AI Article Synopsis

  • Behçet's disease (BD) is an autoinflammatory condition linked to genetic factors and characterized by symptoms like mucosal ulceration, inflammation in various body systems, and an activated state of neutrophils.
  • In a study, neutrophils from 32 BD patients and 37 healthy controls were analyzed, revealing that BD patients had lower phagocytic capability and reactive oxygen species (ROS) production compared to controls, yet showed higher levels of neutrophil extracellular traps (NETs).
  • The results highlight that BD neutrophils are diverse, with an increase in low-density neutrophils (LDN) and a corresponding rise in NET production, which may play a role in BD's inflammatory processes and

Article Abstract

Background: Behçet's disease (BD) is a multisystem autoinflammatory disease characterised by mucosal ulceration, ocular, neural, joint and skin inflammation. The cause of BD is not known but there is a strong genetic association with HLA-B*51, IL10 and IL23R. Neutrophils are a first line of defence against invading pathogens and have been described as activated in patients with BD. Neutrophils can now be separated into different subsets, such as low density (LDN) and normal density (NDN) that have diverse functional roles. We wished to address neutrophil heterogeneity in patients with BD.

Methods: Peripheral blood neutrophils were obtained from 32 BD patients and 37 healthy aged-matched controls. Percoll isolation was used to isolate all neutrophils, while Ficol-Hypaque was used to obtain LDN and NDN. Phagocytic capacity and production of reactive oxygen species (ROS), and neutrophil extracellular traps (NET) stimulated with phorbol 12-myristate 13-acetate (PMA) and Escherichia coli (E.coli) were assessed in both groups.

Results: We have demonstrated reduced phagocytic capacity and ROS production but greater NET production by total neutrophils stimulated with PMA or E.coli from BD patients in comparison with healthy controls. Patients with BD had elevated numbers of LDN and lower number of NDN compared with healthy controls. However, both neutrophil subsets showed the same reduced ROS production and phagocytic function as total neutrophils in both groups.

Conclusion: Our novel findings indicate that the neutrophil population in BD is heterogeneous and the increased number of LDN in combination with greater NET production may contribute to the inflammatory response and pathogenesis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8973557PMC
http://dx.doi.org/10.1186/s12950-022-00302-1DOI Listing

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