Autoantibodies against specific nuclear antigens are present in psoriatic disease and are diminished by secukinumab
CLINICA CHIMICA ACTA
Authors: Patrikiou, Eleni; Liaskos, Christos; Mavropoulos, Athanasios; Ntavari, Niki; Gkoutzourelas, Athanasios; Simopoulou, Theodora; Fechner, Kai; Scheper, Thomas; Meyer, Wolfgang; Katsiari, Christina G.; Roussaki-Schulze, Aggeliki; Zafiriou, Efterpi; Sakkas, Lazaros, I; Bogdanos, Dimitrios P.
Abstract
Anti-nuclear antibodies (ANA) are frequently detected in patients with psoriasis (Ps) and psoriatic arthritis (PsA), but their target autoantigens remain unknown. We assessed antibody (ab) reactivity against 23 known nuclear antigens in patients with Ps and PsA and assess the effects of secukinumab (anti-IL17A) treatment on ANA levels. A total of 201 patients, 101 with Ps and 100 with PsA, and 50 ANA-negative healthy controls (HCs) were tested for ANAs by a line immunoassay testing reactivity to 23 nuclear antigens. Ab reactivity to at least 1 antigen was found in 20.4% psoriatic disease patients (25.7% Ps and 15% PsA) compared to 8% HCs (p = ns), the most frequent being against dense fine speckled 70 (DFS70) (6.5%). In Ps and PsA patients with secukinumab-induced remission, anti-DFS70 and other antigen-specific autoantibodies were diminished over time. No decline was noted for IgG abs against antigens from pathogens such as cytomegalovirus, Epstein-Barr virus and Helicobacter pylori. Autoantibody decrease was associated with significant reduction of plasmablasts, follicular B and follicular T cells. In conclusion, one third of antigen-specific ANA patients with psoriatic disease recognize DFS70. Secukinumab decreases nuclear antigen autoreactivity, plasmablasts, follicular B and follicular T cells, highlighting a new mechanism of its action.
The antibody response to the glycan alpha-Gal correlates with COVID-19 disease symptoms
JOURNAL OF MEDICAL VIROLOGY
Authors: Miguel Urra, Jose; Ferreras-Colino, Elisa; Contreras, Marinela; Cabrera, Carmen M.; Fernandez de Mera, Isabel G.; Villar, Margarita; Cabezas-Cruz, Alejandro; Gortazar, Christian; de la Fuente, Jose
Abstract
The coronavirus disease 2019 (COVID-19) pandemic caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has affected millions of people worldwide. Characterization of the immunological mechanisms involved in disease symptomatology and protective response is important to progress in disease control and prevention. Humans evolved by losing the capacity to synthesize the glycan Gal alpha 1-3Gal beta 1-(3)4GlcNAc-R (alpha-Gal), which resulted in the development of a protective response against pathogenic viruses and other microorganisms containing this modification on membrane proteins mediated by anti-alpha-Gal immunoglobulin M (IgM)/IgG antibodies produced in response to bacterial microbiota. In addition to anti-alpha-Gal antibody-mediated pathogen opsonization, this glycan induces various immune mechanisms that have shown protection in animal models against infectious diseases without inflammatory responses. In this study, we hypothesized that the immune response to alpha-Gal may contribute to the control of COVID-19. To address this hypothesis, we characterized the antibody response to alpha-Gal in patients at different stages of COVID-19 and in comparison with healthy control individuals. The results showed that while the inflammatory response and the anti-SARS-CoV-2 (Spike) IgG antibody titers increased, reduction in anti-alpha-Gal IgE, IgM, and IgG antibody titers and alteration of anti-alpha-Gal antibody isotype composition correlated with COVID-19 severity. The results suggested that the inhibition of the alpha-Gal-induced immune response may translate into more aggressive viremia and severe disease inflammatory symptoms. These results support the proposal of developing interventions such as probiotics based on commensal bacteria with alpha-Gal epitopes to modify the microbiota and increase alpha-Gal-induced protective immune response and reduce severity of COVID-19.