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Journal of Biomolecular Structure and Dynamics 2017-Nov

Computational and in vitro insights on Snake venom Phospholipase A2 Inhibitor of Phytocompound Ikshusterol3-O-glucoside of Clematis gouriana Roxb. ex DC.

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Sathishkumar Chinnasamy
Subbiah Nagarajan
Thirunavukkarasu Sivaraman
Karthikeyan Muthusamy

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Abstrakt

Ikshusterol3-O-glucoside was isolated from Clematis gouriana Roxb. ex DC. root. A structure of the isolated compound was determined on the basis of various spectroscopic interpretations (UV, NMR, FTIR, and GC-MS-EI). This structure was submitted in the PubChem compound database (SID 249494133). SID 249494133 was carried out by density functional theory calculation to observe the chemical stability and electrostatic potential of this compound. The absorption, distribution, metabolism, and excretion property of this compound was predicted to evaluate the drug likeness and toxicity. In addition, molecular docking, quantum polarized ligand docking, prime MMGBSA calculation, and induced fit docking were performed to predict the binding status of SID 249494133 with the active site of phospholipase A2 (PLA2) (PDB ID: 1A3D). The stability of the compound in the active site of PLA2 was carried out using molecular dynamics simulation. Further, the anti-venom activity of the compound was assessed using the PLA2 assay against Naja naja (Indian cobra) crude venom. The results strongly show that Ikshusterol3-O-glucoside has a potent snake-venom neutralizing capacity and it might be a potential molecule for the therapeutic treatment for snakebites.

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