Cargando…
Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8
BACKGROUND: Recent large-scale clinical studies demonstrate that sodium-glucose cotransporter 2 (SGLT2) inhibitors protect the diabetic kidney. However, clinical and animal studies have not shown the changes of the total glomeruli in the whole kidney treated with SGLT2 inhibitors. METHODS: We perfor...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6197731/ https://www.ncbi.nlm.nih.gov/pubmed/30322799 http://dx.doi.org/10.1016/j.ebiom.2018.09.048 |
_version_ | 1783364831027396608 |
---|---|
author | Takiyama, Yumi Sera, Toshihiro Nakamura, Masanori Ishizeki, Kanaki Saijo, Yasuaki Yanagimachi, Tsuyoshi Maeda, Manami Bessho, Ryoichi Takiyama, Takao Kitsunai, Hiroya Sakagami, Hidemitsu Fujishiro, Daisuke Fujita, Yukihiro Makino, Yuichi Abiko, Atsuko Hoshino, Masato Uesugi, Kentaro Yagi, Naoto Ota, Tsuguhito Haneda, Masakazu |
author_facet | Takiyama, Yumi Sera, Toshihiro Nakamura, Masanori Ishizeki, Kanaki Saijo, Yasuaki Yanagimachi, Tsuyoshi Maeda, Manami Bessho, Ryoichi Takiyama, Takao Kitsunai, Hiroya Sakagami, Hidemitsu Fujishiro, Daisuke Fujita, Yukihiro Makino, Yuichi Abiko, Atsuko Hoshino, Masato Uesugi, Kentaro Yagi, Naoto Ota, Tsuguhito Haneda, Masakazu |
author_sort | Takiyama, Yumi |
collection | PubMed |
description | BACKGROUND: Recent large-scale clinical studies demonstrate that sodium-glucose cotransporter 2 (SGLT2) inhibitors protect the diabetic kidney. However, clinical and animal studies have not shown the changes of the total glomeruli in the whole kidney treated with SGLT2 inhibitors. METHODS: We performed computed tomography (CT) imaging on mice using synchrotron radiation to investigate the impact of luseogliflozin, a SGLT2 inhibitor, on the number and volume of glomeruli in the whole kidney. FINDINGS: We did not observe a significant difference in the total glomerular number (N(glom)) among mice. Luseogliflozin redistributed the number of glomeruli in different regions, accompanied by the normalization of diabetes-augmented renal volume (V(kidney)). Diabetic db/db mice had a larger glomerular volume in the mid-cortex than did control db/m mice, and luseogliflozin increased the glomerular volume in all renal cortical zones of the whole kidney in db/db mice. According to the multivariate regression analysis, hemoglobin A1c level was the most relevant determinant of V(kidney), not N(glom) or mean glomerular volume (V(glom)), indicating that hyperglycemia induced renal (tubular) hypertrophy, but not glomerular enlargement. Luseogliflozin increased hypoxia in the juxtamedullary region, sustained upregulated renal renin expression and plasma renin activity, and failed to decrease albuminuria by downregulating megalin in db/db mice. INTERPRETATION: Based on our findings, SGLT2 inhibitors may alter glomerular distribution and size in addition to their glucose-lowering effects, presumably by affecting oxygen metabolism and humoral factors. FUND: Funding for this research was provided by The Japan Society for the Promotion of Science, the Japan Diabetes Foundation, and Asahikawa Medical University. |
format | Online Article Text |
id | pubmed-6197731 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-61977312018-10-24 Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8 Takiyama, Yumi Sera, Toshihiro Nakamura, Masanori Ishizeki, Kanaki Saijo, Yasuaki Yanagimachi, Tsuyoshi Maeda, Manami Bessho, Ryoichi Takiyama, Takao Kitsunai, Hiroya Sakagami, Hidemitsu Fujishiro, Daisuke Fujita, Yukihiro Makino, Yuichi Abiko, Atsuko Hoshino, Masato Uesugi, Kentaro Yagi, Naoto Ota, Tsuguhito Haneda, Masakazu EBioMedicine Research paper BACKGROUND: Recent large-scale clinical studies demonstrate that sodium-glucose cotransporter 2 (SGLT2) inhibitors protect the diabetic kidney. However, clinical and animal studies have not shown the changes of the total glomeruli in the whole kidney treated with SGLT2 inhibitors. METHODS: We performed computed tomography (CT) imaging on mice using synchrotron radiation to investigate the impact of luseogliflozin, a SGLT2 inhibitor, on the number and volume of glomeruli in the whole kidney. FINDINGS: We did not observe