Phenotypic and Genotypic Characterization of Recently Isolated Multidrug-Resistant Acinetobacter baumannii Clinical and Aquatic Strains and Demonstration of Silver Nanoparticle Potency

Author:

Gheorghe-Barbu Irina12,Corbu Viorica Maria12,Vrancianu Corneliu Ovidiu123ORCID,Marinas Ioana Cristina1ORCID,Popa Marcela12ORCID,Dumbravă Andreea Ștefania12,Niță-Lazăr Mihai4,Pecete Ionut5,Muntean Andrei Alexandru67,Popa Mircea Ioan67ORCID,Marinescu Liliana8,Ficai Denisa8ORCID,Ficai Anton8ORCID,Czobor Barbu Ilda12

Affiliation:

1. Faculty of Biology, University of Bucharest, Intr. Portocalelor No. 1–3, 060101 Bucharest, Romania

2. The Research Institute of the University of Bucharest (ICUB), B.P Hasdeu No. 7, 050095 Bucharest, Romania

3. National Institute of Research and Development for Biological Sciences, 296 Splaiul Independentei, District 6, 060031 Bucharest, Romania

4. National Research and Development Institute for Industrial Ecology (INCD ECOIND), 050663 Bucharest, Romania

5. Central Reference Synevo-Medicover Laboratory, 021408 Bucharest, Romania

6. Cantacuzino National Medical Military Institute for Research and Development, 050096 Bucharest, Romania

7. Department of Microbiology II, Faculty of Medicine, Carol Davila University of Medicine and Pharmacy, 020021 Bucharest, Romania

8. Faculty of Applied Chemistry and Materials Science, University Politechnica of Bucharest, Gh. Polizu, No. 1–7, 011061 Bucharest, Romania

Abstract

This study aims to demonstrate the effectiveness of silver nanoparticles (Ag NPs) on multidrug-resistant (MDR) Acinetobacter baumannii (AB) strains isolated from the clinical and aquatic environment. Three types of Ag NPs were investigated for their antimicrobial, antibiofilm, and antivirulence properties on a total number of 132 AB strains isolated in the same temporal sequence from intra-hospital infections (IHIs), wastewater (WW), and surface water (SW) samples between 2019 and 2022 from different Romanian locations and characterized at the phenotypic and genotypic levels. The comparative analysis of the antimicrobial resistance (AR) profiles according to the isolation source and the geographical location demonstrated a decrease in MDR level in AB recovered from WW samples in 2022 from north-eastern/central/southern regions (N-E/C-W/analyzed strains S): 87.5/60/32.5%. The AB strains were lecithinase, caseinase, amylase, and lipase producers, had variable biofilm formation ability, and belonged to six genotypes associated with the presence of different virulence genes (ompA, csuE, bap, and bfmS). The Ag NPs synthesized with the solvothermal method exhibited an inhibitory effect on microbial growth, the adherence capacity to the inert substratum, and on the production of soluble virulence factors. We report here the first description of a powerful antibacterial agent against MDR AB strains circulating between hospitals and anthropically polluted water in Romania.

Funder

UEFISCDI

Ministry of Research, Innovation, and Digitalization

European Regional Development Fund

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

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