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Rimoin, A.

Publications and source records attributed to Rimoin, A..

2 recordsLinked to original sources

Gut barrier integrity biomarkers are associated with increased inflammation and predict disease status in hospitalized COVID-19 patients

The COVID-19 global pandemic persists as an endemic disease with frequent case spikes and a significant continued burden on public health. Although most COVID-19 cases are asymptomatic or mild, severe infections requiring hospitalization have resulted in likely more than 14 million cumulative deaths to date. One hallmark of severe COVID-19 is a dysregulated immune response that leads to systemic inflammation and contributes to disease severity and mortality but is not explained by viral replication alone. Severe COVID-19 has been shown to disrupt the gut microbiome and increase intestinal permeability which may contribute to immune dysregulation and systemic inflammation. In this study, we investigated the differences in plasma biomarkers for microbial translocation and gut barrier damage as well as circulating cytokines between healthy volunteers and patients hospitalized with COVID-19. We then performed a correlation analysis to understand how the relationships between these plasma biomarkers differed and used a random forest model to assess their accuracy in distinguishing between these two groups. Our results demonstrated that hospitalized COVID-19 patients have elevated concentrations of pro-inflammatory cytokines and markers of microbial translocation, and that the relationships between these biomarkers were significantly altered compared to healthy volunteers, especially those related to the mucosal associated homeostatic cytokines IL-17A and IL-23. Furthermore, IL-6 and LBP were the top biomarkers for prediction accuracy in our random forest model, highlighting the importance of managing microbial translocation in COVID-19 and its potential utility as a biomarker for disease severity. IMPORTANCECOVID-19 continues to be a burden on public health. Understanding how plasma biomarkers differ between healthy and acutely infected individuals can help in understanding pathogenesis and predict disease severity. It has been demonstrated that COVID-19 disrupts the gut microbiome and intestinal permeability, which contributes to systemic inflammation. Our study highlights the link between gut barrier integrity and inflammation in hospitalized SARS-CoV-2 cases, demonstrating the usefulness of gut barrier integrity biomarkers in predicting disease severity, and offers insights for therapeutic interventions in acute COVID-19 infection.

immunology↗

Hybrid immunity shifts the Fc-effector quality of SARS-CoV-2 mRNA vaccine-induced immunity

Despite the robust immunogenicity of SARS-CoV-2 mRNA vaccines, emerging data reveal enhanced neutralizing antibody and T cell cross-reactivity among individuals that previously experienced COVID-19, pointing to a hybrid immune advantage with infection-associated immune priming. Beyond neutralizing antibodies and T cell immunity, mounting data point to a potential role for additional antibody effector functions, including opsinophagocytic activity, in the resolution of symptomatic COVID-19. Whether hybrid immunity modifies the Fc-effector profile of the mRNA vaccine-induced immune response remains incompletely understood. Thus, here we profiled the SARS-CoV-2 specific humoral immune response in a group of individuals with and without prior COVID-19. As expected, hybrid Spike-specific antibody titers were enhanced following the primary dose of the mRNA vaccine, but were similar to those achieved by naive vaccinees after the second mRNA vaccine dose. Conversely, Spike-specific vaccine-induced Fc-receptor binding antibody levels were higher after the primary immunization in individuals with prior COVID-19, and remained higher following the second dose compared to naive individuals, suggestive of a selective improvement in the quality, rather than the quantity, of the hybrid humoral immune response. Thus, while the magnitude of antibody titers alone may suggest that any two antigen exposures - either hybrid immunity or two doses of vaccine alone - represent a comparable prime/boost immunologic education, we find that hybrid immunity offers a qualitatively improved antibody response able to better leverage Fc effector functions against conserved regions of the virus.

immunology↗