Bacterial mediated green synthesis of silver nanoparticles and their antibacterial and antifungal activities against drug-resistant pathogens

Author:

Huq Md. Amdadul1ORCID,Khan Azmat Ali2,Alshehri Jamilah M.2,Rahman Md. Shahedur3,Balusamy Sri Renukadevi4,Akter Shahina5

Affiliation:

1. Department of Food and Nutrition, College of Biotechnology and Natural Resource, Chung-Ang University, Anseong, Gyeonggi-do 17546, Republic of Korea

2. Pharmaceutical Biotechnology Laboratory, Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia

3. Department of Genetic Engineering and Biotechnology, Jashore University of Science and Technology, Jashore 7408, Bangladesh

4. Department of Food Science and Technology, Sejong University, Seoul 143-747, Republic of Korea

5. Department of Food Science and Biotechnology, Gachon University, Seongnam 461-701, Republic of Korea

Abstract

In the healthcare sector, the production of bioactive silver nanoparticles (AgNPs) with antimicrobial properties is of great importance. In this study, a novel bacterial strain, Paenibacillus sp. MAHUQ-63, was identified as a potential candidate for facile and rapid biosynthesis of AgNPs. The synthesized AgNPs were used to control the growth of human pathogens, Salmonella Enteritidis and Candida albicans . The bacterial culture supernatant was used to synthesize the nanoparticles (NPs). Field emission transmission electron microscope examination showed spherical-shaped NPs with 15–55 nm in size. Fourier transform-infrared analysis identified various functional groups. The synthesized AgNPs demonstrated remarkable activity against S. Enteritidis and C. albicans . The zones of inhibition for 100 µl (0.5 mg ml −1 ) of AgNPs against S. Enteritidis and C. albicans were 18.0 ± 1.0 and 19.5 ± 1.3 mm, respectively. The minimum inhibitory concentrations were 25.0 and 12.5 µg ml −1 against S. Enteritidis and C. albicans , respectively. Additionally, the minimum bactericidal concentrations were 25.0 µg ml −1 against both pathogenic microbes. The field emission scanning electron microscopy analysis showed that the treatment of AgNPs caused morphological and structural damage to both S. Enteritidis and C. albicans . Therefore, these AgNPs can be used as a new and effective antimicrobial agent.

Funder

King Saud University, Riyadh, Saudi Arabia

Researchers Supporting Project

National Research Foundation of Korea

Publisher

The Royal Society

Subject

Multidisciplinary

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