Publications by authors named "R Spreafico"

RNA interference is a natural antiviral mechanism that could be harnessed to combat SARS-CoV-2 infection by targeting and destroying the viral RNA. We identified potent lipophilic small interfering RNA (siRNA) conjugates targeting highly conserved regions of SARS-CoV-2 outside of the spike-encoding region capable of achieving ≥3-log viral reduction. Serial passaging studies demonstrated that a two-siRNA combination prevented development of resistance compared to a single siRNA approach.

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Tissue damage and repair are hallmarks of inflammation. Despite a wealth of information on the mechanisms that govern tissue damage, mechanistic insight into how inflammation affects repair is lacking. Here, we investigated how interferons influence tissue repair after damage to the intestinal mucosa.

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Recent advances in single-cell (sc) transcriptomics have revolutionized our understanding of dendritic cells (DCs), pivotal players of the immune system. ScRNA-sequencing (scRNA-seq) has unraveled a previously unrecognized complexity and heterogeneity of DC subsets, shedding light on their ontogeny and specialized roles. However, navigating the rapid technological progress and computational methods can be daunting for researchers unfamiliar with the field.

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Article Synopsis
  • The human antibody repertoire is incredibly vast, theoretically containing over 10 billion potential antibodies, but identifying specific subsets for therapeutic use is crucial.
  • Researchers created the AbNGS database, compiling data from 135 human bioprojects with billions of antibody sequences, highlighting the presence of 270,000 unique complementarity-determining region (CDR-H3) sequences that are common across multiple individuals.
  • These findings suggest that a small portion of these 'public' CDR-H3s can inform and accelerate the design of therapeutic antibodies, potentially making drug development more efficient.
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Nucleoside-modified mRNA vaccines elicit protective antibodies through their ability to promote T follicular helper (Tfh) cells. The lipid nanoparticle (LNP) component of mRNA vaccines possesses inherent adjuvant activity. However, to what extent the nucleoside-modified mRNA can be sensed and contribute to Tfh cell responses remains largely undefined.

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