Publications by authors named "J F Manischewitz"

Article Synopsis
  • The study examines how the adjuvant AS03 affects vaccination responses in humans receiving the H5N1 influenza vaccine by analyzing data over 14 time points, including the immediate aftermath of the vaccination.
  • Researchers developed a computational method to identify complex immune response patterns, revealing differences in how the immune system responds to the vaccine with and without the adjuvant at different stages of vaccination (prime and boost).
  • Findings indicate that certain immune response signatures persist long after vaccination, and specific immune cell characteristics, particularly in monocytes and CD8 T cells, are associated with stronger antibody responses, suggesting that pre-existing immune states can influence vaccine effectiveness.
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Acute viral infections can have durable functional impacts on the immune system long after recovery, but how they affect homeostatic immune states and responses to future perturbations remain poorly understood. Here we use systems immunology approaches, including longitudinal multimodal single-cell analysis (surface proteins, transcriptome and V(D)J sequences) to comparatively assess baseline immune statuses and responses to influenza vaccination in 33 healthy individuals after recovery from mild, non-hospitalized COVID-19 (mean, 151 days after diagnosis) and 40 age- and sex-matched control individuals who had never had COVID-19. At the baseline and independent of time after COVID-19, recoverees had elevated T cell activation signatures and lower expression of innate immune genes including Toll-like receptors in monocytes.

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Viral infections can have profound and durable functional impacts on the immune system. There is an urgent need to characterize the long-term immune effects of SARS-CoV-2 infection given the persistence of symptoms in some individuals and the continued threat of novel variants. Here we use systems immunology, including longitudinal multimodal single cell analysis (surface proteins, transcriptome, and V(D)J sequences) from 33 previously healthy individuals after recovery from mild, non-hospitalized COVID-19 and 40 age- and sex-matched healthy controls with no history of COVID-19 to comparatively assess the post-infection immune status (mean: 151 days after diagnosis) and subsequent innate and adaptive responses to seasonal influenza vaccination.

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Several next-generation (universal) influenza vaccines and broadly neutralizing antibodies (bNAbs) are in clinical development. Some of these mediate inhibitions of virus replication at the postentry stage or use Fc-dependent mechanisms. Nonneutralizing antibodies have the potential to mediate enhancement of viral infection or disease.

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