forms of amyloid-β. Amyloid oligomeric and fibrillar aggregates are the main cause for neuronal toxicity. Another reason for neuronal toxicity arises from generation of reactive oxygen species (ROS) catalyzed by redox-active metal ions through Fenton’s reaction. In this direction, an Aβ inhibitor possessing the metal chelation property will be the most promising approach against multifaceted AD. Herein, a rhodamine-B-based compound (Rh-BT) has been designed and synthesized. Rhodamine was attached with benzothiazole as a recognition unit for amyloid-β aggregates. The molecule can effectively capture redox metal ions from the Aβ–Cu(2+) complex as well as inhibit Aβ self-assembly such as toxic oligomeric and fibrillar aggregates. Various biophysical assays show that Rh-BT interacts with the Aβ peptide, is capable of decreasing metal-induced ROS generation, and inhibits Aβ–Cu(2+)-induced cytotoxicity. All these results support the multifunctional nature of Rh-BT, which has an Aβ-specific recognition unit. In addition to the above properties, Rh-BT also exhibits good serum stability in vivo and blood–brain barrier permeability. Therefore, Rh-BT can be considered as a potent multifunctional therapeutic for the treatment of AD. American Chemical Society 2020-07-21 /pmc/articles/PMC7408195/ /pubmed/32775897 http://dx.doi.org/10.1021/acsomega.0c02235 Text en Copyright © 2020 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Pradhan, Krishnangsu
Das, Gaurav
Kar, Chirantan
Mukherjee, Nabanita
Khan, Juhee
Mahata, Tanushree
Barman, Surajit
Ghosh, Surajit
Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity
title Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity
title_full Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity
title_fullStr Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity
title_full_unstemmed Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity
title_short Rhodamine-Based Metal Chelator: A Potent Inhibitor of Metal-Catalyzed Amyloid Toxicity
title_sort rhodamine-based metal chelator: a potent inhibitor of metal-catalyzed amyloid toxicity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408195/
https://www.ncbi.nlm.nih.gov/pubmed/32775897
http://dx.doi.org/10.1021/acsomega.0c02235
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