Silver Trimolybdate (Ag2Mo3O10.2H2O) Nanorods: Synthesis, Characterization, and Photo-Induced Antibacterial Activity under Visible-Light Irradiation

Author:

do Nascimento Silva Leandro Maria Karollyna12,Barbosa Moura João Victor3,Justino de Araújo Ana Carolina1,Freitas Priscilla Ramos1,Roque Paulo Cicera Laura1,de Sousa Amanda Karine12,Rocha Janaina Esmeraldo1,Garcia Leandro Lívia Maria2,Macedo da Silva Rakel Olinda2,Costa dos Santos Clenilton3,Ribeiro-Filho Jaime4,da Luz Lima Cleânio5,Siyadatpanah Abolghasem6ORCID,Seifi Zahra7,Kim Bonglee89ORCID,Coutinho Henrique Douglas Melo1ORCID

Affiliation:

1. Laboratório de Microbiologia e Biologia Molecular-LMBM, Universidade Regional do Cariri—URCA, Crato, Ceará, Brazil

2. Centro Universitário Dr. Leão Sampaio-Unileão Juazeiro do Norte, Juazeiro do Norte, Ceará, Brazil

3. Departamento de Física, Centro de Ciências Exatas e Tecnologias, Universidade Federal do Maranhão—UFMA, São Luís, Maranhão, Brazil

4. Instituto Gonçalo Moniz, Fundação Oswaldo Cruz, IGM-FIOCRUZ/BA, Salvador, Bahia, Brazil

5. Departamento de Física, Centro de Ciências da Natureza, Universidade Federal do Piauí—UFPI, Teresina, Piauí, Brazil

6. Ferdows School of Paramedical and Health, Birjand University of Medical Sciences, Birjand, Iran

7. Laboratory Sciences Research Center, Golestan University of Medical Sciences, Gorgan 49189-36316, Iran

8. Department of Pathology, College of Korean Medicine, Kyung Hee University, Seoul 02447, Republic of Korea

9. Korean Medicine-Based Drug Repositioning Cancer Research Center, College of Korean Medicine, Kyung Hee University, Seoul 02447, Republic of Korea

Abstract

The present study reports the synthesis, characterization, and antibacterial properties of silver trimolybdate (Ag2Mo3O10.2H2O) nanorods. The synthesis was performed using a conventional hydrothermal method. The sample was characterised by scanning electron microscopy (SEM), X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectroscopy, UV–Vis–NIR diffuse reflectance, thermogravimetric analysis (TGA), and differential scanning calorimeter (DSC). The direct antibacterial activity was evaluated using the microdilution method to determine the minimum inhibitory concentration (MIC). To assess the ability of Ag2Mo3O10.2H2O nanorods to modulate antibacterial resistance, the MIC of aminoglycosides was established in the presence of a subinhibitory concentration of this substance alone and associated with LED light exposure. The characterization of the sample indicated that the synthesis of silver trimolybdate generated nanometric crystals with rod-like morphology, without secondary phases. The treatment with Ag2Mo3O10.2H2O nanorods alone or combined with visible LED lights exhibited clinically relevant antibacterial activity against both Gram-negative and Gram-positive bacteria. This nanostructure presented a variable antibiotic-modulating action, which was not improved by visible LED light exposure. Nevertheless, LED lights showed promising antibiotic-enhancing activities in the absence of Ag2Mo3O10.2H2O nanorods. In conclusion, silver trimolybdate dihydrate nanorods have antibacterial properties that can be photocatalysed by visible-light exposure. While showing the potential use to combat antibacterial resistance, the simultaneous combination of silver trimolybdate, visible LED lights, and antibacterial drugs should be carefully analysed to avoid antagonist effects that could impair the effectiveness of antibiotic therapy.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Hindawi Limited

Subject

Inorganic Chemistry,Organic Chemistry,Biochemistry

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