Title of article :
Evaluation of the Antibacterial Activity of Patchouli Oil
Author/Authors :
Yang, Xian College of Bioengineering, Chongqing University - Chongqing 400044, P.R. China - college of Resources and Environment - Southwest University - Chongqing, 400716, P.R. China , Zhang, Xue Chongqing Academy of Chinese Materia Medica - Chongqing 400065, P.R. China , Yang, Shui-Ping College of Resources and Environment - Southwest University - Chongqing, 400716, P.R. China , Liu, Wei-Qi College of Bioengineering - Chongqing University - Chongqing 400044, P.R. China
Abstract :
In the present study, the antimicrobial tests of patchouli oil were studied by using molecular docking technology and antimicrobial test in vitro. Five biological macromolecule enzymes, required by the bacteria in the process of biosynthesis were selected as target molecules. Five antibiotics benzylpenicillin, sulfadiazine, trimethoprim, rifampicin and ciprofloxacin, which are generally acknowledged as antibacterial drugs, were selected as reference compounds. The 3 three-dimensional (3D) structures of the 5 reference compounds and 26 compounds from patchouli oil were established by using surflex-dock software (8.1). and the 3D structures of
five biological macromolecule enzymes derived from Protein Data Bank (PDB). Molecular docking was carried out between the 31 chemical compounds (ligands) and the 5 enzymes (receptors) by using surflex-dock function. Furthermore, the antibacterial effects of 31 chemical compounds were investigated by the scoring function after molecular docking was completed. By comparing the scoring result of 26 compounds in patchouli oil with 5 compared components, we inferred antibacterial activity in about 26 compounds in patchouli oil. On the other hand, six frequently-used pathogenic bacteria were selected for antimicrobial test in vitro, patchouli oil and its two major compounds: (-)-patchouli alcohol and pogostone, which their contents exceeded 60% in patchouli oil samples, were selected antibacterial agents. Minimum
inhibitory concentration (MIC) and Minimum bactericidal concentration (MBC) were also determined. Molecular docking technology and antimicrobial test in vitro proved that patchouli oil had strong antimicrobial effects. Particularly, pogostone and (-)-patchouli alcohol have potent antimicrobial activity.
Keywords :
Patchouli oil , Molecular docking , Scoring function , Antibiotic experiment in vitro , MIC , MBC
Journal title :
Astroparticle Physics