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Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders

In clinical practice, the metabolic syndrome can lead to multiple complications, including diabetes. It remains unclear which component of the metabolic syndrome (obesity, inflammation, hyperglycemia, or insulin resistance) has the strongest inhibitory effect on stem cells involved in beta cell rege...

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Autores principales: Pakhomova, Angelina Vladimirovna, Nebolsin, Vladimir Evgenievich, Pershina, Olga Victorovna, Krupin, Vyacheslav Andreevich, Sandrikina, Lubov Alexandrovna, Pan, Edgar Sergeevich, Ermakova, Natalia Nicolaevna, Vaizova, Olga Evgenevna, Widera, Darius, Grimm, Wolf-Dieter, Kravtsov, Viacheslav Yur’evich, Afanasiev, Sergey Alexandrovich, Morozov, Sergey Georgievich, Kubatiev, Aslan Amirkhanovich, Dygai, Alexander Mikhaylovich, Skurikhin, Evgenii Germanovich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7037053/
https://www.ncbi.nlm.nih.gov/pubmed/32028560
http://dx.doi.org/10.3390/ijms21030991
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author Pakhomova, Angelina Vladimirovna
Nebolsin, Vladimir Evgenievich
Pershina, Olga Victorovna
Krupin, Vyacheslav Andreevich
Sandrikina, Lubov Alexandrovna
Pan, Edgar Sergeevich
Ermakova, Natalia Nicolaevna
Vaizova, Olga Evgenevna
Widera, Darius
Grimm, Wolf-Dieter
Kravtsov, Viacheslav Yur’evich
Afanasiev, Sergey Alexandrovich
Morozov, Sergey Georgievich
Kubatiev, Aslan Amirkhanovich
Dygai, Alexander Mikhaylovich
Skurikhin, Evgenii Germanovich
author_facet Pakhomova, Angelina Vladimirovna
Nebolsin, Vladimir Evgenievich
Pershina, Olga Victorovna
Krupin, Vyacheslav Andreevich
Sandrikina, Lubov Alexandrovna
Pan, Edgar Sergeevich
Ermakova, Natalia Nicolaevna
Vaizova, Olga Evgenevna
Widera, Darius
Grimm, Wolf-Dieter
Kravtsov, Viacheslav Yur’evich
Afanasiev, Sergey Alexandrovich
Morozov, Sergey Georgievich
Kubatiev, Aslan Amirkhanovich
Dygai, Alexander Mikhaylovich
Skurikhin, Evgenii Germanovich
author_sort Pakhomova, Angelina Vladimirovna
collection PubMed
description In clinical practice, the metabolic syndrome can lead to multiple complications, including diabetes. It remains unclear which component of the metabolic syndrome (obesity, inflammation, hyperglycemia, or insulin resistance) has the strongest inhibitory effect on stem cells involved in beta cell regeneration. This makes it challenging to develop effective treatment options for complications such as diabetes. In our study, experiments were performed on male C57BL/6 mice where metabolic disorders have been introduced experimentally by a combination of streptozotocin-treatment and a high-fat diet. We evaluated the biological effects of Bisamide Derivative of Dicarboxylic Acid (BDDA) and its impact on pancreatic stem cells in vivo. To assess the impact of BDDA, we applied a combination of histological and biochemical methods along with a cytometric analysis of stem cell and progenitor cell markers. We show that in mice with metabolic disorders, BDDA has a positive effect on lipid and glucose metabolism. The pancreatic restoration was associated with a decrease of the inhibitory effects of inflammation and obesity factors on pancreatic stem cells. Our data shows that BDDA increases the number of pancreatic stem cells. Thus, BDDA could be used as a new compound for treating complication of the metabolic syndrome such as diabetes.
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spelling pubmed-70370532020-03-11 Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders Pakhomova, Angelina Vladimirovna Nebolsin, Vladimir Evgenievich Pershina, Olga Victorovna Krupin, Vyacheslav Andreevich Sandrikina, Lubov Alexandrovna Pan, Edgar Sergeevich Ermakova, Natalia Nicolaevna Vaizova, Olga Evgenevna Widera, Darius Grimm, Wolf-Dieter Kravtsov, Viacheslav Yur’evich Afanasiev, Sergey Alexandrovich Morozov, Sergey Georgievich Kubatiev, Aslan Amirkhanovich Dygai, Alexander Mikhaylovich Skurikhin, Evgenii Germanovich Int J Mol Sci Article In clinical practice, the metabolic syndrome can lead to multiple complications, including diabetes. It remains unclear which component of the metabolic syndrome (obesity, inflammation, hyperglycemia, or insulin resistance) has the strongest inhibitory effect on stem cells involved in beta cell regeneration. This makes it challenging to develop effective treatment options for complications such as diabetes. In our study, experiments were performed on male C57BL/6 mice where metabolic disorders have been introduced experimentally by a combination of streptozotocin-treatment and a high-fat diet. We evaluated the biological effects of Bisamide Derivative of Dicarboxylic Acid (BDDA) and its impact on pancreatic stem cells in vivo. To assess the impact of BDDA, we applied a combination of histological and biochemical methods along with a cytometric analysis of stem cell and progenitor cell markers. We show that in mice with metabolic disorders, BDDA has a positive effect on lipid and glucose metabolism. The pancreatic restoration was associated with a decrease of the inhibitory effects of inflammation and obesity factors on pancreatic stem cells. Our data shows that BDDA increases the number of pancreatic stem cells. Thus, BDDA could be used as a new compound for treating complication of the metabolic syndrome such as diabetes. MDPI 2020-02-03 /pmc/articles/PMC7037053/ /pubmed/32028560 http://dx.doi.org/10.3390/ijms21030991 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pakhomova, Angelina Vladimirovna
Nebolsin, Vladimir Evgenievich
Pershina, Olga Victorovna
Krupin, Vyacheslav Andreevich
Sandrikina, Lubov Alexandrovna
Pan, Edgar Sergeevich
Ermakova, Natalia Nicolaevna
Vaizova, Olga Evgenevna
Widera, Darius
Grimm, Wolf-Dieter
Kravtsov, Viacheslav Yur’evich
Afanasiev, Sergey Alexandrovich
Morozov, Sergey Georgievich
Kubatiev, Aslan Amirkhanovich
Dygai, Alexander Mikhaylovich
Skurikhin, Evgenii Germanovich
Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders
title Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders
title_full Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders
title_fullStr Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders
title_full_unstemmed Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders
title_short Antidiabetic Effects of Bisamide Derivative of Dicarboxylic Acid in Metabolic Disorders
title_sort antidiabetic effects of bisamide derivative of dicarboxylic acid in metabolic disorders
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7037053/
https://www.ncbi.nlm.nih.gov/pubmed/32028560
http://dx.doi.org/10.3390/ijms21030991
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