期刊论文详细信息
BMC Microbiology
Antimicrobial activity of D-amino acid in combination with photo-sonoactivated hypericin nanoparticles against Acinetobacter baumannii
Research
Maryam Pourhajibagher1  Abbas Bahador2  Nava Hosseini3 
[1] Dental Research Center, Dentistry Research Institute, Tehran University of Medical Sciences, Tehran, Iran;Fellowship in Clinical Laboratory Sciences, BioHealth Lab, Tehran, Iran;Department of Microbiology, Tehran University of Medical Sciences, Tehran, Iran;Institut de Biologie Intégrative et des Systèmes (IBIS), Pavillon Charles-Eugène-Marchand, Université Laval, G1V 0A6, Quebec City, QC, Canada;Département de Biochimie, de Microbiologie et de Bio-Informatique, Faculté des Sciences et de Génie, Université Laval, G1V 0A6, Quebec City, QC, Canada;Centre de Recherche de l’Institut Universitaire de Cardiologie et de Pneumologie de Québec (IUCPQ), G1V 4G5, Quebec City, QC, Canada;
关键词: Acinetobacter baumannii;    Antimicrobial photodynamic therapy;    Antimicrobial sonodynamic therapy;    Biofilms;    Drug resistance;    Nosocomial infection;   
DOI  :  10.1186/s12866-023-02758-4
 received in 2022-09-21, accepted in 2023-01-06,  发布年份 2023
来源: Springer
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【 摘 要 】

BackgroundThe emergence of multidrug-resistant Acinetobacter baumannii strains is increasing worldwide. To overcome these life-threatening infections, the development of new treatment approaches is critical. For this purpose, this study was conducted to determine the antimicrobial photo-sonodynamic therapy (aPSDT) using hypericin nanoparticles (HypNP) in combination with D-Tryptophan (D-Trp) against A. baumannii.Materials and methodsHypNP was synthesized and characterized, followed by the determination of the fractional inhibitory concentration (FIC) index of HypNP and D-Trp by checkerboard assay. Next, the antimicrobial and anti-biofilm potential of HypNP@D-Trp-mediated aPSDT against A. baumannii was evaluated. Finally, the anti-virulence activity of aPSDT using HypNP@D-Trp was accessed following the characterization of HypNP@D-Trp interaction with AbaI using in silico virtual screening and molecular docking.ResultsA synergistic activity in the combination of HypNP and D-Trp against A. baumannii was observed with a FIC index value of 0.5. There was a 5.10 log10 CFU/mL reduction in the cell viability of A. baumannii when the bacterial cells were treated with 1/2 × MIC of HypNP@D-Trp and subsequently exposed to ultrasound waves and blue light (P < 0.05). Moreover, a significant biofilm degradation effect on biofilm-associated cells of A. baumannii was observed after treatment with aPSDT using 2 × MIC of HypNP@D-Trp in comparison with the control groups (P < 0.05). According to the molecular docking analysis of the protein-ligand complex, Hyp with a high affinity for AbaI showed a binding affinity of − 9.41 kcal/mol. Also, the expression level of abaI gene was significantly downregulated by 10.32-fold in A. baumannii treated with aPSDT as comprised with the control group (P < 0.05).ConclusionsIt can be concluded that HypNP@D-Trp-mediated aPSDT can be considered a promising strategy to overcome the infections caused by A. baumannii by reducing the growth of bacterial biofilm and decreasing the expression of abaI as a gene involved in A. baumannii biofilm formation.

【 授权许可】

CC BY   
© The Author(s) 2023

【 预 览 】
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