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FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity

Screening a library of drugs with known safety profiles in humans yielded 30 drugs that reliably protected mammalian neurons against glucose toxicity. Subsequent screening demonstrated that 6 of these 30 drugs increase lifespan in C. elegans: caffeine, ciclopirox olamine, tannic acid, acetaminophen,...

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Autores principales: Lublin, Alex, Isoda, Fumiko, Patel, Harshil, Yen, Kelvin, Nguyen, Linda, Hajje, Daher, Schwartz, Marc, Mobbs, Charles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3218048/
https://www.ncbi.nlm.nih.gov/pubmed/22114686
http://dx.doi.org/10.1371/journal.pone.0027762
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author Lublin, Alex
Isoda, Fumiko
Patel, Harshil
Yen, Kelvin
Nguyen, Linda
Hajje, Daher
Schwartz, Marc
Mobbs, Charles
author_facet Lublin, Alex
Isoda, Fumiko
Patel, Harshil
Yen, Kelvin
Nguyen, Linda
Hajje, Daher
Schwartz, Marc
Mobbs, Charles
author_sort Lublin, Alex
collection PubMed
description Screening a library of drugs with known safety profiles in humans yielded 30 drugs that reliably protected mammalian neurons against glucose toxicity. Subsequent screening demonstrated that 6 of these 30 drugs increase lifespan in C. elegans: caffeine, ciclopirox olamine, tannic acid, acetaminophen, bacitracin, and baicalein. Every drug significantly reduced the age-dependent acceleration of mortality rate. These protective effects were blocked by RNAi inhibition of cbp-1 in adults only, which also blocks protective effects of dietary restriction. Only 2 drugs, caffeine and tannic acid, exhibited a similar dependency on DAF-16. Caffeine, tannic acid, and bacitracin also reduced pathology in a transgenic model of proteotoxicity associated with Alzheimer's disease. These results further support a key role for glucose toxicity in driving age-related pathologies and for CBP-1 in protection against age-related pathologies. These results also provide novel lead compounds with known safety profiles in human for treatment of age-related diseases, including Alzheimer's disease and diabetic complications.
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spelling pubmed-32180482011-11-23 FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity Lublin, Alex Isoda, Fumiko Patel, Harshil Yen, Kelvin Nguyen, Linda Hajje, Daher Schwartz, Marc Mobbs, Charles PLoS One Research Article Screening a library of drugs with known safety profiles in humans yielded 30 drugs that reliably protected mammalian neurons against glucose toxicity. Subsequent screening demonstrated that 6 of these 30 drugs increase lifespan in C. elegans: caffeine, ciclopirox olamine, tannic acid, acetaminophen, bacitracin, and baicalein. Every drug significantly reduced the age-dependent acceleration of mortality rate. These protective effects were blocked by RNAi inhibition of cbp-1 in adults only, which also blocks protective effects of dietary restriction. Only 2 drugs, caffeine and tannic acid, exhibited a similar dependency on DAF-16. Caffeine, tannic acid, and bacitracin also reduced pathology in a transgenic model of proteotoxicity associated with Alzheimer's disease. These results further support a key role for glucose toxicity in driving age-related pathologies and for CBP-1 in protection against age-related pathologies. These results also provide novel lead compounds with known safety profiles in human for treatment of age-related diseases, including Alzheimer's disease and diabetic complications. Public Library of Science 2011-11-16 /pmc/articles/PMC3218048/ /pubmed/22114686 http://dx.doi.org/10.1371/journal.pone.0027762 Text en Lublin et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lublin, Alex
Isoda, Fumiko
Patel, Harshil
Yen, Kelvin
Nguyen, Linda
Hajje, Daher
Schwartz, Marc
Mobbs, Charles
FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity
title FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity
title_full FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity
title_fullStr FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity
title_full_unstemmed FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity
title_short FDA-Approved Drugs that Protect Mammalian Neurons from Glucose Toxicity Slow Aging Dependent on Cbp and Protect Against Proteotoxicity
title_sort fda-approved drugs that protect mammalian neurons from glucose toxicity slow aging dependent on cbp and protect against proteotoxicity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3218048/
https://www.ncbi.nlm.nih.gov/pubmed/22114686
http://dx.doi.org/10.1371/journal.pone.0027762
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