a significant difference in the total glomerular number (N(glom)) among mice. Luseogliflozin redistributed the number of glomeruli in different regions, accompanied by the normalization of diabetes-augmented renal volume (V(kidney)). Diabetic db/db mice had a larger glomerular volume in the mid-cortex than did control db/m mice, and luseogliflozin increased the glomerular volume in all renal cortical zones of the whole kidney in db/db mice. According to the multivariate regression analysis, hemoglobin A1c level was the most relevant determinant of V(kidney), not N(glom) or mean glomerular volume (V(glom)), indicating that hyperglycemia induced renal (tubular) hypertrophy, but not glomerular enlargement. Luseogliflozin increased hypoxia in the juxtamedullary region, sustained upregulated renal renin expression and plasma renin activity, and failed to decrease albuminuria by downregulating megalin in db/db mice. INTERPRETATION: Based on our findings, SGLT2 inhibitors may alter glomerular distribution and size in addition to their glucose-lowering effects, presumably by affecting oxygen metabolism and humoral factors. FUND: Funding for this research was provided by The Japan Society for the Promotion of Science, the Japan Diabetes Foundation, and Asahikawa Medical University. Elsevier 2018-10-12 /pmc/articles/PMC6197731/ /pubmed/30322799 http://dx.doi.org/10.1016/j.ebiom.2018.09.048 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Research paper Takiyama, Yumi Sera, Toshihiro Nakamura, Masanori Ishizeki, Kanaki Saijo, Yasuaki Yanagimachi, Tsuyoshi Maeda, Manami Bessho, Ryoichi Takiyama, Takao Kitsunai, Hiroya Sakagami, Hidemitsu Fujishiro, Daisuke Fujita, Yukihiro Makino, Yuichi Abiko, Atsuko Hoshino, Masato Uesugi, Kentaro Yagi, Naoto Ota, Tsuguhito Haneda, Masakazu Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8 |
title | Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8 |
title_full | Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8 |
title_fullStr | Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8 |
title_full_unstemmed | Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8 |
title_short | Impacts of Diabetes and an SGLT2 Inhibitor on the Glomerular Number and Volume in db/db Mice, as Estimated by Synchrotron Radiation Micro-CT at SPring-8 |
title_sort | impacts of diabetes and an sglt2 inhibitor on the glomerular number and volume in db/db mice, as estimated by synchrotron radiation micro-ct at spring-8 |
topic | Research paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6197731/ https://www.ncbi.nlm.nih.gov/pubmed/30322799 http://dx.doi.org/10.1016/j.ebiom.2018.09.048 |
work_keys_str_mv | AT takiyamayumi impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT seratoshihiro impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT nakamuramasanori impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT ishizekikanaki impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT saijoyasuaki impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT yanagimachitsuyoshi impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT maedamanami impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT besshoryoichi impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT takiyamatakao impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT kitsunaihiroya impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT sakagamihidemitsu impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT fujishirodaisuke impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT fujitayukihiro impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT makinoyuichi impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT abikoatsuko impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT hoshinomasato impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT uesugikentaro impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT yaginaoto impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT otatsuguhito impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 AT hanedamasakazu impactsofdiabetesandansglt2inhibitorontheglomerularnumberandvolumeindbdbmiceasestimatedbysynchrotronradiationmicroctatspring8 |