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19 results on '"SARS-coronavirus"'

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1. Evaluation of novel Anti-SARS-CoV-2 compounds by targeting nucleoprotein and envelope protein through homology modeling, docking simulations, ADMET, and molecular dynamic simulations with the MM/GBSA calculation.

2. Serological assays for emerging coronaviruses: Challenges and pitfalls.

3. The Role of Severe Acute Respiratory Syndrome (SARS)-Coronavirus Accessory Proteins in Virus Pathogenesis.

4. Up-regulation of IL-6 and TNF-α induced by SARS-coronavirus spike protein in murine macrophages via NF-κB pathway

5. The intracellular sites of early replication and budding of SARS-coronavirus

6. Severe acute respiratory syndrome coronavirus 3C-like protease-induced apoptosis.

7. Cross-reactivity of antibody against SARS-coronavirus nucleocapsid protein with IL-11

8. Binding interaction of SARS coronavirus 3CLpro protease with vacuolar-H+ ATPase G1 subunit

9. Anti-SARS coronavirus 3C-like protease effects of Isatis indigotica root and plant-derived phenolic compounds

10. Monoclonal antibodies to SARS-associated coronavirus (SARS-CoV): Identification of neutralizing and antibodies reactive to S, N, M and E viral proteins

11. Amotosalen photochemical inactivation of severe acute respiratory syndrome coronavirus in human platelet concentrates.

12. Development and evaluation of an enzyme-linked immunosorbent assay for detection of antibodies against the spike protein of SARS-coronavirus

13. Prokaryotic expression, refolding, and purification of fragment 450–650 of the spike protein of SARS-coronavirus

14. Characterization of trans- and cis-cleavage activity of the SARS coronavirus 3CLpro protease: basis for the in vitro screening of anti-SARS drugs

15. Development and characterisation of neutralising monoclonal antibody to the SARS-coronavirus

16. SARS-coronavirus replicates in mononuclear cells of peripheral blood (PBMCs) from SARS patients

17. Prediction of proteinase cleavage sites in polyproteins of coronaviruses and its applications in analyzing SARS-CoV genomes

18. SARS Unique Domain (SUD) of Severe Acute Respiratory Syndrome Coronavirus Induces NLRP3 Inflammasome-Dependent CXCL10-Mediated Pulmonary Inflammation.

19. The antiviral effect of interferon-beta against SARS-Coronavirus is not mediated by MxA protein

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