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Age-Associated Molecular Changes in the Kidney in Aged Mice

Background. Aging is a multifactorial process characterized by a progressive decline in physiological function. Decreased kidney function is associated with cardiovascular disease and mortality. Therefore, increasing our insight into kidney aging by understanding the anatomic, physiologic, and patho...

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Autores principales: Lim, Ji Hee, Kim, Eun Nim, Kim, Min Young, Chung, Sungjin, Shin, Seok Joon, Kim, Hyung Wook, Yang, Chul Woo, Kim, Yong-Soo, Chang, Yoon Sik, Park, Cheol Whee, Choi, Bum Soon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2012
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544311/
https://www.ncbi.nlm.nih.gov/pubmed/23326623
http://dx.doi.org/10.1155/2012/171383
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author Lim, Ji Hee
Kim, Eun Nim
Kim, Min Young
Chung, Sungjin
Shin, Seok Joon
Kim, Hyung Wook
Yang, Chul Woo
Kim, Yong-Soo
Chang, Yoon Sik
Park, Cheol Whee
Choi, Bum Soon
author_facet Lim, Ji Hee
Kim, Eun Nim
Kim, Min Young
Chung, Sungjin
Shin, Seok Joon
Kim, Hyung Wook
Yang, Chul Woo
Kim, Yong-Soo
Chang, Yoon Sik
Park, Cheol Whee
Choi, Bum Soon
author_sort Lim, Ji Hee
collection PubMed
description Background. Aging is a multifactorial process characterized by a progressive decline in physiological function. Decreased kidney function is associated with cardiovascular disease and mortality. Therefore, increasing our insight into kidney aging by understanding the anatomic, physiologic, and pathologic changes of aging in the kidney is important to prevent disastrous outcomes in elderly people. Methods. Male two-, 12-, and 24-month-old C57/BL6 mice were used in this study. We measured histological change, oxidative stress, and aging-related protein expression in the kidneys. Results. Twenty-four-month-old mice displayed increased albuminuria. Creatinine clearance decreased with aging, although this was not statistically significant. There were increases in mesangial volume and tubulointerstitial fibrosis in 24-month-old mice. There were also increases in F4/80 expression and in apoptosis detected by TUNEL assay. Urine isoprostane excretion increased with aging and SOD1 and SOD2 were decreased in 24-month-old mice. Oxidative stress may be mediated by a decrease in Sirt1, PGC-1α, ERR-1α, and PPARα expression. Klotho expression also decreased. Conclusions. Our results demonstrate that Sirt1 was decreased with aging and may relate to changed target molecules including PGC-1α/ERR-1α signaling and PPARα. Klotho can also induce oxidative stress. Pharmacologically targeting these signaling molecules may reduce the pathologic changes of aging in the kidney.
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spelling pubmed-35443112013-01-16 Age-Associated Molecular Changes in the Kidney in Aged Mice Lim, Ji Hee Kim, Eun Nim Kim, Min Young Chung, Sungjin Shin, Seok Joon Kim, Hyung Wook Yang, Chul Woo Kim, Yong-Soo Chang, Yoon Sik Park, Cheol Whee Choi, Bum Soon Oxid Med Cell Longev Research Article Background. Aging is a multifactorial process characterized by a progressive decline in physiological function. Decreased kidney function is associated with cardiovascular disease and mortality. Therefore, increasing our insight into kidney aging by understanding the anatomic, physiologic, and pathologic changes of aging in the kidney is important to prevent disastrous outcomes in elderly people. Methods. Male two-, 12-, and 24-month-old C57/BL6 mice were used in this study. We measured histological change, oxidative stress, and aging-related protein expression in the kidneys. Results. Twenty-four-month-old mice displayed increased albuminuria. Creatinine clearance decreased with aging, although this was not statistically significant. There were increases in mesangial volume and tubulointerstitial fibrosis in 24-month-old mice. There were also increases in F4/80 expression and in apoptosis detected by TUNEL assay. Urine isoprostane excretion increased with aging and SOD1 and SOD2 were decreased in 24-month-old mice. Oxidative stress may be mediated by a decrease in Sirt1, PGC-1α, ERR-1α, and PPARα expression. Klotho expression also decreased. Conclusions. Our results demonstrate that Sirt1 was decreased with aging and may relate to changed target molecules including PGC-1α/ERR-1α signaling and PPARα. Klotho can also induce oxidative stress. Pharmacologically targeting these signaling molecules may reduce the pathologic changes of aging in the kidney. Hindawi Publishing Corporation 2012 2012-12-30 /pmc/articles/PMC3544311/ /pubmed/23326623 http://dx.doi.org/10.1155/2012/171383 Text en Copyright © 2012 Ji Hee Lim et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lim, Ji Hee
Kim, Eun Nim
Kim, Min Young
Chung, Sungjin
Shin, Seok Joon
Kim, Hyung Wook
Yang, Chul Woo
Kim, Yong-Soo
Chang, Yoon Sik
Park, Cheol Whee
Choi, Bum Soon
Age-Associated Molecular Changes in the Kidney in Aged Mice
title Age-Associated Molecular Changes in the Kidney in Aged Mice
title_full Age-Associated Molecular Changes in the Kidney in Aged Mice
title_fullStr Age-Associated Molecular Changes in the Kidney in Aged Mice
title_full_unstemmed Age-Associated Molecular Changes in the Kidney in Aged Mice
title_short Age-Associated Molecular Changes in the Kidney in Aged Mice
title_sort age-associated molecular changes in the kidney in aged mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544311/
https://www.ncbi.nlm.nih.gov/pubmed/23326623
http://dx.doi.org/10.1155/2012/171383
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