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Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice

OBJECTIVE: Insulitis is an important pathological feature of autoimmune diabetes; however, mechanisms governing the recruitment of diabetogenic T-cells into pancreatic islets are poorly understood. Here, we determined the importance of leukocyte integrins β(2)(Itgb2) and αL (ItgaL) in developing ins...

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Autores principales: Glawe, John D., Patrick, D. Ross, Huang, Meng, Sharp, Christopher D., Barlow, Shayne C., Kevil, Christopher G.
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2682677/
https://www.ncbi.nlm.nih.gov/pubmed/19223596
http://dx.doi.org/10.2337/db08-0804
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author Glawe, John D.
Patrick, D. Ross
Huang, Meng
Sharp, Christopher D.
Barlow, Shayne C.
Kevil, Christopher G.
author_facet Glawe, John D.
Patrick, D. Ross
Huang, Meng
Sharp, Christopher D.
Barlow, Shayne C.
Kevil, Christopher G.
author_sort Glawe, John D.
collection PubMed
description OBJECTIVE: Insulitis is an important pathological feature of autoimmune diabetes; however, mechanisms governing the recruitment of diabetogenic T-cells into pancreatic islets are poorly understood. Here, we determined the importance of leukocyte integrins β(2)(Itgb2) and αL (ItgaL) in developing insulitis and frank diabetes. RESEARCH DESIGN AND METHODS: Gene-targeted mutations of either Itgb2 or ItgaL were established on the NOD/LtJ mouse strain. Experiments were performed to measure insulitis and diabetes development. Studies were also performed measuring mutant T-cell adhesion to islet microvascular endothelial cells under hydrodynamic flow conditions. T-cell adhesion molecule profiles and adoptive transfer studies were also performed. RESULTS: Genetic deficiency of either Itgb2 or ItgaL completely prevented the development of hyperglycemia and frank diabetes in NOD mice. Loss of Itgb2 or ItgaL prevented insulitis with Itgb2 deficiency conferring complete protection. In vitro hydrodynamic flow adhesion studies also showed that loss of Itgb2 completely abrogated T-cell adhesion. However, ItgaL deficiency did not alter NOD T-cell adhesion to or transmigration across islet endothelial cells. Adoptive transfer of ItgaL-deficient splenocytes into NOD/Rag-1 mice did not result in development of diabetes, suggesting a role for ItgaL in NOD/LtJ T-cell activation. CONCLUSIONS: Together, these data demonstrate that genetic deficiency of Itgb2 or ItgaL confers protection against autoimmune diabetes through distinctly different mechanisms.
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spelling pubmed-26826772010-06-01 Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice Glawe, John D. Patrick, D. Ross Huang, Meng Sharp, Christopher D. Barlow, Shayne C. Kevil, Christopher G. Diabetes Original Article OBJECTIVE: Insulitis is an important pathological feature of autoimmune diabetes; however, mechanisms governing the recruitment of diabetogenic T-cells into pancreatic islets are poorly understood. Here, we determined the importance of leukocyte integrins β(2)(Itgb2) and αL (ItgaL) in developing insulitis and frank diabetes. RESEARCH DESIGN AND METHODS: Gene-targeted mutations of either Itgb2 or ItgaL were established on the NOD/LtJ mouse strain. Experiments were performed to measure insulitis and diabetes development. Studies were also performed measuring mutant T-cell adhesion to islet microvascular endothelial cells under hydrodynamic flow conditions. T-cell adhesion molecule profiles and adoptive transfer studies were also performed. RESULTS: Genetic deficiency of either Itgb2 or ItgaL completely prevented the development of hyperglycemia and frank diabetes in NOD mice. Loss of Itgb2 or ItgaL prevented insulitis with Itgb2 deficiency conferring complete protection. In vitro hydrodynamic flow adhesion studies also showed that loss of Itgb2 completely abrogated T-cell adhesion. However, ItgaL deficiency did not alter NOD T-cell adhesion to or transmigration across islet endothelial cells. Adoptive transfer of ItgaL-deficient splenocytes into NOD/Rag-1 mice did not result in development of diabetes, suggesting a role for ItgaL in NOD/LtJ T-cell activation. CONCLUSIONS: Together, these data demonstrate that genetic deficiency of Itgb2 or ItgaL confers protection against autoimmune diabetes through distinctly different mechanisms. American Diabetes Association 2009-06 2009-02-17 /pmc/articles/PMC2682677/ /pubmed/19223596 http://dx.doi.org/10.2337/db08-0804 Text en © 2009 by the American Diabetes Association.
spellingShingle Original Article
Glawe, John D.
Patrick, D. Ross
Huang, Meng
Sharp, Christopher D.
Barlow, Shayne C.
Kevil, Christopher G.
Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice
title Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice
title_full Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice
title_fullStr Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice
title_full_unstemmed Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice
title_short Genetic Deficiency of Itgb2 or ItgaL Prevents Autoimmune Diabetes Through Distinctly Different Mechanisms in NOD/LtJ Mice
title_sort genetic deficiency of itgb2 or itgal prevents autoimmune diabetes through distinctly different mechanisms in nod/ltj mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2682677/
https://www.ncbi.nlm.nih.gov/pubmed/19223596
http://dx.doi.org/10.2337/db08-0804
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