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Updated: Jan 11, 2026

Evaluation of Antimicrobial Activities of Nanoparticles and Nanostructured Surfaces In Vitro
Published on: April 21, 2023
Synthesis, in vitro antimicrobial activity, and in silico studies of 1-aminoalkyl-2-naphthols
Frehiwot Beyene1, Avijit Mazumder2, Solomon Tadesse3
1Department of Pharmaceutical Chemistry and Pharmacognosy, School of Pharmacy, College of Health Sciences, Addis Ababa University, P. O. Box 1176, Addis Ababa, Ethiopia.
Abstract:
The rise of multidrug-resistant (MDR) pathogens highlights the need for novel antimicrobial agents. This study reports the synthesis of two 1-aminoalkyl-2-naphthol derivatives, 1-(dimethylaminomethyl)naphthalen-2-ol (2) and 1-(piperidin-1-ylmethyl)naphthalen-2-ol (3), via the Betti base reaction using 2-naphthol, formaldehyde, and secondary amines. Structural confirmation was achieved through the 1H and 13C-NMR. Antimicrobial screening against 26 bacterial and 4 fungal strains revealed that compound 3 exhibited potent antibacterial activity against MDR strains, with a minimum inhibitory concentration (MIC) value as low as 10 µg/mL against Pseudomonas aeruginosa MDR1. Compound 3 also demonstrated superior efficacy against Staphylococcus aureus MDR strains, with an MIC of 100 µg/mL, compared to ciprofloxacin, which had an MIC of 200 µg/mL. Its lower MIC values compared to ciprofloxacin suggests that compound 3 has potential for treating infections caused by multidrug-resistant S. aureus. Compound 2 showed strong antifungal activity against Penicillium notatum and P. funiculosum, with an MIC of 400 µg/mL, outperforming griseofulvin (MIC = 500 µg/mL). Molecular docking further supported these findings, with compound 3 displaying strong binding affinities to E. coli DNA gyrase (‒6.755 kcal/mol; PDB ID: 5MMN) and Candida albicans lanosterol 14α-demethylase (‒7.813 kcal/mol; PDB ID: 5V5Z). Overall, these results underscore the potential of 1-aminoalkyl-2-naphthol derivatives as promising candidates for combating drug-resistant infections.
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