An effective weapon against biofilm consortia and small colony variants of MRSA

Publish Year: 1399
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_IJBMS-23-11_017

تاریخ نمایه سازی: 19 دی 1399

Abstract:

Objective(s): This study was designed to investigate the effect of AgNPs (10 nm and 30 nm) on different phenotypes of Staphylococcus aureus biofilm consortia.Materials and Methods: A total of eighteen biofilm-producing isolates of Methicillin-Resistant S. aureus (MRSA) were used in the present study. Tube methods, Congo-red agar method, and scanning electron microscopy (SEM) were used to study biofilm phenotypes. Population analysis assay on a tryptone agar (TSA) plate was applied to study the different phenotypes of biofilm consortia. The effect of AgNPs was evaluated by broth dilution assay. Results: Results showed that biofilm consortia harbor different phenotypes, i.e., planktonic, metabolically inactive cells, and small colony variants (SCVs) or persister cells. The focus of the present study is the effect of AgNPs on biofilm consortia of MRSA, particularly on the SCVs population. Large size AgNPs (30 nm) were unable to diffuse through extracellular matrix material coverings of the biofilm consortia; they were only active against the planktonic population that occupies the outer surface of consortia. The smaller AgNPs (10 nm), on the other hand, were found to diffuse through the matrix material and hence were effective against planktonic as well as metabolically inactive population of consortia. Moreover, 30 nm AgNPs take 6 hr to disperse off and kill planktonic and upper surface indwellers. The 10 nm AgNPs disperse and kill the majority of biofilm indwellers within 20 min. Conclusion: The present study showed that 10 nm AgNPs can easily penetrate inside the biofilm and are active against all of the indwellers of consortia.

Keywords:

AgNPs Biofilms MRSA Nano , Particles SCVs

Authors

Zulfiqar Mirani

Microbiology-FMRRC-Pakistan Council of Scientific and Industrial Research Laboratories Complex Karachi, Pakistan

Shaista Urooj

Bioscience, Shaheed Zulfiqar Ali Bhutto Institute of Science & Technology Karachi, Pakistan

Muhammad Khan

Microbiology-FMRRC-Pakistan Council of Scientific and Industrial Research Laboratories Complex Karachi, Pakistan

Abdul Khan

Microbiology-FMRRC-Pakistan Council of Scientific and Industrial Research Laboratories Complex Karachi, Pakistan

Izhar Shaikh

Pakistan Council of Scientific and Industrial Research-Islamabad, Pakistan

Anila Siddiqui

Microbiology-FMRRC-Pakistan Council of Scientific and Industrial Research Laboratories Complex Karachi, Pakistan

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