| Literature DB >> 32382563 |
Muhammad Hussnain Siddique1, Bilal Aslam2, Muhammad Imran3, Asma Ashraf4, Habibullah Nadeem1, Sumreen Hayat2,5, Mohsin Khurshid2, Muhammad Afzal1, Imran Riaz Malik5, Mudassar Shahzad1, Umber Qureshi2, Zia Ul Haq Khan3, Saima Muzammil2.
Abstract
Antibiotic resistance against present antibiotics is rising at an alarming rate with need for discovery of advanced methods to treat infections caused by resistant pathogens. Silver nanoparticles are known to exhibit satisfactory antibacterial and antibiofilm activity against different pathogens. In the present study, the AgNPs were synthesized chemically and characterized by UV-Visible spectroscopy, scanning electron microscopy, and X-ray diffraction. Antibacterial activity against MDR K. pneumoniae strains was evaluated by agar diffusion and broth microdilution assay. Cellular protein leakage was determined by the Bradford assay. The effect of AgNPs on production on extracellular polymeric substances was evaluated. Biofilm formation was assessed by tube method qualitatively and quantitatively by the microtiter plate assay. The cytotoxic potential of AgNPs on HeLa cell lines was also determined. AgNPs exhibited an MIC of 62.5 and 125 μg/ml, while their MBC is 250 and 500 μg/ml. The production of extracellular polymeric substance decreased after AgNP treatment while cellular protein leakage increased due to higher rates of cellular membrane disruption by AgNPs. The percentage biofilm inhibition was evaluated to be 64% for K. pneumoniae strain MF953600 and 86% for MF953599 at AgNP concentration of 100 μg/ml. AgNPs were evaluated to be minimally cytotoxic and safe at concentrations of 15-120 μg/ml. The data evaluated by this study provided evidence of AgNPs being safe antibacterial and antibiofilm compounds against MDR K. pneumoniae.Entities:
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Year: 2020 PMID: 32382563 PMCID: PMC7189323 DOI: 10.1155/2020/6398165
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1UV-Visible absorption spectrum of AgNPs showing absorbance peak at the wavelength of 415 nm.
Figure 2XRD spectra of AgNPs synthesized by chemical reduction method (a); SEM micrograph of AgNPs (b).
Antibacterial effect of AgNPs determined by agar well diffusion method.
| Strain | Diameter of zone of inhibition (mm) | |||
|---|---|---|---|---|
| 1000 ( | 500 ( | 250 ( | 100 ( | |
| MF953599 | 34 ± 1 | 26 ± 2 | 18 ± 0.5 | 12 ± 1 |
| MF953600 | 37 ± 0.5 | 27 ± 1 | 19 ± 1 | 15 ± 0.5 |
MIC and MBC for AgNPs against Klebsiella pneumoniae.
| Strains | MIC ( | MBC ( |
|---|---|---|
|
| 125 | 500 |
|
| 62.5 | 250 |
Figure 3Effect of silver nanoparticles on membrane protein leakage. The Bradford method was used to detect the effect of different concentrations of NPs on leakage of protein. Values are presented as mean + SE.
Figure 4FTIR spectrum of Klebsiella pneumoniae strain MF953600: (a) control cells and (b) with AgNP treatment.
Figure 5Quantification of EPS extracted from bacterial cells in the presence and absence of subinhibitory concentrations of AgNPs. The results are expressed in terms of wet and dry weights of EPS extracted.
Qualitative estimation of biofilm formation by tube method.
| Intensity of color of biofilm | Positive control | Concentrations of Ag NPs ( | Negative control | |||
|---|---|---|---|---|---|---|
| 25 | 50 | 75 | 100 | |||
| MF953599 | ++++ | +++ | + | + | − | − |
| MF953600 | ++++ | +++ | + | − | − | − |
Figure 6Percent inhibition of biofilm formation by various concentrations of AgNPs against Klebsiella pneumoniae. For quantification of biofilm formation, absorbance was measured at 620 nm.
Figure 7% viability of HeLa cells treated with different concentrations of AgNPs. 100% value represents zero toxicity whereas lower values are depicting cytotoxicity towards HeLa cell lines. Error bars represent standard error from the mean of triplicate experiments.
Figure 8Phase-contrast microscopy of HeLa cells treated with different concentrations of silver nanoparticles. (a) Untreated cells (control). (b) Cells treated with NPs at a concentration of 60 μg/ml. (c) Cells treated with NPs at a concentration of 240 μg/ml showing morphological deformities such as lysis and rounding off.