Cargando…

Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes

Recently, the dipeptidyl peptidase‐4 (DPP‐4) inhibitor sitagliptin, a major anti‐hyperglycaemic agent, has received substantial attention as a therapeutic target for cardiovascular diseases via enhancing the number of circulating endothelial progenitor cells (EPCs). However, the direct effects of si...

Descripción completa

Detalles Bibliográficos
Autores principales: Dai, Xiaozhen, Zeng, Jun, Yan, Xiaoqing, Lin, Qian, Wang, Kai, Chen, Jing, Shen, Feixia, Gu, Xuemei, Wang, Yuehui, Chen, Jun, Pan, Kejian, Cai, Lu, Wintergerst, Kupper A., Tan, Yi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5742710/
https://www.ncbi.nlm.nih.gov/pubmed/28799229
http://dx.doi.org/10.1111/jcmm.13296
_version_ 1783288432638820352
author Dai, Xiaozhen
Zeng, Jun
Yan, Xiaoqing
Lin, Qian
Wang, Kai
Chen, Jing
Shen, Feixia
Gu, Xuemei
Wang, Yuehui
Chen, Jun
Pan, Kejian
Cai, Lu
Wintergerst, Kupper A.
Tan, Yi
author_facet Dai, Xiaozhen
Zeng, Jun
Yan, Xiaoqing
Lin, Qian
Wang, Kai
Chen, Jing
Shen, Feixia
Gu, Xuemei
Wang, Yuehui
Chen, Jun
Pan, Kejian
Cai, Lu
Wintergerst, Kupper A.
Tan, Yi
author_sort Dai, Xiaozhen
collection PubMed
description Recently, the dipeptidyl peptidase‐4 (DPP‐4) inhibitor sitagliptin, a major anti‐hyperglycaemic agent, has received substantial attention as a therapeutic target for cardiovascular diseases via enhancing the number of circulating endothelial progenitor cells (EPCs). However, the direct effects of sitagliptin on EPC function remain elusive. In this study, we evaluated the proangiogenic effects of sitagliptin on a diabetic hind limb ischaemia (HLI) model in vivo and on EPC culture in vitro. Treatment of db/db mice with sitagliptin (Januvia) after HLI surgery efficiently enhanced ischaemic angiogenesis and blood perfusion, which was accompanied by significant increases in circulating EPC numbers. EPCs derived from the bone marrow of normal mice were treated with high glucose to mimic diabetic hyperglycaemia. We found that high glucose treatment induced EPC apoptosis and tube formation impairment, which were significantly prevented by sitagliptin pretreatment. A mechanistic study found that high glucose treatment of EPCs induced dramatic increases in oxidative stress and apoptosis; pretreatment of EPCs with sitagliptin significantly attenuated high glucose‐induced apoptosis, tube formation impairment and oxidative stress. Furthermore, we found that sitagliptin restored the basal autophagy of EPCs that was impaired by high glucose via activating the AMP‐activated protein kinase/unc‐51‐like autophagy activating kinase 1 signalling pathway, although an autophagy inhibitor abolished the protective effects of sitagliptin on EPCs. Altogether, the results indicate that sitagliptin‐induced preservation of EPC angiogenic function results in an improvement of diabetic ischaemia angiogenesis and blood perfusion, which are most likely mediated by sitagliptin‐induced prevention of EPC apoptosis via augmenting autophagy.
format Online
Article
Text
id pubmed-5742710
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-57427102018-01-04 Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes Dai, Xiaozhen Zeng, Jun Yan, Xiaoqing Lin, Qian Wang, Kai Chen, Jing Shen, Feixia Gu, Xuemei Wang, Yuehui Chen, Jun Pan, Kejian Cai, Lu Wintergerst, Kupper A. Tan, Yi J Cell Mol Med Original Articles Recently, the dipeptidyl peptidase‐4 (DPP‐4) inhibitor sitagliptin, a major anti‐hyperglycaemic agent, has received substantial attention as a therapeutic target for cardiovascular diseases via enhancing the number of circulating endothelial progenitor cells (EPCs). However, the direct effects of sitagliptin on EPC function remain elusive. In this study, we evaluated the proangiogenic effects of sitagliptin on a diabetic hind limb ischaemia (HLI) model in vivo and on EPC culture in vitro. Treatment of db/db mice with sitagliptin (Januvia) after HLI surgery efficiently enhanced ischaemic angiogenesis and blood perfusion, which was accompanied by significant increases in circulating EPC numbers. EPCs derived from the bone marrow of normal mice were treated with high glucose to mimic diabetic hyperglycaemia. We found that high glucose treatment induced EPC apoptosis and tube formation impairment, which were significantly prevented by sitagliptin pretreatment. A mechanistic study found that high glucose treatment of EPCs induced dramatic increases in oxidative stress and apoptosis; pretreatment of EPCs with sitagliptin significantly attenuated high glucose‐induced apoptosis, tube formation impairment and oxidative stress. Furthermore, we found that sitagliptin restored the basal autophagy of EPCs that was impaired by high glucose via activating the AMP‐activated protein kinase/unc‐51‐like autophagy activating kinase 1 signalling pathway, although an autophagy inhibitor abolished the protective effects of sitagliptin on EPCs. Altogether, the results indicate that sitagliptin‐induced preservation of EPC angiogenic function results in an improvement of diabetic ischaemia angiogenesis and blood perfusion, which are most likely mediated by sitagliptin‐induced prevention of EPC apoptosis via augmenting autophagy. John Wiley and Sons Inc. 2017-08-10 2018-01 /pmc/articles/PMC5742710/ /pubmed/28799229 http://dx.doi.org/10.1111/jcmm.13296 Text en © 2017 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Dai, Xiaozhen
Zeng, Jun
Yan, Xiaoqing
Lin, Qian
Wang, Kai
Chen, Jing
Shen, Feixia
Gu, Xuemei
Wang, Yuehui
Chen, Jun
Pan, Kejian
Cai, Lu
Wintergerst, Kupper A.
Tan, Yi
Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes
title Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes
title_full Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes
title_fullStr Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes
title_full_unstemmed Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes
title_short Sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes
title_sort sitagliptin‐mediated preservation of endothelial progenitor cell function via augmenting autophagy enhances ischaemic angiogenesis in diabetes
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5742710/
https://www.ncbi.nlm.nih.gov/pubmed/28799229
http://dx.doi.org/10.1111/jcmm.13296
work_keys_str_mv AT daixiaozhen sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT zengjun sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT yanxiaoqing sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT linqian sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT wangkai sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT chenjing sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT shenfeixia sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT guxuemei sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT wangyuehui sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT chenjun sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT pankejian sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT cailu sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT wintergerstkuppera sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes
AT tanyi sitagliptinmediatedpreservationofendothelialprogenitorcellfunctionviaaugmentingautophagyenhancesischaemicangiogenesisindiabetes