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Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice

Improvement of longevity is an eternal dream of human beings. The accumulation of protein damages is considered as a major cause of aging. Here, we report that the injection of exogenous recombinant mouse serum albumin (rMSA) reduced the total damages of serum albumin in C57BL/6N mice, with higher l...

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Autores principales: Tang, Jiaze, Ju, Anji, Li, Boya, Zhang, Shaosen, Gong, Yuanchao, Ma, Boyuan, Jiang, Yi, Liu, Hongyi, Fu, Yan, Luo, Yongzhang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8394218/
https://www.ncbi.nlm.nih.gov/pubmed/34439857
http://dx.doi.org/10.3390/biom11081191
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author Tang, Jiaze
Ju, Anji
Li, Boya
Zhang, Shaosen
Gong, Yuanchao
Ma, Boyuan
Jiang, Yi
Liu, Hongyi
Fu, Yan
Luo, Yongzhang
author_facet Tang, Jiaze
Ju, Anji
Li, Boya
Zhang, Shaosen
Gong, Yuanchao
Ma, Boyuan
Jiang, Yi
Liu, Hongyi
Fu, Yan
Luo, Yongzhang
author_sort Tang, Jiaze
collection PubMed
description Improvement of longevity is an eternal dream of human beings. The accumulation of protein damages is considered as a major cause of aging. Here, we report that the injection of exogenous recombinant mouse serum albumin (rMSA) reduced the total damages of serum albumin in C57BL/6N mice, with higher level of free-thiols, lower levels of carbonyls and advanced glycation end-products as well as homocysteines in rMSA-treated mice. The healthspan and lifespan of C57BL/6N mice were significantly improved by rMSA. The grip strength of rMSA-treated female and male mice increased by 29.6% and 17.4%, respectively. Meanwhile, the percentage of successful escape increased 23.0% in rMSA-treated male mice using the Barnes Maze test. Moreover, the median lifespan extensions were 17.6% for female and 20.3% for male, respectively. The rMSA used in this study is young and almost undamaged. We define the concept “young and undamaged” to any protein without any unnecessary modifications by four parameters: intact free thiol (if any), no carbonylation, no advanced glycation end-product, and no homocysteinylation. Here, “young and undamaged” exogenous rMSA used in the present study is much younger and less damaged than the endogenous serum albumin purified from young mice at 1.5 months of age. We predict that undamaged proteins altogether can further improve the healthspan and lifespan of mice.
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spelling pubmed-83942182021-08-28 Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice Tang, Jiaze Ju, Anji Li, Boya Zhang, Shaosen Gong, Yuanchao Ma, Boyuan Jiang, Yi Liu, Hongyi Fu, Yan Luo, Yongzhang Biomolecules Article Improvement of longevity is an eternal dream of human beings. The accumulation of protein damages is considered as a major cause of aging. Here, we report that the injection of exogenous recombinant mouse serum albumin (rMSA) reduced the total damages of serum albumin in C57BL/6N mice, with higher level of free-thiols, lower levels of carbonyls and advanced glycation end-products as well as homocysteines in rMSA-treated mice. The healthspan and lifespan of C57BL/6N mice were significantly improved by rMSA. The grip strength of rMSA-treated female and male mice increased by 29.6% and 17.4%, respectively. Meanwhile, the percentage of successful escape increased 23.0% in rMSA-treated male mice using the Barnes Maze test. Moreover, the median lifespan extensions were 17.6% for female and 20.3% for male, respectively. The rMSA used in this study is young and almost undamaged. We define the concept “young and undamaged” to any protein without any unnecessary modifications by four parameters: intact free thiol (if any), no carbonylation, no advanced glycation end-product, and no homocysteinylation. Here, “young and undamaged” exogenous rMSA used in the present study is much younger and less damaged than the endogenous serum albumin purified from young mice at 1.5 months of age. We predict that undamaged proteins altogether can further improve the healthspan and lifespan of mice. MDPI 2021-08-12 /pmc/articles/PMC8394218/ /pubmed/34439857 http://dx.doi.org/10.3390/biom11081191 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tang, Jiaze
Ju, Anji
Li, Boya
Zhang, Shaosen
Gong, Yuanchao
Ma, Boyuan
Jiang, Yi
Liu, Hongyi
Fu, Yan
Luo, Yongzhang
Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice
title Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice
title_full Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice
title_fullStr Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice
title_full_unstemmed Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice
title_short Young and Undamaged rMSA Improves the Healthspan and Lifespan of Mice
title_sort young and undamaged rmsa improves the healthspan and lifespan of mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8394218/
https://www.ncbi.nlm.nih.gov/pubmed/34439857
http://dx.doi.org/10.3390/biom11081191
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