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Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice

We previously demonstrated that polymorphisms in the carnosinase-1 gene (CNDP1) determine the risk of nephropathy in type 2 diabetic patients. Carnosine, the substrate of the enzyme encoded by this gene, is considered renoprotective and could possibly be used to treat diabetic nephropathy (DN). In t...

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Autores principales: Albrecht, Thomas, Schilperoort, Maaike, Zhang, Shiqi, Braun, Jana D., Qiu, Jiedong, Rodriguez, Angelica, Pastene, Diego O., Krämer, Bernhard K., Köppel, Hannes, Baelde, Hans, de Heer, Emile, Anna Altomare, Alessandra, Regazzoni, Luca, Denisi, Alessandra, Aldini, Giancarlo, van den Born, Jacob, Yard, Benito A., Hauske, Sibylle J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5345040/
https://www.ncbi.nlm.nih.gov/pubmed/28281693
http://dx.doi.org/10.1038/srep44492
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author Albrecht, Thomas
Schilperoort, Maaike
Zhang, Shiqi
Braun, Jana D.
Qiu, Jiedong
Rodriguez, Angelica
Pastene, Diego O.
Krämer, Bernhard K.
Köppel, Hannes
Baelde, Hans
de Heer, Emile
Anna Altomare, Alessandra
Regazzoni, Luca
Denisi, Alessandra
Aldini, Giancarlo
van den Born, Jacob
Yard, Benito A.
Hauske, Sibylle J.
author_facet Albrecht, Thomas
Schilperoort, Maaike
Zhang, Shiqi
Braun, Jana D.
Qiu, Jiedong
Rodriguez, Angelica
Pastene, Diego O.
Krämer, Bernhard K.
Köppel, Hannes
Baelde, Hans
de Heer, Emile
Anna Altomare, Alessandra
Regazzoni, Luca
Denisi, Alessandra
Aldini, Giancarlo
van den Born, Jacob
Yard, Benito A.
Hauske, Sibylle J.
author_sort Albrecht, Thomas
collection PubMed
description We previously demonstrated that polymorphisms in the carnosinase-1 gene (CNDP1) determine the risk of nephropathy in type 2 diabetic patients. Carnosine, the substrate of the enzyme encoded by this gene, is considered renoprotective and could possibly be used to treat diabetic nephropathy (DN). In this study, we examined the effect of carnosine treatment in vivo in BTBR (Black and Tan, BRachyuric) ob/ob mice, a type 2 diabetes model which develops a phenotype that closely resembles advanced human DN. Treatment of BTBR ob/ob mice with 4 mM carnosine for 18 weeks reduced plasma glucose and HbA1c, concomitant with elevated insulin and C-peptide levels. Also, albuminuria and kidney weights were reduced in carnosine-treated mice, which showed less glomerular hypertrophy due to a decrease in the surface area of Bowman’s capsule and space. Carnosine treatment restored the glomerular ultrastructure without affecting podocyte number, resulted in a modified molecular composition of the expanded mesangial matrix and led to the formation of carnosine-acrolein adducts. Our results demonstrate that treatment with carnosine improves glucose metabolism, albuminuria and pathology in BTBR ob/ob mice. Hence, carnosine could be a novel therapeutic strategy to treat patients with DN and/or be used to prevent DN in patients with diabetes.
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spelling pubmed-53450402017-03-14 Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice Albrecht, Thomas Schilperoort, Maaike Zhang, Shiqi Braun, Jana D. Qiu, Jiedong Rodriguez, Angelica Pastene, Diego O. Krämer, Bernhard K. Köppel, Hannes Baelde, Hans de Heer, Emile Anna Altomare, Alessandra Regazzoni, Luca Denisi, Alessandra Aldini, Giancarlo van den Born, Jacob Yard, Benito A. Hauske, Sibylle J. Sci Rep Article We previously demonstrated that polymorphisms in the carnosinase-1 gene (CNDP1) determine the risk of nephropathy in type 2 diabetic patients. Carnosine, the substrate of the enzyme encoded by this gene, is considered renoprotective and could possibly be used to treat diabetic nephropathy (DN). In this study, we examined the effect of carnosine treatment in vivo in BTBR (Black and Tan, BRachyuric) ob/ob mice, a type 2 diabetes model which develops a phenotype that closely resembles advanced human DN. Treatment of BTBR ob/ob mice with 4 mM carnosine for 18 weeks reduced plasma glucose and HbA1c, concomitant with elevated insulin and C-peptide levels. Also, albuminuria and kidney weights were reduced in carnosine-treated mice, which showed less glomerular hypertrophy due to a decrease in the surface area of Bowman’s capsule and space. Carnosine treatment restored the glomerular ultrastructure without affecting podocyte number, resulted in a modified molecular composition of the expanded mesangial matrix and led to the formation of carnosine-acrolein adducts. Our results demonstrate that treatment with carnosine improves glucose metabolism, albuminuria and pathology in BTBR ob/ob mice. Hence, carnosine could be a novel therapeutic strategy to treat patients with DN and/or be used to prevent DN in patients with diabetes. Nature Publishing Group 2017-03-10 /pmc/articles/PMC5345040/ /pubmed/28281693 http://dx.doi.org/10.1038/srep44492 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Albrecht, Thomas
Schilperoort, Maaike
Zhang, Shiqi
Braun, Jana D.
Qiu, Jiedong
Rodriguez, Angelica
Pastene, Diego O.
Krämer, Bernhard K.
Köppel, Hannes
Baelde, Hans
de Heer, Emile
Anna Altomare, Alessandra
Regazzoni, Luca
Denisi, Alessandra
Aldini, Giancarlo
van den Born, Jacob
Yard, Benito A.
Hauske, Sibylle J.
Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice
title Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice
title_full Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice
title_fullStr Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice
title_full_unstemmed Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice
title_short Carnosine Attenuates the Development of both Type 2 Diabetes and Diabetic Nephropathy in BTBR ob/ob Mice
title_sort carnosine attenuates the development of both type 2 diabetes and diabetic nephropathy in btbr ob/ob mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5345040/
https://www.ncbi.nlm.nih.gov/pubmed/28281693
http://dx.doi.org/10.1038/srep44492
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