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Published on: July 5, 2022
Establishment of the large-scale longitudinal multi-omics dataset in COVID-19 patients: data profile and biospecimen
Hye-Yeong Jo1, Sang Cheol Kim1, Do-Hwan Ahn1
1Division of Healthcare and Artificial Intelligence, Department of Precision Medicine, Korea National Institute of Health, Korea Disease Control and Prevention Agency, Cheongju 28159, Korea.
Insights
This study presents comprehensive multi-omics data from 300 COVID-19 patients, revealing insights into dynamic immune responses and disease progression. The data aims to advance understanding and develop new diagnostics and treatments for viral infections.
Area of Science:
- Immunology
- Genomics
- Virology
Background:
- The COVID-19 pandemic highlighted the need for advanced understanding of virus-mediated infections.
- Detailed mechanisms of immune response induction and disease progression in COVID-19 remain incompletely understood.
Discussion:
- This research generated longitudinal multi-omics data, including WGS, scRNA-seq, TCR/BCR sequencing, and cytokine profiling from COVID-19 patients and controls.
- Clinical data, HLA typing, and viral genome sequencing were also collected for initial diagnosis.
Key Insights:
- The study provides a large-scale dataset to explore the biological crosstalk in COVID-19 infection.
- Analysis of immune profiling data can elucidate dynamic immune responses and molecular mechanisms of disease progression.
Outlook:
- The generated biospecimens and multi-omics data are accessible via the National Biobank of Korea for further research.
- This resource is expected to facilitate the development of novel diagnostic and therapeutic strategies for COVID-19 and future viral pandemics.
Abstract:
Understanding and monitoring virus-mediated infections has gained importance since the global outbreak of the coronavirus disease 2019 (COVID-19) pandemic. Studies of high-throughput omics-based immune profiling of COVID-19 patients can help manage the current pandemic and future virus-mediated pandemics. Although COVID-19 is being studied since past 2 years, detailed mechanisms of the initial induction of dynamic immune responses or the molecular mechanisms that characterize disease progression remains unclear. This study involved comprehensively collected biospecimens and longitudinal multi-omics data of 300 COVID-19 patients and 120 healthy controls, including whole genome sequencing (WGS), single-cell RNA sequencing combined with T cell receptor (TCR) and B cell receptor (BCR) sequencing (scRNA(+scTCR/BCR)-seq), bulk BCR and TCR sequencing (bulk TCR/BCR-seq), and cytokine profiling. Clinical data were also collected from hospitalized COVID-19 patients, and HLA typing, laboratory characteristics, and COVID-19 viral genome sequencing were performed during the initial diagnosis. The entire set of biospecimens and multi-omics data generated in this project can be accessed by researchers from the National Biobank of Korea with prior approval. This distribution of largescale multi-omics data of COVID-19 patients can facilitate the understanding of biological crosstalk involved in COVID-19 infection and contribute to the development of potential methodologies for its diagnosis and treatment. [BMB Reports 2022; 55(9): 465-471].
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