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Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors

A long-term high-fat diet (HFD) causes obesity and changes in renal lipid metabolism and lysosomal dysfunction in mice, causing renal damage. Sodium-glucose co-transporter inhibitors, including phlorizin, exert nephroprotective effects in patients with chronic kidney disease, but the underlying mech...

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Autores principales: Saitoh, Sei, Takaki, Takashi, Nakajima, Kazuki, Wo, Bao, Terashima, Hiroshi, Shimo, Satoshi, Nguyen, Huy Bang, Thai, Truc Quynh, Kumamoto, Kanako, Kunisawa, Kazuo, Nagao, Shizuko, Tojo, Akihiro, Ohno, Nobuhiko, Takahashi, Kazuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925073/
https://www.ncbi.nlm.nih.gov/pubmed/36780539
http://dx.doi.org/10.1371/journal.pone.0281770
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author Saitoh, Sei
Takaki, Takashi
Nakajima, Kazuki
Wo, Bao
Terashima, Hiroshi
Shimo, Satoshi
Nguyen, Huy Bang
Thai, Truc Quynh
Kumamoto, Kanako
Kunisawa, Kazuo
Nagao, Shizuko
Tojo, Akihiro
Ohno, Nobuhiko
Takahashi, Kazuo
author_facet Saitoh, Sei
Takaki, Takashi
Nakajima, Kazuki
Wo, Bao
Terashima, Hiroshi
Shimo, Satoshi
Nguyen, Huy Bang
Thai, Truc Quynh
Kumamoto, Kanako
Kunisawa, Kazuo
Nagao, Shizuko
Tojo, Akihiro
Ohno, Nobuhiko
Takahashi, Kazuo
author_sort Saitoh, Sei
collection PubMed
description A long-term high-fat diet (HFD) causes obesity and changes in renal lipid metabolism and lysosomal dysfunction in mice, causing renal damage. Sodium-glucose co-transporter inhibitors, including phlorizin, exert nephroprotective effects in patients with chronic kidney disease, but the underlying mechanism remains unclear. A HFD or standard diet was fed to adult C57BL/6J male mice, and phlorizin was administered. Lamellar body components of the proximal tubular epithelial cells (PTECs) were investigated. After phlorizin administration in HFD-fed mice, sphingomyelin and ceramide in urine and tissues were assessed and label-free quantitative proteomics was performed using kidney tissue samples. Mitochondrial elongation by fusion was effective in the PTECs of HFD-fed obese mice under phlorizin administration, and many lamellar bodies were found in the apical portion of the S2 segment of the proximal tubule. Phlorizin functioned as a diuretic, releasing lamellar bodies from the apical membrane of PTECs and clearing the obstruction in nephrons. The main component of the lamellar bodies was sphingomyelin. On the first day of phlorizin administration in HFD-fed obese mice, the diuretic effect was increased, and more sphingomyelin was excreted through urine than in vehicle-treated mice. The expressions of three peroxisomal β-oxidation proteins involved in fatty acid metabolism were downregulated after phlorizin administration in the kidneys of HFD-fed mice. Fatty acid elongation protein levels increased with phlorizin administration, indicating an increase in long-chain fatty acids. Lamellar bodies accumulated in the proximal renal tubule of the S2 segment of the HFD-fed mice, indicating that the urinary excretion of lamellar bodies has nephroprotective effects.
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spelling pubmed-99250732023-02-14 Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors Saitoh, Sei Takaki, Takashi Nakajima, Kazuki Wo, Bao Terashima, Hiroshi Shimo, Satoshi Nguyen, Huy Bang Thai, Truc Quynh Kumamoto, Kanako Kunisawa, Kazuo Nagao, Shizuko Tojo, Akihiro Ohno, Nobuhiko Takahashi, Kazuo PLoS One Research Article A long-term high-fat diet (HFD) causes obesity and changes in renal lipid metabolism and lysosomal dysfunction in mice, causing renal damage. Sodium-glucose co-transporter inhibitors, including phlorizin, exert nephroprotective effects in patients with chronic kidney disease, but the underlying mechanism remains unclear. A HFD or standard diet was fed to adult C57BL/6J male mice, and phlorizin was administered. Lamellar body components of the proximal tubular epithelial cells (PTECs) were investigated. After phlorizin administration in HFD-fed mice, sphingomyelin and ceramide in urine and tissues were assessed and label-free quantitative proteomics was performed using kidney tissue samples. Mitochondrial elongation by fusion was effective in the PTECs of HFD-fed obese mice under phlorizin administration, and many lamellar bodies were found in the apical portion of the S2 segment of the proximal tubule. Phlorizin functioned as a diuretic, releasing lamellar bodies from the apical membrane of PTECs and clearing the obstruction in nephrons. The main component of the lamellar bodies was sphingomyelin. On the first day of phlorizin administration in HFD-fed obese mice, the diuretic effect was increased, and more sphingomyelin was excreted through urine than in vehicle-treated mice. The expressions of three peroxisomal β-oxidation proteins involved in fatty acid metabolism were downregulated after phlorizin administration in the kidneys of HFD-fed mice. Fatty acid elongation protein levels increased with phlorizin administration, indicating an increase in long-chain fatty acids. Lamellar bodies accumulated in the proximal renal tubule of the S2 segment of the HFD-fed mice, indicating that the urinary excretion of lamellar bodies has nephroprotective effects. Public Library of Science 2023-02-13 /pmc/articles/PMC9925073/ /pubmed/36780539 http://dx.doi.org/10.1371/journal.pone.0281770 Text en © 2023 Saitoh et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Saitoh, Sei
Takaki, Takashi
Nakajima, Kazuki
Wo, Bao
Terashima, Hiroshi
Shimo, Satoshi
Nguyen, Huy Bang
Thai, Truc Quynh
Kumamoto, Kanako
Kunisawa, Kazuo
Nagao, Shizuko
Tojo, Akihiro
Ohno, Nobuhiko
Takahashi, Kazuo
Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors
title Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors
title_full Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors
title_fullStr Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors
title_full_unstemmed Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors
title_short Treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors
title_sort treatment of tubular damage in high-fat-diet-fed obese mice using sodium-glucose co-transporter inhibitors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925073/
https://www.ncbi.nlm.nih.gov/pubmed/36780539
http://dx.doi.org/10.1371/journal.pone.0281770
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