Publications by authors named "B W Verbruggen"

Article Synopsis
  • Factor VIII inhibitors are traditionally measured using cumbersome Nijmegen or Bethesda assays, which are time-consuming and inconsistent in quality due to manual labor.
  • This study introduces a new fully automated assay for measuring FVIII inhibitors using recombinant FVIII, significantly reducing incubation time and improving efficiency with advanced equipment.
  • The new method demonstrated high sensitivity and consistency, with strong correlation to existing assays, making it a promising alternative for clinical use.
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The rapid delayed rectifier potassium current (I) is important for cardiac repolarization and is most often involved in drug-induced arrhythmias. However, accurately measuring this current can be challenging in human-induced pluripotent stem cell (hiPSC)-derived cardiomyocytes because of its small current density. Interestingly, the ion channel conducting I, hERG channel, is not only permeable to K ions but also to Cs ions when present in equimolar concentrations inside and outside of the cell.

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Introduction: All decapod crustaceans are considered potentially susceptible to White Spot Syndrome Virus (WSSV) infection, but the degree of White Spot Disease (WSD) susceptibility varies widely between species. The European shore crab can be infected with the virus for long periods of time without signs of disease. Given the high mortality rate of susceptible species, the differential susceptibility of these resistant hosts offers an opportunity to investigate mechanisms of disease resistance.

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The SARS-CoV-2 pandemic has highlighted the need for improved technologies to help control the spread of contagious pathogens. While rapid point-of-need testing plays a key role in strategies to rapidly identify and isolate infectious patients, current test approaches have significant shortcomings related to assay limitations and sample type. Direct quantification of viral shedding in exhaled particles may offer a better rapid testing approach, since SARS-CoV-2 is believed to spread mainly by aerosols.

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