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A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis
Obesity-related type II diabetes (diabesity) has increased global morbidity and mortality dramatically. Previously, the ancient drug salicylate demonstrated promise for the treatment of type II diabetes, but its clinical use was precluded due to high dose requirements. In this study, we present a ni...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Journal Experts
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10371099/ https://www.ncbi.nlm.nih.gov/pubmed/37502859 http://dx.doi.org/10.21203/rs.3.rs-3101395/v1 |
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author | Cal, Karina Leyva, Alejandro Rodríguez-Duarte, Jorge Ruiz, Santiago Santos, Leonardo Colella, Lucía Ingold, Mariana Vilaseca, Cecilia Galliussi, German Ziegler, Lucía Peclat, Thais R. Bresque, Mariana Handy, Rachel M King, Rachel dos Reis, Larissa Menezes Espasandin, Camila Breining, Peter Dapueto, Rosina Lopez, Andrés Thompson, Katie L. Agorrody, Guillermo DeVallance, Evan Meadows, Ethan Lewis, Sara E. Barbosa, Gabriele Catarine Santana de Souza, Leonardo Osbourne Lai Chichierchio, Marina Santos Valez, Valeria Aicardo, Adrián Contreras, Paola Vendelbo, Mikkel H. Jakobsen, Steen Kamaid, Andrés Porcal, Williams Calliari, Aldo Verdes, José Manuel Du, Jianhai Wang, Yekai Hollander, John M White, Thomas A. Radi, Rafael Moyna, Guillermo Quijano, Celia O’Doherty, Robert Moraes-Vieira, Pedro Holloway, Graham P Leonardi, Roberta Mori, Marcelo A Camacho-Pereira, Juliana Kelley, Eric E. Duran, Rosario Lopez, Gloria V. Batthyány, Carlos Chini, Eduardo N. Escande, Carlos |
author_facet | Cal, Karina Leyva, Alejandro Rodríguez-Duarte, Jorge Ruiz, Santiago Santos, Leonardo Colella, Lucía Ingold, Mariana Vilaseca, Cecilia Galliussi, German Ziegler, Lucía Peclat, Thais R. Bresque, Mariana Handy, Rachel M King, Rachel dos Reis, Larissa Menezes Espasandin, Camila Breining, Peter Dapueto, Rosina Lopez, Andrés Thompson, Katie L. Agorrody, Guillermo DeVallance, Evan Meadows, Ethan Lewis, Sara E. Barbosa, Gabriele Catarine Santana de Souza, Leonardo Osbourne Lai Chichierchio, Marina Santos Valez, Valeria Aicardo, Adrián Contreras, Paola Vendelbo, Mikkel H. Jakobsen, Steen Kamaid, Andrés Porcal, Williams Calliari, Aldo Verdes, José Manuel Du, Jianhai Wang, Yekai Hollander, John M White, Thomas A. Radi, Rafael Moyna, Guillermo Quijano, Celia O’Doherty, Robert Moraes-Vieira, Pedro Holloway, Graham P Leonardi, Roberta Mori, Marcelo A Camacho-Pereira, Juliana Kelley, Eric E. Duran, Rosario Lopez, Gloria V. Batthyány, Carlos Chini, Eduardo N. Escande, Carlos |
author_sort | Cal, Karina |
collection | PubMed |
description | Obesity-related type II diabetes (diabesity) has increased global morbidity and mortality dramatically. Previously, the ancient drug salicylate demonstrated promise for the treatment of type II diabetes, but its clinical use was precluded due to high dose requirements. In this study, we present a nitroalkene derivative of salicylate, 5-(2-nitroethenyl)salicylic acid (SANA), a molecule with unprecedented beneficial effects in diet-induced obesity (DIO). SANA reduces DIO, liver steatosis and insulin resistance at doses up to 40 times lower than salicylate. Mechanistically, SANA stimulated mitochondrial respiration and increased creatine-dependent energy expenditure in adipose tissue. Indeed, depletion of creatine resulted in the loss of SANA action. Moreover, we found that SANA binds to creatine kinases CKMT1/2, and downregulation CKMT1 interferes with the effect of SANA in vivo. Together, these data demonstrate that SANA is a first-in-class activator of creatine-dependent energy expenditure and thermogenesis in adipose tissue and emerges as a candidate for the treatment of diabesity. |
format | Online Article Text |
id | pubmed-10371099 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Journal Experts |
record_format | MEDLINE/PubMed |
