Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.The rapid expansion of drug-resistant pathogens has created huge global impact and development of novel antimicrobial leads is one of the top priority studies in the current scenario. The present study aims to develop bio-hybridized nanocellulose flms which comprise of phytogenic silver nanobactericides. The nanobactericides were synthesized by treating 1 mM silver nitrate with aqueous extract of Chamerion angustifolium which reduced the metal salt to produce polydispersed nanobactericides which were tested against the members of ESKAPE drug-resistant communities. The synthesized silver nanobactericides were subjected to characterization with UV–visible spectr...
Small, spherical silver nanoclusters were synthesised on the surface of paper as a model cellulosic ...
Background/Purpose: In this study, an acidophilic actinobacteria strain was used as a novel reducing...
Green synthesis is an attractive and eco-friendly approach to generate potent antibacterial silver n...
The rapid expansion of drug-resistant pathogens has created huge global impact and development of no...
The present study describes the synthesis of silver and zinc oxide nanobactericides from the phytoge...
The present study describes production of bacterial cellulose composites with silver nanoparticles a...
A simple method was developed to load a large amount of silver nanoparticles into bacterial cellulos...
In the present study, antibacterial activity of silver nanoparticles synthesized from entophytic fun...
We used hairy nanocrystalline cellulose functionalized with aldehyde groups, otherwise known as ster...
The present study emphasizes the need for novel antimicrobial agents to combat the global drug resis...
Background: Silver nanoparticles can consider as an alternative source for some antibiotic usages du...
Syed Zeeshan Haider Naqvi, Urooj Kiran, Muhammad Ishtiaq Ali, Asif Jamal, Abdul Hameed, Safia Ahmed,...
In the healthcare sector, the production of bioactive silver nanoparticles (AgNPs) with antimicrobia...
Many polymer-stabilized silver nanoparticles (AgNPs) with enhanced antibacterial properties have bee...
Efficacy and efficiency of pesticide application in the field through the foliage still face many ch...
Small, spherical silver nanoclusters were synthesised on the surface of paper as a model cellulosic ...
Background/Purpose: In this study, an acidophilic actinobacteria strain was used as a novel reducing...
Green synthesis is an attractive and eco-friendly approach to generate potent antibacterial silver n...
The rapid expansion of drug-resistant pathogens has created huge global impact and development of no...
The present study describes the synthesis of silver and zinc oxide nanobactericides from the phytoge...
The present study describes production of bacterial cellulose composites with silver nanoparticles a...
A simple method was developed to load a large amount of silver nanoparticles into bacterial cellulos...
In the present study, antibacterial activity of silver nanoparticles synthesized from entophytic fun...
We used hairy nanocrystalline cellulose functionalized with aldehyde groups, otherwise known as ster...
The present study emphasizes the need for novel antimicrobial agents to combat the global drug resis...
Background: Silver nanoparticles can consider as an alternative source for some antibiotic usages du...
Syed Zeeshan Haider Naqvi, Urooj Kiran, Muhammad Ishtiaq Ali, Asif Jamal, Abdul Hameed, Safia Ahmed,...
In the healthcare sector, the production of bioactive silver nanoparticles (AgNPs) with antimicrobia...
Many polymer-stabilized silver nanoparticles (AgNPs) with enhanced antibacterial properties have bee...
Efficacy and efficiency of pesticide application in the field through the foliage still face many ch...
Small, spherical silver nanoclusters were synthesised on the surface of paper as a model cellulosic ...
Background/Purpose: In this study, an acidophilic actinobacteria strain was used as a novel reducing...
Green synthesis is an attractive and eco-friendly approach to generate potent antibacterial silver n...