Efficient separation and enrichment of pathogenic bacteria from complex matrices are crucial for the detection and downstream biomedical investigations. Herein, we report a floating magnetic membrane comprised of superparamagnetic nanoparticles and cationic polymer chains for rapid capture and enrichment of pathogenic bacteria under continuous flow. Magnetic nanoparticles combined with polymeric chains have shown affordable features to capture, release, and concentrate the pathogens by applying an external magnetic field. We have verified the modulated porous characteristics of the floating magnetic membrane depending on the molecular weight of cationic polymer chains and demonstrated rapid enrichment of pathogenic bacteria from aqueous flu...
We report here the concept of a magnetically controlled extraction of hydrophilic bioreceptors into ...
Pathogenic bacteria are causative agents of epidemics and deaths worldwide; water is a vector for th...
This article belongs to the Special Issue Membrane and Membrane Bioreactors Applied to Health and Li...
We have developed a method for rapid detection of pathogenic bacteria from water using a virtual net...
Magnetic nanoparticles have been employed to capture pathogens for many biological applications; how...
[[abstract]]Isolation and enumeration of bacteria at ultralow concentrations and antibiotic resistan...
[[abstract]]Isolation and enumeration of bacteria at ultralow concentrations and antibiotic resistan...
We have developed a virtual filter that quickly and efficiently captures and detects pathogenic bact...
The lack of practical methods for bacterial separation remains a hindrance for the low-cost and succ...
[[abstract]]Here we describe an integrated microfluidic sorting device, which utilized sugar-encapsu...
An integrated polymer-based microfluidic device for capture and release of bacteria using antibodysp...
The bacterial cell envelope is a highly structured multi-layer meant to assure cell integrity and pr...
We developed a novel 3D immunomagnetic flow assay for the rapid detection of pathogenic bacteria in ...
In this paper, biofunctional magnetic beads were investigated for bacterial cells concentration in a...
Pathogenic bacteria are fetal to human health, requiring cost-effective and safe approaches to be re...
We report here the concept of a magnetically controlled extraction of hydrophilic bioreceptors into ...
Pathogenic bacteria are causative agents of epidemics and deaths worldwide; water is a vector for th...
This article belongs to the Special Issue Membrane and Membrane Bioreactors Applied to Health and Li...
We have developed a method for rapid detection of pathogenic bacteria from water using a virtual net...
Magnetic nanoparticles have been employed to capture pathogens for many biological applications; how...
[[abstract]]Isolation and enumeration of bacteria at ultralow concentrations and antibiotic resistan...
[[abstract]]Isolation and enumeration of bacteria at ultralow concentrations and antibiotic resistan...
We have developed a virtual filter that quickly and efficiently captures and detects pathogenic bact...
The lack of practical methods for bacterial separation remains a hindrance for the low-cost and succ...
[[abstract]]Here we describe an integrated microfluidic sorting device, which utilized sugar-encapsu...
An integrated polymer-based microfluidic device for capture and release of bacteria using antibodysp...
The bacterial cell envelope is a highly structured multi-layer meant to assure cell integrity and pr...
We developed a novel 3D immunomagnetic flow assay for the rapid detection of pathogenic bacteria in ...
In this paper, biofunctional magnetic beads were investigated for bacterial cells concentration in a...
Pathogenic bacteria are fetal to human health, requiring cost-effective and safe approaches to be re...
We report here the concept of a magnetically controlled extraction of hydrophilic bioreceptors into ...
Pathogenic bacteria are causative agents of epidemics and deaths worldwide; water is a vector for th...
This article belongs to the Special Issue Membrane and Membrane Bioreactors Applied to Health and Li...