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Updated: May 12, 2026

Evaluation of Antimicrobial Activities of Nanoparticles and Nanostructured Surfaces In Vitro
Published on: April 21, 2023
Direct observation of bacterial deposition on and detachment from nanocomposite membranes embedded with silver
Yaolin Liu1, Eric Rosenfield, Meng Hu
1Department of Civil and Environmental Engineering, University of Maryland, 1161 Martin Hall, College Park, MD 20742, USA.
Abstract:
A microscope-equipped online monitoring system was used to investigate the bacterial deposition and detachment kinetics of a nanocomposite membrane that was synthesized by embedding silver nanoparticles in a polysulfone membrane. A pure polysulfone membrane was used as a control in the experiments. The deposition experiments with live bacteria showed that the bacterial deposition rates were the same for the nanocomposite and control polysulfone membranes. After the rinsing experiments, however, on average a high bacterial detachment ratio of 75% was observed for the nanocomposite membrane, compared with 18% for the control polysulfone membrane. These results indicate that the presence of silver nanoparticles as an antibacterial agent enhances the antiadhesive property of the nanocomposite membrane by decreasing the capability of bacteria in permanently attaching to the membrane surface. A quartz crystal microbalance with dissipation was used to study silver leaching. It was found that silver leaching significantly decreased within the first few hours. Deposition and rinsing experiments with dead bacterial cells revealed that the dead cell deposition rates were similar for both membranes, and so were the detachment ratios. Since the nanocomposite membrane did not show any antiadhesive action against dead cells, its antiadhesive property was most likely attributed to its ability to inhibit biological activities. Results of the antibacterial experiments confirmed that the nanocomposite membrane was highly effective in inhibiting bacterial growth with an antibacterial efficiency of over 98%, which did not decrease even after the membrane was soaked in DI water for seven days.
Insights
This study shows that silver nanoparticle nanocomposite membranes prevent bacteria from attaching. These membranes exhibit a high bacterial detachment ratio, indicating enhanced antiadhesive properties for improved water purification.
Area of Science:
- Materials Science
- Biotechnology
- Environmental Science
Background:
- Nanocomposite membranes offer potential for water treatment.
- Silver nanoparticles possess antibacterial properties.
- Understanding bacterial interaction with membranes is crucial for preventing biofilm formation.
Purpose of the Study:
- To investigate bacterial deposition and detachment kinetics on a silver nanoparticle-embedded polysulfone nanocomposite membrane.
- To evaluate the antiadhesive properties of the nanocomposite membrane compared to a pure polysulfone membrane.
- To assess the antibacterial efficacy and silver leaching of the nanocomposite membrane.
Main Methods:
- Online monitoring system with microscopy for bacterial deposition and detachment.
- Quartz crystal microbalance with dissipation for silver leaching analysis.
- Antibacterial experiments to determine growth inhibition efficiency.
Main Results:
- Bacterial deposition rates were similar for nanocomposite and control membranes.
- Nanocomposite membrane showed a significantly higher bacterial detachment ratio (75%) compared to the control (18%).
- Antibacterial efficiency exceeded 98% and remained stable after seven days of soaking.
Conclusions:
- Silver nanoparticles enhance the antiadhesive property of polysulfone membranes by inhibiting bacterial attachment.
- The nanocomposite membrane's antiadhesive action is attributed to its ability to inhibit biological activity.
- The developed nanocomposite membrane demonstrates high antibacterial efficiency and stability for water treatment applications.
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