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Human SARS-CoV-2 challenge uncovers local and systemic response dynamics

112
Citations
July 4, 2024
Published Date

Research Abstract & Technology Focus

AbstractThe COVID-19 pandemic is an ongoing global health threat, yet our understanding of the dynamics of early cellular responses to this disease remains limited1. Here in our SARS-CoV-2 human challenge study, we used single-cell multi-omics profiling of nasopharyngeal swabs and blood to temporally resolve abortive, transient and sustained infections in seronegative individuals challenged with pre-Alpha SARS-CoV-2. Our analyses revealed rapid changes in cell-type proportions and dozens of highly dynamic cellular response states in epithelial and immune cells associated with specific time points and infection status. We observed that the interferon response in blood preceded the nasopharyngeal response. Moreover, nasopharyngeal immune infiltration occurred early in samples from individuals with only transient infection and later in samples from individuals with sustained infection. High expression of HLA-DQA2 before inoculation was associated with preventing sustained infection. Ciliated cells showed multiple immune responses and were most permissive for viral replication, whereas nasopharyngeal T cells and macrophages were infected non-productively. We resolved 54 T cell states, including acutely activated T cells that clonally expanded while carrying convergent SARS-CoV-2 motifs. Our new computational pipeline Cell2TCR identifies activated antigen-responding T cells based on a gene expression signature and clusters these into clonotype groups and motifs. Overall, our detailed time series data can serve as a Rosetta stone for epithelial and immune cell responses and reveals early dynamic responses associated with protection against infection.
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Frequently Asked Questions (FAQ)

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What is the core focus of the research titled 'Human SARS-CoV-2 challenge uncovers local and systemic response dynamics'?

This literature focuses on: AbstractThe COVID-19 pandemic is an ongoing global health threat, yet our understanding of the dynamics of early cellular responses to this disease remains limited1. Here in our SARS-CoV-2 human challenge study, we used single-cell multi-omics pro...

Are there open-source GitHub repositories related to Human SARS-CoV-2 challenge uncovers local and systemic response dynamics?

Yes, open-source projects like slowmist/openclaw-security-practice-guide (This guide is designed for OpenClaw itself (Agent-facing), not as a traditional human-only hardening checklist.) are actively building upon these concepts.

Which startups are commercializing the technology behind Human SARS-CoV-2 challenge uncovers local and systemic response dynamics?

Products like Offsite are bringing this to market. Their focus is: Build teams of humans and agents, watch them work..

What other academic literature is closely related to 'Human SARS-CoV-2 challenge uncovers local and systemic response dynamics'?

Yes, highly correlated activity was mapped. An entry titled 'Dynamic Resilience Assessment of Combat System of Systems: A Dual-Dimensional Framework Integrating Mission and Inherent Capabilities' discusses this: In dynamic confrontation scenarios, units within a combat system of systems (CSoS) alternate between mission-active and standby states. Standby uni...

How is the concept of 'Human SARS-CoV-2 challenge uncovers local and systemic response dynamics' being discussed by engineers on StackExchange?

Yes, highly correlated activity was mapped. An entry titled 'Any explanation for the COVID-19 market surge?' discusses this: Mass Death, Recovery, and Supply Chains If you check out the S&P 500, there's a big dip in early 2020, then a sustained climb until the beginning o...

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