Synthesis, Characterization and In vitro Antibacterial Activity of A Novel Strigolactones Analogues TIT3
Author(s) -
Abdulrahman L. AlMalki,
Etimad Huwait,
Said S. Moselhy
Publication year - 2020
Publication title -
journal of pure and applied microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.149
H-Index - 16
eISSN - 2581-690X
pISSN - 0973-7510
DOI - 10.22207/jpam.14.4.20
Subject(s) - bacteria , escherichia coli , microbiology and biotechnology , staphylococcus aureus , salmonella , antibacterial activity , amoxicillin , antibiotics , bacillus cereus , antimicrobial , biology , gram positive bacteria , cereus , bacillus subtilis , klebsiella , chemistry , biochemistry , genetics , gene
Traditional antibiotic abuse caused increased the incidence of bacteria resistance to treatment. Strigolactones (SLs) are phytohormones that play a vital role in the plant growing root, shoot and flowering. We previously reported that, SLs analogues exert pro-apoptotic effects on HepG2 cell lines. The current study investigated the antimicrobial activity of selected SLs analogue TIT3 against different strains of bacteria including gram positive and gram negative bacteria: Staphylococcus aureus, Salmonella typhimuriu, Escherichia coli, Klebsiella pneumoni and B. subtilis. The results obtained were compared with 100 μg amoxicillin. Results obtained showed that, TIT3 inhibited the growth of S. cereus (50 μg), Salmonella typhimuriu (20 μg), Escherichia coli (30μg), Klebsiella pneumoni (50 μg) and B. subtilis (50 μg) with mean inhibition zones diameter being 12.1 mm , 13.2 mm, 12.5, 8.9 and 12.9 mm respectively. It was concluded that, TIT3 is promising effective antibacterial agents compared with amoxicillin for different strains of bacteria that resistant to different antibiotics.
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