Javascript must be enabled to continue!
Antibacterial Effect of Colloidal Suspensions Varying in Silver Nanoparticles and Ions Concentrations
View through CrossRef
A lot of effort has been dedicated recently to provide a better insight into the mechanism of the antibacterial activity of silver nanoparticles (AgNPs) colloidal suspensions and their released silver ionic counterparts. However, there is no consistency regarding whether the antibacterial effect displayed at cellular level originates from the AgNPs or their ionic constitutes. To address this issue, three colloidal suspensions exhibiting different ratios of AgNPs/silver ions were synthesized by a wet chemistry method in conjunction with tangential flow filtration, and were characterized and evaluated for their antimicrobial properties against two gram-negative, Escherichia coli (E. coli) and Pseudomonas aeruginosa (P. aeruginosa), and two gram-positive, Staphylococcus aureus (S. aureus) and Staphylococcus epidermidis (S. epidermidis), bacterial strains. The produced samples contained 25% AgNPs and 75% Ag ions (AgNP_25), 50% AgNPs and 50% Ag ions (AgNP_50), and 100% AgNPs (AgNP_100). The sample AgNP_100 demonstrated the lowest minimum inhibitory concentration values ranging from 4.6 to 15.6 ppm for all four bacterial strains, while all three samples indicated minimum bactericidal concentration (MBC) values ranging from 16.6 ppm to 62.5 ppm against all strains. An increase in silver ions content results in higher bactericidal activity. All three samples were found to lead to a significant morphological damage by disruption of the bacterial cell membranes as analyzed by means of scanning electron microscopy (SEM). The growth kinetics demonstrated that all three samples were able to reduce the bacterial population at a concentration of 3.1 ppm. SEM and growth kinetic data underline that S. epidermidis is the most sensitive among all strains against the investigated samples. Our results showed that all three AgNPs colloidal suspensions exhibited strong antibacterial properties and, thus, they can be applied in medical devices and antimicrobial control systems.
Title: Antibacterial Effect of Colloidal Suspensions Varying in Silver Nanoparticles and Ions Concentrations
Description:
A lot of effort has been dedicated recently to provide a better insight into the mechanism of the antibacterial activity of silver nanoparticles (AgNPs) colloidal suspensions and their released silver ionic counterparts.
However, there is no consistency regarding whether the antibacterial effect displayed at cellular level originates from the AgNPs or their ionic constitutes.
To address this issue, three colloidal suspensions exhibiting different ratios of AgNPs/silver ions were synthesized by a wet chemistry method in conjunction with tangential flow filtration, and were characterized and evaluated for their antimicrobial properties against two gram-negative, Escherichia coli (E.
coli) and Pseudomonas aeruginosa (P.
aeruginosa), and two gram-positive, Staphylococcus aureus (S.
aureus) and Staphylococcus epidermidis (S.
epidermidis), bacterial strains.
The produced samples contained 25% AgNPs and 75% Ag ions (AgNP_25), 50% AgNPs and 50% Ag ions (AgNP_50), and 100% AgNPs (AgNP_100).
The sample AgNP_100 demonstrated the lowest minimum inhibitory concentration values ranging from 4.
6 to 15.
6 ppm for all four bacterial strains, while all three samples indicated minimum bactericidal concentration (MBC) values ranging from 16.
6 ppm to 62.
5 ppm against all strains.
An increase in silver ions content results in higher bactericidal activity.
All three samples were found to lead to a significant morphological damage by disruption of the bacterial cell membranes as analyzed by means of scanning electron microscopy (SEM).
The growth kinetics demonstrated that all three samples were able to reduce the bacterial population at a concentration of 3.
1 ppm.
SEM and growth kinetic data underline that S.
epidermidis is the most sensitive among all strains against the investigated samples.
Our results showed that all three AgNPs colloidal suspensions exhibited strong antibacterial properties and, thus, they can be applied in medical devices and antimicrobial control systems.
Related Results
Antimicrobial activity of ciprofloxacin-coated gold nanoparticles on selected pathogens
Antimicrobial activity of ciprofloxacin-coated gold nanoparticles on selected pathogens
Antibiotic resistance amongst bacterial pathogens is a crisis that has been worsening over recent decades, resulting in serious and often fatal infections that cannot be treated by...
Multifunctional Silver Nanoparticles: Synthesis and Applications
Multifunctional Silver Nanoparticles: Synthesis and Applications
Multifunctional silver nanoparticles have attracted widely due to their potential applications. Based on the properties of individual silver nanoparticles, such as plasmonic and an...
Nanogold and nanosilver hybrid polymer materials
Nanogold and nanosilver hybrid polymer materials
<p>Significant opportunities exist in both the scientific and industrial sectors for the development of new generation hybrid materials. These multifunctional hybrid material...
Experimental and theoritical research on the dynamical transmission of 30 keV H+ ions through polycarbonate nanocapillaries
Experimental and theoritical research on the dynamical transmission of 30 keV H+ ions through polycarbonate nanocapillaries
The ions with different incident energies transmitting through insulating nanocapillaries are studied in various configurations. For the low energy ions transmitting through nanoca...
Surface nano-structured materials to control bacterial contamination
Surface nano-structured materials to control bacterial contamination
The spread of bacteria and infections, initially associated with an increased number of hospital-acquired infections, has now extended into the community causing severe and difficu...
GREEN SYNTHESIS OF SILVER NANOPARTICLES USING MORUS ALBA EXTRACT AND THEIR ANTIBACTERIAL PROPERTIES
GREEN SYNTHESIS OF SILVER NANOPARTICLES USING MORUS ALBA EXTRACT AND THEIR ANTIBACTERIAL PROPERTIES
Background
Metal nanoparticles can be used to control a range of resistant and pathogenic microorganisms. Nanoparticles are used in many different fields, including medicine, diagn...
Investigations on the passage of light through suspensions
Investigations on the passage of light through suspensions
AbstractAn examination has been made of the manner in which light passing through suspensions of solid materials in water, and the light scattered from such illuminated suspensions...
Recycling of Hazelnut Husk; from Bio‐waste to Phyto‐Assisted Synthesis of Silver Nanoparticles
Recycling of Hazelnut Husk; from Bio‐waste to Phyto‐Assisted Synthesis of Silver Nanoparticles
AbstractIn the present work, green synthesis is utilized in the synthesis of silver nanoparticles with hazelnut (Corylus Colurna) husk which is the outer leaf part of the hazelnut ...

