Investigating Drug Properties of Bioactive Compounds of Cymbopogon citratus by Absorption, Distribution, Metabolism, Excretion/Toxicity and Molecular Docking Analysis Against Apolipoprotein N-Acyl Transferase
Abstract
Delivering a potential drug is a predominant challenge in medicinal chemistry.in this study, bio organic compounds of Cymbopogon citratus was screened by analysing physiochemical properties like solubility, permeability, efficacy, toxicity, and metabolic stability. The optimization of drug potential against virulent protein was calculated by using docking algorithm Autodock 4.2.3. Structure based ligand docking reveals that the compounds having better inhibition potential against virulent enzymes with insoluble and impermeable activities. The organic compounds of Cymbopogon citratus were screened using Lipinski rule of five and ADME/T prediction for drug likeliness. The structure based ligand docking was done between bioactive compounds of plant and virulent protein that cause diseases. The interaction was visualized using Discovery studio and was studies. The molecular docking of bioactive compounds resulted in better inhibition potential with controlled lipophilicity level, without causing toxicity that harms the natural habitat of humans. The compounds, 1,3,4-trimethyl -3cyclohexene-1-carboxaldehyde exhibit binding energy -4.70 Kcal/mol followed by β-myrcene – 4.35 Kcal/mol and Geraniol -4.35 Kcal/mol. Hence, structure based ligand docking and in silico ADME/T studies revealed that the compounds have better inhibition potential against Apolipoprotein by improving the prediction of drug compounds.
Keywords:
Molecular docking, In silico, Cymbopogon citratus, ADME/T prediction, Apolipoprotein N-acyl Transferase, Autodock.DOI
https://doi.org/10.25004/IJPSDR.2020.120113References
Poirier J, Bertrand P, Kogan S, Gauthier S, Davignon J, Bouthillier D. Apolipoprotein E polymorphism and Alzheimer’s disease. The Lancet. 1993 Sep 18;342(8873):697-699.
Pitas RE, Boyles JK, Lee SH, Foss D, Mahley RW. Astrocytes synthesize apolipoprotein E and metabolize apolipoprotein E-containing lipoproteins. Biochimica et Biophysica Acta (BBA)-Lipids and Lipid Metabolism. 1987 Jan 13;917(1):148-161.
Shah G, Shri R, Panchal V, Sharma N, Singh B, Mann AS. Scientific basis for the therapeutic use of Cymbopogon citratus, stapf (Lemon grass). Journal of advanced pharmaceutical technology & research. 2011;2(1):3.
Negrelle RR, Gomes EC. Cymbopogon citratus (DC.) Stapf: chemical composition and biological activities. Revista Brasileira de Plantas Medicinais. 2007;9(1):80-92.
Carlini EA, De D.P. Contar J, Silva-Filho AR, Da Silveira-Filho NG, Frochtengarten ML, Bueno OFA. Pharmacology of lemongrass (Cymbopogon citratus Stapf ). I. Effects of teas prepared from the leaves on laboratory animals. Journal of Ethnopharmacology. Elsevier BV; 1986 Jul;17(1):37–64.
Asaolu MF, Oyeyemi OA, Olanlokun JO. Chemical compositions, phytochemical constituents and in vitro biological activity of various extracts of Cymbopogon citratus. Pakistan Journal of Nutrition. 2009;8(12):1920-1922.
Gbenou JD, Ahounou JF, Akakpo HB, Laleye A, Yayi E, Gbaguidi F, Baba-Moussa L, Darboux R, Dansou P, Moudachirou M, Kotchoni SO. Phytochemical composition of Cymbopogon citratus and Eucalyptus citriodora essential oils and their anti-inflammatory and analgesic properties on Wistar rats. Molecular biology reports. 2013 Feb 1; 40(2):1127-1134.
Ajayi EO, Sadimenko AP, Afolayan AJ. GC–MS evaluation of Cymbopogon citratus (DC) Stapf oil obtained using modified hydrodistillation and microwave extraction methods. Food chemistry. 2016 Oct 15;209:262-266.
Biswal A, Aishwariya A, Sharma A, Pazhamalai V. 2D QSAR, ADMET prediction and multiple receptor molecular docking strategy in bioactive compounds of Gracilaria corticata against Plasmodium falciparum (contractile protein). Informatics in Medicine Unlocked. 2019 Jan 1;17:100258.
Meenambiga SS, Venkataraghavan R, Biswal RA. In silico analysis of plant phytochemicals against secreted aspartic proteinase enzyme of Candida albicans. J Appl Pharm Sci. 2018 Nov;8(11):140-150.
Biswal AR, Mirunalini K, Jayshree P, Pazhamalai V. Molecular Docking Analysis of Bioactive Compounds of Acacia Concinna against Fungal Protein. Journal of Pharmaceutical Sciences and Research. 2019 Apr 1;11(4):1216-1222.
Biswal A, Venkataraghavan R, Pazhamalai V. Molecular docking of various bioactive compounds from essential oil of Trachyaspermum ammi against the fungal enzyme Candidapepsin-1. Journal of Applied Pharmaceut ical Science. 2019 May;9(05):021-032.
Biswal RA, Jayashree P, Mirunaalini K, Pazhamalai V. Molecular docking studies of bioactive compounds from the leaves of Epiphyllum oxypetalum against Treponema pallidum, Zika virus and liver cirrhosis. Journal of Applied Pharmaceutical Science. 2019Nov;9(11):069-077.
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