Literature DB >> 22933624

Human lupus serum induces neutrophil-mediated organ damage in mice that is enabled by Mac-1 deficiency.

Florencia Rosetti1, Naotake Tsuboi, Kan Chen, Hiroshi Nishi, Thomas Ernandez, Sanjeev Sethi, Kevin Croce, George Stavrakis, Jorge Alcocer-Varela, Diana Gómez-Martin, Nico van Rooijen, Vasileios C Kyttaris, Andrew H Lichtman, George C Tsokos, Tanya N Mayadas.   

Abstract

Systemic lupus erythematosus (SLE) is a chronic, multiorgan inflammatory autoimmune disorder associated with high levels of circulating autoantibodies and immune complexes. We report that passive transfer of human SLE sera into mice expressing the uniquely human FcγRIIA and FcγRIIIB on neutrophils induces lupus nephritis and in some cases arthritis only when the mice additionally lack the CD18 integrin, Mac-1. The prevailing view is that Mac-1 on macrophages is responsible for immune complex clearance. However, disease permitted by the absence of Mac-1 is not related to enhanced renal immune complex deposition or in situ C1q/C3 complement activation and proceeds even in the absence of macrophages. Instead, disease is associated with increased FcγRIIA-induced neutrophil accumulation that is enabled by Mac-1 deficiency. Intravital microscopy in the cremasteric vasculature reveals that Mac-1 mitigates FcγRIIA-dependent neutrophil recruitment in response to deposited immune complexes. Our results provide direct evidence that human SLE immune complexes are pathogenic, demonstrate that neutrophils are primary mediators of end organ damage in a novel humanized lupus mouse model, and identify Mac-1 regulation of FcγRIIA-mediated neutrophil recruitment as a key step in development of target organ damage.

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Year:  2012        PMID: 22933624      PMCID: PMC3462585          DOI: 10.4049/jimmunol.1201594

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  51 in total

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8.  Overlapping roles of endothelial selectins and vascular cell adhesion molecule-1 in immune complex-induced leukocyte recruitment in the cremasteric microvasculature.

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6.  Combined protein- and nucleic acid-level effects of rs1143679 (R77H), a lupus-predisposing variant within ITGAM.

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9.  A Genetic Model of Constitutively Active Integrin CD11b/CD18.

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Review 10.  Beyond apoptosis in lupus.

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