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Methods to Assess Beta Cell Death Mediated by Cytotoxic T Lymphocytes
Published on: June 16, 2011
Evidence that beta cell death in the nonobese diabetic mouse is Fas independent
H E Thomas1, R Darwiche, J A Corbett
1Autoimmunity and Transplantation Division, The Walter and Eliza Hall Institute of Medical Research, Royal Melbourne Hospital, Victoria, Australia.
Abstract:
Recent studies suggest that Fas expression on pancreatic beta cells may be important in the development of autoimmune diabetes in the nonobese diabetic (NOD) mouse. To address this, pancreatic islets from NOD mice were analyzed by flow cytometry to directly identify which cells express Fas and Fas ligand (FasL) ex vivo and after in vitro culture with cytokines. Fas expression was not detected on beta cells isolated from young (35 days) NOD mice. In vitro, incubation of NOD mouse islets with both IL-1 and IFN-gamma was required to achieve sufficient Fas expression and sensitivity for islets to be susceptible to lysis by soluble FasL. In islets isolated from older (>/=125 days) NOD mice, Fas expression was detected on a limited number of beta cells (1-5%). FasL was not detected on beta cells from either NOD or Fas-deficient MRLlpr/lpr islets. Also, both NOD and MRLlpr/lpr islets were equally susceptible to cytokine-induced cell death. This eliminates the possibility that cytokine-treated murine islet cells commit "suicide" due to simultaneous expression of Fas and FasL. Last, we show that NO is not required for cytokine-induced Fas expression and Fas-mediated apoptosis of islet cells. These findings indicate that beta cells can be killed by Fas-dependent cytotoxicity; however, our results raise further doubts about the clinical significance of Fas-mediated beta cell destruction because few Fas-positive cells were isolated immediately before the development of diabetes.
Insights
Fas expression on pancreatic beta cells is induced by cytokines, but its role in autoimmune diabetes is questionable due to low expression levels in nonobese diabetic mice.
Area of Science:
- Immunology
- Endocrinology
- Diabetes Research
Background:
- Autoimmune diabetes, such as in nonobese diabetic (NOD) mice, may involve Fas expression on pancreatic beta cells.
- Understanding the role of Fas and Fas ligand (FasL) in beta cell apoptosis is crucial for diabetes research.
Purpose of the Study:
- To investigate Fas and FasL expression on pancreatic beta cells in NOD mice.
- To determine the conditions required for Fas-mediated apoptosis of beta cells.
- To assess the clinical relevance of Fas-mediated beta cell destruction in autoimmune diabetes.
Main Methods:
- Flow cytometry analysis of pancreatic islets from NOD mice.
- In vitro culture of islets with cytokines (IL-1 and IFN-gamma).
- Assessment of beta cell susceptibility to FasL-mediated lysis and cytokine-induced cell death.
Main Results:
- Fas expression was not detected on beta cells from young NOD mice.
- Cytokine incubation (IL-1 and IFN-gamma) induced Fas expression and FasL sensitivity in NOD mouse islets.
- Limited Fas expression (1-5%) was observed on beta cells from older NOD mice.
- FasL was not detected on beta cells from NOD or MRLlpr/lpr islets.
- Cytokine-induced cell death was not dependent on simultaneous Fas and FasL expression.
Conclusions:
- Beta cells can undergo Fas-dependent cytotoxicity.
- The clinical significance of Fas-mediated beta cell destruction in autoimmune diabetes is uncertain due to low Fas expression prior to disease onset.

