Loss of CXCR3 expression on memory B cells in individuals with long-standing type 1 diabetes.
| Citation | Powell, Wendy E, et al. “Loss of CXCR3 Expression on Memory B Cells in Individuals With Long-Standing Type 1 Diabetes”. 2018. Diabetologia, vol. 61, no. 8, 2018, pp. 1794–1803. |
| Center | Yale University |
| Author | Wendy E Powell, Stephanie J Hanna, Claire N Hocter, Emma Robinson, Joanne Davies, Gareth J Dunseath, Stephen Luzio, Daniel Farewell, Li Wen, Colin M Dayan, David A Price, Kristin Ladell, Susan Wong |
| Keywords | autoimmunity, B cells, B220, BAFF, CD24, CD95, CXCL10, CXCL11, CXCR3, type 1 diabetes |
| Abstract |
AIMS/HYPOTHESIS: Islet-specific autoantibodies can predict the development of type 1 diabetes. However, it remains unclear if B cells, per se, contribute to the causal pancreatic immunopathology. We aimed to identify phenotypic signatures of disease progression among naive and memory B cell subsets in the peripheral blood of individuals with type 1 diabetes. METHODS: A total of 69 participants were recruited across two separate cohorts, one for discovery purposes and the other for validation purposes. Each cohort comprised two groups of individuals with type 1 diabetes (one with newly diagnosed type 1 diabetes and the other with long-standing type 1 diabetes) and one group of age- and sex-matched healthy donors. The phenotypic characteristics of circulating naive and memory B cells were investigated using polychromatic flow cytometry, and serum concentrations of various chemokines and cytokines were measured using immunoassays. RESULTS: A disease-linked phenotype was detected in individuals with long-standing type 1 diabetes, characterised by reduced C-X-C motif chemokine receptor 3 (CXCR3) expression on switched (CD27IgD) and unswitched (CD27IgD) memory B cells. These changes were associated with raised serum concentrations of B cell activating factor and of the CXCR3 ligands, chemokine (C-X-C motif) ligand (CXCL)10 and CXCL11. A concomitant reduction in CXCR3 expression was also identified on T cells. CONCLUSIONS/INTERPRETATION: Our data reveal a statistically robust set of abnormalities that indicate an association between type 1 diabetes and long-term dysregulation of a chemokine ligand/receptor system that controls B cell migration. |
| Year of Publication |
2018
|
| Journal |
Diabetologia
|
| Volume |
61
|
| Issue |
8
|
| Number of Pages |
1794-1803
|
| Date Published |
12/2018
|
| ISSN Number |
1432-0428
|
| DOI |
10.1007/s00125-018-4651-x
|
| Alternate Journal |
Diabetologia
|
| PMCID |
PMC6061155
|
| PMID |
29881878
|
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