Cargando…

Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes

Endothelial progenitor cells (EPCs), critical for mediating vascular repair, are dysfunctional in a hyperglycemic and/or hypercholesterolemic environment. Their dysfunction contributes to the progression of diabetic macro- and microvascular complications. Activation of “cholesterol-sensing” nuclear...

Descripción completa

Detalles Bibliográficos
Autores principales: Hazra, Sugata, Rasheed, Adil, Bhatwadekar, Ashay, Wang, Xiaoxin, Shaw, Lynn C., Patel, Monika, Caballero, Sergio, Magomedova, Lilia, Solis, Nathaniel, Yan, Yuanqing, Wang, Weidong, Thinschmidt, Jeffrey S., Verma, Amrisha, Li, Qiuhong, Levi, Moshe, Cummins, Carolyn L., Grant, Maria B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3501845/
https://www.ncbi.nlm.nih.gov/pubmed/22891211
http://dx.doi.org/10.2337/db11-1596
_version_ 1782250229155758080
author Hazra, Sugata
Rasheed, Adil
Bhatwadekar, Ashay
Wang, Xiaoxin
Shaw, Lynn C.
Patel, Monika
Caballero, Sergio
Magomedova, Lilia
Solis, Nathaniel
Yan, Yuanqing
Wang, Weidong
Thinschmidt, Jeffrey S.
Verma, Amrisha
Li, Qiuhong
Levi, Moshe
Cummins, Carolyn L.
Grant, Maria B.
author_facet Hazra, Sugata
Rasheed, Adil
Bhatwadekar, Ashay
Wang, Xiaoxin
Shaw, Lynn C.
Patel, Monika
Caballero, Sergio
Magomedova, Lilia
Solis, Nathaniel
Yan, Yuanqing
Wang, Weidong
Thinschmidt, Jeffrey S.
Verma, Amrisha
Li, Qiuhong
Levi, Moshe
Cummins, Carolyn L.
Grant, Maria B.
author_sort Hazra, Sugata
collection PubMed
description Endothelial progenitor cells (EPCs), critical for mediating vascular repair, are dysfunctional in a hyperglycemic and/or hypercholesterolemic environment. Their dysfunction contributes to the progression of diabetic macro- and microvascular complications. Activation of “cholesterol-sensing” nuclear receptors, the liver X receptors (LXRα/LXRβ), protects against atherosclerosis by transcriptional regulation of genes important in promoting cholesterol efflux and inhibiting inflammation. We hypothesized that LXR activation with a synthetic ligand would correct diabetes-induced EPC dysfunction and improve diabetic retinopathy. Studies were performed in streptozotocin (STZ)-injected DBA/2J mice fed a high-fat Western diet (DBA/STZ/WD) and treated with the LXR agonist GW3965 and in LXRα(−/−), LXRβ(−/−), and LXRα/β(−/−) mice. Retinas were evaluated for number of acellular capillaries and glial fibrillary acidic protein (GFAP) immunoreactivity. Bone marrow EPCs were analyzed for migratory function and gene expression. Compared with vehicle-treated DBA/STZ/WD mice, GW3965 treated mice showed fewer acellular capillaries and reduced GFAP expression. These mice also exhibited enhanced EPC migration and restoration of inflammatory and oxidative stress genes toward nondiabetic levels. LXRα(−/−), LXRβ(−/−), and LXRα/β(−/−) mice developed acellular capillaries and EPC dysfunction similar to the DBA/STZ/WD mice. These studies support a key role for LXR in retinal and bone marrow progenitor dysfunction associated with type 1 diabetes. LXR agonists may represent promising pharmacologic targets for correcting retinopathy and EPC dysfunction.
format Online
Article
Text
id pubmed-3501845
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher American Diabetes Association
record_format MEDLINE/PubMed
spelling pubmed-35018452013-12-01 Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes Hazra, Sugata Rasheed, Adil Bhatwadekar, Ashay Wang, Xiaoxin Shaw, Lynn C. Patel, Monika Caballero, Sergio Magomedova, Lilia Solis, Nathaniel Yan, Yuanqing Wang, Weidong Thinschmidt, Jeffrey S. Verma, Amrisha Li, Qiuhong Levi, Moshe Cummins, Carolyn L. Grant, Maria B. Diabetes Complications Endothelial progenitor cells (EPCs), critical for mediating vascular repair, are dysfunctional in a hyperglycemic and/or hypercholesterolemic environment. Their dysfunction contributes to the progression of diabetic macro- and microvascular complications. Activation of “cholesterol-sensing” nuclear receptors, the liver X receptors (LXRα/LXRβ), protects against atherosclerosis by transcriptional regulation of genes important in promoting cholesterol efflux and inhibiting inflammation. We hypothesized that LXR activation with a synthetic ligand would correct diabetes-induced EPC dysfunction and improve diabetic retinopathy. Studies were performed in streptozotocin (STZ)-injected DBA/2J mice fed a high-fat Western diet (DBA/STZ/WD) and treated with the LXR agonist GW3965 and in LXRα(−/−), LXRβ(−/−), and LXRα/β(−/−) mice. Retinas were evaluated for number of acellular capillaries and glial fibrillary acidic protein (GFAP) immunoreactivity. Bone marrow EPCs were analyzed for migratory function and gene expression. Compared with vehicle-treated DBA/STZ/WD mice, GW3965 treated mice showed fewer acellular capillaries and reduced GFAP expression. These mice also exhibited enhanced EPC migration and restoration of inflammatory and oxidative stress genes toward nondiabetic levels. LXRα(−/−), LXRβ(−/−), and LXRα/β(−/−) mice developed acellular capillaries and EPC dysfunction similar to the DBA/STZ/WD mice. These studies support a key role for LXR in retinal and bone marrow progenitor dysfunction associated with type 1 diabetes. LXR agonists may represent promising pharmacologic targets for correcting retinopathy and EPC dysfunction. American Diabetes Association 2012-12 2012-11-15 /pmc/articles/PMC3501845/ /pubmed/22891211 http://dx.doi.org/10.2337/db11-1596 Text en © 2012 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Complications
Hazra, Sugata
Rasheed, Adil
Bhatwadekar, Ashay
Wang, Xiaoxin
Shaw, Lynn C.
Patel, Monika
Caballero, Sergio
Magomedova, Lilia
Solis, Nathaniel
Yan, Yuanqing
Wang, Weidong
Thinschmidt, Jeffrey S.
Verma, Amrisha
Li, Qiuhong
Levi, Moshe
Cummins, Carolyn L.
Grant, Maria B.
Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes
title Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes
title_full Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes
title_fullStr Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes
title_full_unstemmed Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes
title_short Liver X Receptor Modulates Diabetic Retinopathy Outcome in a Mouse Model of Streptozotocin-Induced Diabetes
title_sort liver x receptor modulates diabetic retinopathy outcome in a mouse model of streptozotocin-induced diabetes
topic Complications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3501845/
https://www.ncbi.nlm.nih.gov/pubmed/22891211
http://dx.doi.org/10.2337/db11-1596
work_keys_str_mv AT hazrasugata liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT rasheedadil liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT bhatwadekarashay liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT wangxiaoxin liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT shawlynnc liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT patelmonika liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT caballerosergio liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT magomedovalilia liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT solisnathaniel liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT yanyuanqing liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT wangweidong liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT thinschmidtjeffreys liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT vermaamrisha liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT liqiuhong liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT levimoshe liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT cumminscarolynl liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes
AT grantmariab liverxreceptormodulatesdiabeticretinopathyoutcomeinamousemodelofstreptozotocininduceddiabetes