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    Curcumin and Natural Derivatives Inhibit Ebola Viral Proteins: An In silico Approach

    Shruti Baikerikar1 Corresponding author

    1. 1Department of Biotechnology, Thadomal Shahani Engineering College, Mumbai, Maharashtra, INDIA.

    CORRESPONDENCE

    Shruti Baikerikar

    Department of Biotechnology, Thadomal Shahani Engineering College, Mumbai, Maharashtra, INDIA.

    shrutibaikerikar91@gmail.com

    Volume 9, Issue 5S · pp. s15–s22 · PUBLISHED · DOI: 10.4103/pr.pr_30_17

    View on Pharmacogn. Res. original site ↗

    ABSTRACT

    Background:Ebola viral disease is a severe and mostly fatal disease in humans caused by Ebola virus. This virus belongs to family Filoviridae and is a single‑stranded negative‑sense virus. There is no single treatment for this disease which puts forth the need to identify new therapy to control and treat this fatal condition. Curcumin, one of the bioactives of turmeric, has proven antiviral property. Objective: The current study evaluates the inhibitory activity of curcumin, bisdemethoxycurcumin, demethoxycurcumin, and tetrahydrocurcumin against Zaire Ebola viral proteins (VPs).Materials and Methods:Molecular simulation of the Ebola VPs followed by docking studies with ligands comprising curcumin and related compounds was performed. Results: The highest binding activity for VP40 is −6.3 kcal/mol, VP35 is −8.3 kcal/mol, VP30 is −8.0 kcal/mol, VP24 is −7.7 kcal/mol, glycoprotein is −7.1 kcal/mol, and nucleoprotein is 6.8 kcal/mol. Conclusion:Bisdemethoxycurcumin shows better binding affinity than curcumin for most VPs. Metabolite tetrahydrocurcumin also shows binding affinity comparable to curcumin. These results indicate that curcumin, curcuminoids, and metabolite tetrahydrocurcumin can be potential lead compounds for developing a new therapy for Ebola viral disease.

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      Baikerikar, S. (). Curcumin and Natural Derivatives Inhibit Ebola Viral Proteins: An In silico Approach. Pharmacognosy Research, 9(5S), s15–s22. https://doi.org/10.4103/pr.pr_30_17