Multidrug resistance of bacteria is a major challenge due to the wide-spread use of antibiotics. While a range of strategies have been developed in recent years, suppression of bacterial activity and virulence via their network of extracellular amyloid has rarely been explored, especially with nanomaterials. Here, silver nanoparticles and nanoclusters (AgNPs and AgNCs) capped with cationic branched polyethylenimine polymer are synthesized, and their antimicrobial potentials are determined at concentrations safe to mammalian cells. Compared with the ultrasmall AgNCs, AgNPs entail stronger binding to suppress the fibrillization of FapC, a major protein constituent of the extracellular amyloid matrix of Pseudomonas aeruginosa. Both types of na...
Nanomaterials are an emerging therapeutic option for resistant planktonic MDR and biofilm diseases. ...
The application of nanotechnology in medicine has opened new perspectives for the management of diff...
Multidrug resistant organisms have been taunting the medical world for the last few decades. Even wi...
Multidrug resistance represents a growing threat to human beings, and alternative antimicrobial regi...
Multidrug resistance represents a growing threat to human beings, and alternative antimicrobial regi...
Multidrug resistance represents a growing threat to human beings, and alternative antimicrobial regi...
This review highlights the different modes of synthesizing silver nanoparticles (AgNPs) from their e...
Antibiotic resistance against present antibiotics is rising at an alarming rate with need for discov...
Bacterial multidrug resistance (MDR) is a serious healthcare issue caused by the long-term subtherap...
Biofilms are aggregates of bacteria residing in a self-assembled matrix, which protects these sessil...
Biofilms are aggregates of bacteria residing in a self-assembled matrix, which protects these sessil...
The emergence of antibiotic-resistant bacteria and the failure of the existing antibacterial therape...
Biofilm form thick polysaccharide layers that protect the organisms from the immune system and antib...
Biofilm form thick polysaccharide layers that protect the organisms from the immune system and antib...
We develop a novel nanohybrid showing a strong antibacterial activity on all of the tested pathogens...
Nanomaterials are an emerging therapeutic option for resistant planktonic MDR and biofilm diseases. ...
The application of nanotechnology in medicine has opened new perspectives for the management of diff...
Multidrug resistant organisms have been taunting the medical world for the last few decades. Even wi...
Multidrug resistance represents a growing threat to human beings, and alternative antimicrobial regi...
Multidrug resistance represents a growing threat to human beings, and alternative antimicrobial regi...
Multidrug resistance represents a growing threat to human beings, and alternative antimicrobial regi...
This review highlights the different modes of synthesizing silver nanoparticles (AgNPs) from their e...
Antibiotic resistance against present antibiotics is rising at an alarming rate with need for discov...
Bacterial multidrug resistance (MDR) is a serious healthcare issue caused by the long-term subtherap...
Biofilms are aggregates of bacteria residing in a self-assembled matrix, which protects these sessil...
Biofilms are aggregates of bacteria residing in a self-assembled matrix, which protects these sessil...
The emergence of antibiotic-resistant bacteria and the failure of the existing antibacterial therape...
Biofilm form thick polysaccharide layers that protect the organisms from the immune system and antib...
Biofilm form thick polysaccharide layers that protect the organisms from the immune system and antib...
We develop a novel nanohybrid showing a strong antibacterial activity on all of the tested pathogens...
Nanomaterials are an emerging therapeutic option for resistant planktonic MDR and biofilm diseases. ...
The application of nanotechnology in medicine has opened new perspectives for the management of diff...
Multidrug resistant organisms have been taunting the medical world for the last few decades. Even wi...