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Janssen, L. M.

Publications and source records attributed to Janssen, L. M..

2 recordsLinked to original sources

Effect of Age on Xenobiotic-Induced Autoimmunity

Aging is associated with increased spontaneous autoantibody production and chronic inflammation, yet its impact on xenobiotic-induced autoimmunity remains unexplored. This study investigates the effect of age on mercury-induced autoimmunity (HgIA) in B10.S mice, a model of xenobiotic-induced autoimmunity characterized by anti-nucleolar autoantibodies (ANoA). Mature (3 months), adult (6 months), middle-aged (12 months), and old-age (24 months) mice were exposed to mercury (HgCl2) or phosphate-buffered saline (PBS) for 4-5 weeks. While spontaneous anti-nuclear antibodies (ANA) increased with age in PBS-treated mice (34% in middle-aged, 57% in old age mice), HgIA incidence declined in old age mice, with only 59% (26/44) developing significant ANoA titers compared to 91-100% in younger cohorts. Notably, 56% (10/18) of initially ANoA-negative old mice had detectable ANoA at a lower dilution, indicating a reduced but not absent response. ANoA negativity in old age mice was associated with lower immunoglobulin levels, reduced anti-chromatin antibodies, and diminished germinal center formation, suggestive of immunosenescence. Flow cytometry revealed age-related declines in CD4 T cells, with mercury exposure augmenting T-cell differentiation in younger but not old mice. These findings demonstrate that aging enhances spontaneous autoimmunity but impairs xenobiotic-induced autoimmunity, with a subset of old age mice retaining partial responsiveness at lower dilutions, highlighting the complex interplay between immunosenescence and environmental triggers.

immunology↗

Crystalline silica exposure induces multiple systemic autoimmune phenotypes including inflammatory arthritis and nephritis in Collaborative Cross mice with differing sub-clinical autoimmune profiles.

Inhalation of crystalline silica dust, an occupational hazard, has been strongly associated with the development of autoimmune connective tissue diseases, such as rheumatoid arthritis and systemic lupus erythematosus. However, it remains unclear if silica-mediated autoimmune disease requires preexisting subclinical autoimmunity, and to what extent the severity of the preexisting condition influences silica-induced disease. The aim of the current study was to examine whether silica-mediated autoimmune disease requires preexisting subclinical autoimmunity, using the Collaborative Cross (CC) mouse model system, recognized for its ability to mimic the genetic diversity observed in human populations. Sixty-one CC strains were assessed for the presence of subclinical autoimmunity via autoantibodies and inflammatory markers. Six CC strains, chosen to represent a range of subclinical autoimmunity, were exposed transorally to 5 mg silica or PBS and examined 12 weeks later for lung inflammation, autoantibody responses, total immunoglobulin levels, and the manifestation of glomerulonephritis and autoimmune arthritis. Results indicated a spectrum of spontaneous subclinical autoimmunity among naive CC strains, with silica exposure leading to significant pulmonary inflammation and systemic autoimmunity, including glomerulonephritis and synovitis. Notably, strains with pre-existing subclinical autoimmunity showed more severe disease outcomes post-exposure.

immunology↗