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Accelerated Type 1 Diabetes Induction in Mice by Adoptive Transfer of Diabetogenic CD4+ T Cells
Published on: May 6, 2013
Can CD44 Be a Mediator of Cell Destruction? The Challenge of Type 1 Diabetes
Nathalie Assayag-Asherie1, Dror Sever2, Marika Bogdani3
1The Lautenberg Center for Immunology and Cancer Research, IMRIC, The Hebrew University-Hadassah Medical School, Jerusalem 91120, Israel.
Abstract:
CD44 is a multi-functional receptor with multiple of isoforms engaged in modulation of cell trafficking and transmission of apoptotic signals. We have previously shown that injection of anti-CD44 antibody into NOD mice induced resistance to type 1 diabetes (T1D). In this communication we describe our efforts to understand the mechanism underlying this effect. We found that CD44-deficient NOD mice develop stronger resistance to T1D than wild-type littermates. This effect is not explained by the involvement of CD44 in cell migration, because CD44-deficient inflammatory cells surprisingly had greater invasive potential than the corresponding wild type cells, probably owing to molecular redundancy. We have previously reported and we show here again that CD44 expression and hyaluronic acid (HA, the principal ligand for CD44) accumulation are detected in pancreatic islets of diabetic NOD mice, but not of non-diabetic DBA/1 mice. Expression of CD44 on insulin-secreting β cells renders them susceptible to the autoimmune attack, and is associated with a diminution in β-cells function (e.g., less insulin production and/or insulin secretion) and possibly also with an enhanced apoptosis rate. The diabetes-supportive effect of CD44 expression on β cells was assessed by the TUNEL assay and further strengthened by functional assays exhibiting increased nitric oxide release, reduced insulin secretion after glucose stimulation and decreased insulin content in β cells. All these parameters could not be detected in CD44-deficient islets. We further suggest that HA-binding to CD44-expressing β cells is implicated in β-cell demise. Altogether, these data agree with the concept that CD44 is a receptor capable of modulating cell fate. This finding is important for other pathologies (e.g., cancer, neurodegenerative diseases) in which CD44 and HA appear to be implicated.
Insights
CD44 receptor deficiency enhances resistance to type 1 diabetes (T1D) in mice. This is linked to reduced pancreatic beta cell dysfunction and apoptosis, suggesting CD44
Area of Science:
- Immunology
- Endocrinology
- Cell Biology
Background:
- CD44 receptor and its ligand hyaluronic acid (HA) are implicated in autoimmune diseases.
- Previous studies showed anti-CD44 antibody treatment confers resistance to type 1 diabetes (T1D) in NOD mice.
Purpose of the Study:
- To elucidate the mechanism by which CD44 influences T1D development.
- To investigate the role of CD44 in pancreatic beta cell function and survival.
Main Methods:
- Comparison of T1D incidence in CD44-deficient and wild-type NOD mice.
- Assessment of inflammatory cell migration and invasive potential.
- Analysis of CD44 expression and HA accumulation in pancreatic islets.
- Evaluation of beta cell function, insulin production, and apoptosis using TUNEL assay and functional assays.
Main Results:
- CD44-deficient NOD mice exhibited stronger resistance to T1D than wild-type littermates.
- CD44 deficiency did not impair inflammatory cell migration; rather, it enhanced invasive potential.
- CD44 expression and HA accumulation were detected in islets of diabetic NOD mice but not non-diabetic mice.
- CD44 expression on beta cells correlated with impaired function, reduced insulin secretion, and increased apoptosis, which were absent in CD44-deficient islets.
Conclusions:
- CD44 expression on pancreatic beta cells promotes susceptibility to autoimmune attack and T1D.
- CD44-mediated signaling, potentially involving HA binding, contributes to beta cell demise.
- Targeting CD44 may offer a therapeutic strategy for type 1 diabetes and other CD44/HA-related pathologies.
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