Journal Article DZNE-2022-00488

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Key benefits of dexamethasone and antibody treatment in COVID-19 hamster models revealed by single-cell transcriptomics.

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2022
Nature Publ. Group New York, NY

Molecular therapy 30(5), 1952-1965 () [10.1016/j.ymthe.2022.03.014]

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Abstract: For coronavirus disease 2019 (COVID-19), effective and well-understood treatment options are still scarce. Since vaccine efficacy is challenged by novel variants, short-lasting immunity, and vaccine hesitancy, understanding and optimizing therapeutic options remains essential. We aimed at better understanding the effects of two standard-of-care drugs, dexamethasone and anti-severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) antibodies, on infection and host responses. By using two COVID-19 hamster models, pulmonary immune responses were analyzed to characterize effects of single or combinatorial treatments. Pulmonary viral burden was reduced by anti-SARS-CoV-2 antibody treatment and unaltered or increased by dexamethasone alone. Dexamethasone exhibited strong anti-inflammatory effects and prevented fulminant disease in a severe disease model. Combination therapy showed additive benefits with both anti-viral and anti-inflammatory potency. Bulk and single-cell transcriptomic analyses confirmed dampened inflammatory cell recruitment into lungs upon dexamethasone treatment and identified a specifically responsive subpopulation of neutrophils, thereby indicating a potential mechanism of action. Our analyses confirm the anti-inflammatory properties of dexamethasone and suggest possible mechanisms, validate anti-viral effects of anti-SARS-CoV-2 antibody treatment, and reveal synergistic effects of a combination therapy, thus informing more effective COVID-19 therapies.

Keyword(s): Animals (MeSH) ; Anti-Inflammatory Agents: pharmacology (MeSH) ; Anti-Inflammatory Agents: therapeutic use (MeSH) ; Antibodies, Viral (MeSH) ; Antiviral Agents (MeSH) ; Cricetinae (MeSH) ; Dexamethasone: pharmacology (MeSH) ; SARS-CoV-2 (MeSH) ; Transcriptome (MeSH) ; COVID-19 Drug Treatment (MeSH) ; COVID-19 treatment ; SARS-CoV-2 ; antibody ; dexamethasone ; hamster ; monoclonal antibody therapy ; scRNA-seq ; transcriptomics

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Note: (CC BY)

Contributing Institute(s):
  1. Autoimmune Enzephalopathies (AG Prüß)
Research Program(s):
  1. 353 - Clinical and Health Care Research (POF4-353) (POF4-353)

Appears in the scientific report 2022
Database coverage:
Medline ; Creative Commons Attribution CC BY 4.0 ; OpenAccess ; BIOSIS Previews ; Biological Abstracts ; Clarivate Analytics Master Journal List ; Current Contents - Life Sciences ; Ebsco Academic Search ; Essential Science Indicators ; IF >= 10 ; JCR ; SCOPUS ; Science Citation Index Expanded ; Web of Science Core Collection
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 Record created 2022-04-22, last modified 2024-03-19


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