Publications by authors named "Tim Vogt"

This longitudinal prospective controlled multicenter study aimed to monitor immunity generated by three exposures caused by breakthrough infections (BTI) after COVID-19-vaccination considering pre-existing cell-mediated immunity to common-corona-viruses (CoV) which may impact cellular reactivity against SARS-CoV-2. Anti-SARS-CoV-2-spike-IgG antibodies (anti-S-IgG) and cellular reactivity against Spike-(S)- and nucleocapsid-(N)-proteins were determined in fully-vaccinated (F) individuals who either experienced BTI (F+BTI) or had booster vaccination (F+Booster) compared to partially vaccinated (P+BTI) and unvaccinated (U) from 1 to 24 weeks post PCR-confirmed infection. High avidity anti-S-IgG were found in F+BTI compared to U, the latter exhibiting increased long-lasting pro-inflammatory cytokines to S-stimulation.

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Article Synopsis
  • Infection-neutralizing antibodies are crucial for protecting against SARS-CoV-2 and its variants, especially as variants like Omicron develop immune escape properties.
  • A study tracked antibody responses in individuals recovering from COVID-19 and those vaccinated with the BNT162b2 mRNA vaccine, revealing that superior neutralization against all variants emerged after two doses for convalescents or a third dose for naive individuals.
  • The findings highlight that a combination of infection and vaccination, or triple vaccination, enhances the quality and effectiveness of antibodies against evolving SARS-CoV-2 variants.
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A spectroelectrochemical cell has been designed to combine electrochemistry and ultrafast two-dimensional infrared (2D-IR) spectroscopy, which is a powerful tool to extract structure and dynamics information on the femtosecond to picosecond time scale. Our design is based on a gold mirror with the dual role of performing electrochemistry and reflecting IR light. To provide the high optical surface quality required for laser spectroscopy, the gold surface is made by electron beam evaporation on a glass substrate.

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