Publications by authors named "Wynne Weston-Davies"

Article Synopsis
  • The study investigates how serum biomarker profiling can help classify COVID-19 patients' severity (mild, moderate, severe) and assist in triaging, potentially easing the strain on senior clinicians during the pandemic.
  • Using 76 immunological biomarkers from patients and controls, the research identified key predictors for patient deterioration, including IL-27, ferritin, and specific complement proteins, through advanced statistical models like Linear Discriminant Analysis (LDA) and X-Gradient Boosting (XGB).
  • The findings suggest that immunological signatures vary by disease severity, and utilizing machine learning can improve clinical decision-making for COVID-19 management and treatment.
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Purpose: To evaluate the safety and preliminary efficacy of topical rVA576, a dual inhibitor of complement component 5 (C5) and leukotriene B4 (LTB4), in patients with recalcitrant atopic keratoconjunctivitis (AKC) in the open label phase 1 TRACKER clinical trial.

Methods: Three patients diagnosed with moderate or severe AKC who had been on maximal topical treatment (antihistamines and ciclosporin) for at least three months prior to entry, and showed persistent symptoms and signs of inflammation, were recruited into the trial. Patients received rVA576 eye drops twice a day for 8 weeks.

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Retinal vascular diseases have distinct, complex and multifactorial pathogeneses yet share several key pathophysiological aspects including inflammation, vascular permeability and neovascularisation. In non-infectious posterior uveitis (NIU), retinal vasculitis involves vessel leakage leading to retinal enlargement, exudation, and macular oedema. Neovascularisation is not a common feature in NIU, however, detection of the major angiogenic factor-vascular endothelial growth factor A (VEGF-A)-in intraocular fluids in animal models of uveitis may be an indication for a role for this cytokine in a highly inflammatory condition.

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Nomacopan, a drug originally derived from tick saliva, has dual functions of sequestering leukotriene B (LTB) and inhibiting complement component 5 (C5) activation. Nomacopan has been shown to provide therapeutic benefit in experimental autoimmune uveitis (EAU). Longer acting forms of nomacopan were more efficacious in mouse EAU models, and the long-acting variant that inhibited only LTB was at least as effective as the long-acting variant that inhibited both C5 and LTB, preventing structural damage to the retina and a significantly reducing effector T helper 17 cells and inflammatory macrophages.

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Influenza virus A (IAV) causes annual epidemics and intermittent pandemics that affect millions of people worldwide. Potent inflammatory responses are commonly associated with severe cases of IAV infection. The complement system, an important mechanism of innate and humoral immune responses to infections, is activated during primary IAV infection and mediates, in association with natural IgM, viral neutralization by virion aggregation and coating of viral hemmagglutinin.

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Histamine is an important mediator of early and late inflammatory responses. Here we asked whether scavenging of endogenous histamine by the arthropod-derived histamine binding protein EV131 diminishes acute respiratory distress syndrome (ARDS) induced by inhaled endotoxin. We demonstrate that EV131 (360 microg given intranasally) reduced endotoxin-induced bronchoconstriction and recruitment of neutrophils.

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Histamine is an important mediator of allergic responses. Arthropods express several biologically active proteins in their saliva, which may allow a prolonged blood meal on the host. Proteins identified and expressed include histamine, serotonin, tryptase, and complement binding proteins.

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Because histamine receptor type I blockade attenuates allergic asthma, we asked whether complete neutralization of histamine by an arthropod-derived, high affinity histamine-binding protein (EV131) would prevent allergic asthma. Intranasal administration of EV131 given before Ag challenge in immunized mice prevented airway hyperreactivity by 70%, and abrogated peribronchial inflammation, pulmonary eosinophilia, mucus hypersecretion, and IL-4 and IL-5 secretion. Saturation with histamine abrogated the inhibitory effect of EV131 on bronchial hyperreactivity.

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