spelling | pubmed-103710992023-07-27 A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis Cal, Karina Leyva, Alejandro Rodríguez-Duarte, Jorge Ruiz, Santiago Santos, Leonardo Colella, Lucía Ingold, Mariana Vilaseca, Cecilia Galliussi, German Ziegler, Lucía Peclat, Thais R. Bresque, Mariana Handy, Rachel M King, Rachel dos Reis, Larissa Menezes Espasandin, Camila Breining, Peter Dapueto, Rosina Lopez, Andrés Thompson, Katie L. Agorrody, Guillermo DeVallance, Evan Meadows, Ethan Lewis, Sara E. Barbosa, Gabriele Catarine Santana de Souza, Leonardo Osbourne Lai Chichierchio, Marina Santos Valez, Valeria Aicardo, Adrián Contreras, Paola Vendelbo, Mikkel H. Jakobsen, Steen Kamaid, Andrés Porcal, Williams Calliari, Aldo Verdes, José Manuel Du, Jianhai Wang, Yekai Hollander, John M White, Thomas A. Radi, Rafael Moyna, Guillermo Quijano, Celia O’Doherty, Robert Moraes-Vieira, Pedro Holloway, Graham P Leonardi, Roberta Mori, Marcelo A Camacho-Pereira, Juliana Kelley, Eric E. Duran, Rosario Lopez, Gloria V. Batthyány, Carlos Chini, Eduardo N. Escande, Carlos Res Sq Article Obesity-related type II diabetes (diabesity) has increased global morbidity and mortality dramatically. Previously, the ancient drug salicylate demonstrated promise for the treatment of type II diabetes, but its clinical use was precluded due to high dose requirements. In this study, we present a nitroalkene derivative of salicylate, 5-(2-nitroethenyl)salicylic acid (SANA), a molecule with unprecedented beneficial effects in diet-induced obesity (DIO). SANA reduces DIO, liver steatosis and insulin resistance at doses up to 40 times lower than salicylate. Mechanistically, SANA stimulated mitochondrial respiration and increased creatine-dependent energy expenditure in adipose tissue. Indeed, depletion of creatine resulted in the loss of SANA action. Moreover, we found that SANA binds to creatine kinases CKMT1/2, and downregulation CKMT1 interferes with the effect of SANA in vivo. Together, these data demonstrate that SANA is a first-in-class activator of creatine-dependent energy expenditure and thermogenesis in adipose tissue and emerges as a candidate for the treatment of diabesity. American Journal Experts 2023-07-12 /pmc/articles/PMC10371099/ /pubmed/37502859 http://dx.doi.org/10.21203/rs.3.rs-3101395/v1 Text en https://creativecommons.org/licenses/by/4.0/License: This work is licensed under a Creative Commons Attribution 4.0 International License. Read Full License (https://creativecommons.org/licenses/by/4.0/) https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use. |
spellingShingle | Article Cal, Karina Leyva, Alejandro Rodríguez-Duarte, Jorge Ruiz, Santiago Santos, Leonardo Colella, Lucía Ingold, Mariana Vilaseca, Cecilia Galliussi, German Ziegler, Lucía Peclat, Thais R. Bresque, Mariana Handy, Rachel M King, Rachel dos Reis, Larissa Menezes Espasandin, Camila Breining, Peter Dapueto, Rosina Lopez, Andrés Thompson, Katie L. Agorrody, Guillermo DeVallance, Evan Meadows, Ethan Lewis, Sara E. Barbosa, Gabriele Catarine Santana de Souza, Leonardo Osbourne Lai Chichierchio, Marina Santos Valez, Valeria Aicardo, Adrián Contreras, Paola Vendelbo, Mikkel H. Jakobsen, Steen Kamaid, Andrés Porcal, Williams Calliari, Aldo Verdes, José Manuel Du, Jianhai Wang, Yekai Hollander, John M White, Thomas A. Radi, Rafael Moyna, Guillermo Quijano, Celia O’Doherty, Robert Moraes-Vieira, Pedro Holloway, Graham P Leonardi, Roberta Mori, Marcelo A Camacho-Pereira, Juliana Kelley, Eric E. Duran, Rosario Lopez, Gloria V. Batthyány, Carlos Chini, Eduardo N. Escande, Carlos A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis |
title | A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis |
title_full | A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis |
title_fullStr | A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis |
title_full_unstemmed | A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis |
title_short | A nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis |
title_sort | nitroalkene derivative of salicylate alleviates diet-induced obesity by activating creatine metabolism and non-shivering thermogenesis |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10371099/ https://www.ncbi.nlm.nih.gov/pubmed/37502859 http://dx.doi.org/10.21203/rs.3.rs-3101395/v1 |
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