| Literature DB >> 30503413 |
Trinh Dang1, Ilyas S Nizamov2, Ramazan Z Salikhov3, Leysan R Sabirzyanova1, Vyacheslav V Vorobev1, Tatyana I Burganova4, Marina M Shaidoullina4, Elvira S Batyeva5, Rafael A Cherkasov3, Timur I Abdullin6.
Abstract
The pyridine-derived biomolecules are of considerable interest in developing medicinal compounds with various specific activities. Novel ammonium salts of pyridoxine, (S)-(-)-nicotine and nicotinamide with O,O-diorganyl dithiophosphoric acids (DTPA) were synthesized and characterized. The complexation of chiral monoterpenyl DTPA, including (S)-(-)-menthyl, (R)-(+)-menthyl, (1R)-endo-(+)-fenchyl, (1S,2S,3S,5R)-(+)-isopinocampheolyl derivatives, with pyridoxine and nicotine provided effective antibacterial compounds 3a,b,e,f, and 5a,b,d,f with MIC values against Gram-positive bacteria as low as 10 µM (6 µg/mL). Two selected pyridoxine and nicotine salts based on menthyl DTPA 3a and 5a were similarly active against antibiotic-resistant bacteria from burn wounds including MRSA. The compounds had enhanced amphiphilic and hemolytic properties and effectively altered surface characteristics and matrix-secreting ability of P. aeroginosa and S. aureus. MBC/MIC ratios of 3a and 5a suggested the bactericidal mode of their action. Furthermore, the compounds exhibited moderate cytotoxicity towards human skin fibroblasts (IC50 = 48.6 and 57.6 µM, respectively, 72 h), encouraging their further investigation as potential antimicrobials against skin and wound infections.Entities:
Keywords: Antibacterial agents; Cytotoxicity; Dithiophosphoric acids; MRSA; Monoterpenes; Nicotinamide; Nicotine; Pyridoxine; Quaternary ammonium salts; Wound infection
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Year: 2018 PMID: 30503413 DOI: 10.1016/j.bmc.2018.11.017
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641