Ultrasmall silver nanoparticles (AgNPs; size < 3 nm) have attracted a great deal of interest as an alternative to commercially available antibiotics due to their ability to eliminate a wide range of microbial pathogens. However, most of these ultrasmall AgNPs are highly reactive and unstable, as well as susceptible to fast oxidation. Therefore, both the stability and toxicity remain major shortcomings for their clinical application and uptake. To circumvent these problems, we present a novel strategy to impregnate ultrasmall AgNPs into a biocompatible thermosensitive hydrogel that enables controlled release of silver alongside long-term storage stability and highly potent antibacterial activity. The advantage of this strategy lies in the co...
Biofilms are aggregates of bacteria residing in a self-assembled matrix, which protects these sessil...
Multidrug resistance of bacteria is a major challenge due to the wide-spread use of antibiotics. Whi...
Antimicrobial nanocomposites (NCs) are being used as an alternative antibacterial therapy for killin...
The increasing emergence of antibiotic resistance coupled with the limited effectiveness of current ...
We have developed a silver-releasing biomaterial with promising potential for wound healing applicat...
Recurrent microbial infections are a major cause of surgical failure and morbidity. Wound healing st...
Recurrent microbial infections are a major cause of surgical failure and morbidity. Wound healing st...
Nowadays, silver nanoparticles are in the limelight to control infection during wound healing proces...
Dental caries and periodontal disease are the most prevalent diseases affecting the oral cavity. The...
Antibiotic resistance against present antibiotics is rising at an alarming rate with need for discov...
The need exists for biomaterials that prevent biofilm formation and associated infections. In this r...
Local bacterial infection is a challenging task and still remains a serious threat to human health i...
In wound care management, the prevention of wound infection and the retention of an appropriate leve...
This review highlights the different modes of synthesizing silver nanoparticles (AgNPs) from their e...
Here, we report the extracellular biosynthesis of silver nanoparticles (AgNPs) and determination of ...
Biofilms are aggregates of bacteria residing in a self-assembled matrix, which protects these sessil...
Multidrug resistance of bacteria is a major challenge due to the wide-spread use of antibiotics. Whi...
Antimicrobial nanocomposites (NCs) are being used as an alternative antibacterial therapy for killin...
The increasing emergence of antibiotic resistance coupled with the limited effectiveness of current ...
We have developed a silver-releasing biomaterial with promising potential for wound healing applicat...
Recurrent microbial infections are a major cause of surgical failure and morbidity. Wound healing st...
Recurrent microbial infections are a major cause of surgical failure and morbidity. Wound healing st...
Nowadays, silver nanoparticles are in the limelight to control infection during wound healing proces...
Dental caries and periodontal disease are the most prevalent diseases affecting the oral cavity. The...
Antibiotic resistance against present antibiotics is rising at an alarming rate with need for discov...
The need exists for biomaterials that prevent biofilm formation and associated infections. In this r...
Local bacterial infection is a challenging task and still remains a serious threat to human health i...
In wound care management, the prevention of wound infection and the retention of an appropriate leve...
This review highlights the different modes of synthesizing silver nanoparticles (AgNPs) from their e...
Here, we report the extracellular biosynthesis of silver nanoparticles (AgNPs) and determination of ...
Biofilms are aggregates of bacteria residing in a self-assembled matrix, which protects these sessil...
Multidrug resistance of bacteria is a major challenge due to the wide-spread use of antibiotics. Whi...
Antimicrobial nanocomposites (NCs) are being used as an alternative antibacterial therapy for killin...