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2. Immunological biomarkers in patients with radiographic axial spondyloarthritis, an exploratory longitudinal Swedish study

4. Decreased levels of T follicular helper (CD4+CXCR5+) cells and CD27+CD38+ and CD27+CD38− B cells in ankylosing spondylitis patients correlate with markers of inflammation

5. Protein profiling in presymptomatic individuals separates myeloperoxidase-antineutrophil cytoplasmic antibody and proteinase 3-antineutrophil cytoplasmic antibody vasculitides

10. Increased proportions of inflammatory T cells and their correlations with cytokines and clinical parameters in patients with ankylosing spondylitis from northern Sweden

11. HSC70 is a novel binding partner involved in the capture of immunoglobulins on B cells in the NOD mouse

15. Atherosclerosis in rheumatoid arthritis : associations between anti-cytomegalovirus IgG antibodies, CD4+CD28null T-cells, CD8+CD28null T-cells and intima-media thickness

16. Anti-CD74 IgA autoantibodies in radiographic axial spondyloarthritis : a longitudinal Swedish study

21. Increased Proportion of TH17, TH22 and TC17 Cells and the Correlation to IL-22 and Clinical Parameters in Patients with Ankylosing Spondylitis from Northern Sweden

22. Protein profiling in individuals before onset of anca-associated vasculitis

31. MOESM4 of Protein profiling and network enrichment analysis in individuals before and after the onset of rheumatoid arthritis

32. Innate lymphoid cells are present in gingivitis and periodontitis

34. EDAR mutation in autosomal dominant hypohidrotic ectodermal dysplasia in two Swedish families

38. Contribution of both B-cell intrinsic alterations as well as non-hematopoietic-derived factors in the enhanced immune response of the NOD mouse

42. Cytotoxic immune responses in the lungs correlate to disease severity in patients with hantavirus infection

43. Increased expression of TACI on NOD B cells results in germinal centre reaction anomalies, enhanced plasma cell differentiation and immunoglobulin production

46. Non-Hematopoietic and Hematopoietic SIRPα Signaling Differently Regulates Murine B Cell Maturation in Bone Marrow and Spleen

47. Contribution of autoallergy to the pathogenesis in the NOD mice

48. Lack of non-hematopoietic SIRPα signaling disturbs the splenic marginal zone architecture resulting in accumulation and displacement of marginal zone B cells

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