The Peri-islet Basement Membrane, a Barrier to Infiltrating Leukocytes in Type 1 Diabetes in Mouse and Human

Author:

Korpos Éva1,Kadri Nadir23,Kappelhoff Reinhild4,Wegner Jeannine1,Overall Christopher M.45,Weber Ekkehard6,Holmberg Dan7,Cardell Susanna2,Sorokin Lydia1

Affiliation:

1. Institute of Physiological Chemistry and Pathobiochemistry, Münster University, Münster, Germany

2. Department of Microbiology and Immunobiology, University of Gothenburg, Gothenburg, Sweden

3. Department of Microbiology, Tumor and Cell Biology, Karolinska Institute, Stockholm, Sweden

4. Department of Oral Biological and Medical Sciences, University of British Columbia, Vancouver, British Columbia, Canada

5. Department of Biochemistry and Molecular Biology, Centre for Blood Research, University of British Columbia, Vancouver, British Columbia, Canada

6. Institute of Biochemistry, Martin-Luther University of Halle-Wittenberg, Halle, Germany

7. Center for Infection and Inflammation Research, Copenhagen University, Copenhagen, Denmark

Abstract

We provide the first comprehensive analysis of the extracellular matrix (ECM) composition of peri-islet capsules, composed of the peri-islet basement membrane (BM) and subjacent interstitial matrix (IM), in development of type 1 diabetes in NOD mice and in human type 1 diabetes. Our data demonstrate global loss of peri-islet BM and IM components only at sites of leukocyte infiltration into the islet. Stereological analyses reveal a correlation between incidence of insulitis and the number of islets showing loss of peri-islet BM versus islets with intact BMs, suggesting that leukocyte penetration of the peri-islet BM is a critical step. Protease- and protease inhibitor–specific microarray analyses (CLIP-CHIP) of laser-dissected leukocyte infiltrated and noninfiltrated pancreatic islets and confirmatory quantitative real time PCR and protein analyses identified cathepsin S, W, and C activity at sites of leukocyte penetration of the peri-islet BM in association with a macrophage subpopulation in NOD mice and human type 1 diabetic samples and, hence, potentially a novel therapeutic target specifically acting at the islet penetration stage. Interestingly, the peri-islet BM and underlying IM are reconstituted once inflammation subsides, indicating that the peri-islet BM-producing cells are not lost due to the inflammation, which has important ramifications to islet transplantation studies.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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