Designs and applications of microfluidics-based devices for molecular diagnostics (Nucleic Acid Amplification Tests, NAATs) in infectious disease testing are reviewed, with emphasis on minimally instrumented, point-of-care (POC) tests for resource-limited settings. Microfluidic cartridges (‘chips’) that combine solid-phase nucleic acid extraction; isothermal enzymatic nucleic acid amplification; pre-stored, paraffin-encapsulated lyophilized reagents; and real-time or endpoint optical detection are described. These chips can be used with a companion module for separating plasma from blood through a combined sedimentation-filtration effect. Three reporter types: Fluorescence, colorimetric dyes, and bioluminescence; and a new paradigm for end-...
Point-of-care testing (POCT) is necessary to provide a rapid diagnostic result for a prompt on-site ...
Diagnostic tools for biomolecular detection need to fulfill specific requirements in terms of sensit...
Rapid, sensitive, and specific detection of causative pathogens is key to personalized medicine and ...
Designs and applications of microfluidics-based devices for molecular diagnostics (Nucleic Acid Ampl...
Microfluidic components and systems for rapid (<60 min), low-cost, convenient, field-deployable s...
Molecular diagnostics that involve nucleic acid amplification tests (NAATs) are crucial for preventi...
The disproportionate burden of infectious disease and lack of appropriate diagnostic tools in the d...
Nucleic acid amplification technologies (NAATs) offer the most sensitive tests in the clinical labor...
There has been a recent resurgence in the use of paper as a substrate for developing point-of-care m...
There has been a recent resurgence in the use of paper as a substrate for developing point-of-care m...
Rapid, efficient and accurate nucleic acid molecule detection is important in the screening of disea...
Ideal point-of-care medical diagnostic devices are low cost assays capable of performing quantitativ...
Ideal point-of-care medical diagnostic devices are low cost assays capable of performing quantitativ...
The concept of personalised diagnostics is to direct accurate clinical decisions based on an individ...
Point-Of-Care (POC) testing has advanced to more affordable and rapid alternatives by adapting conve...
Point-of-care testing (POCT) is necessary to provide a rapid diagnostic result for a prompt on-site ...
Diagnostic tools for biomolecular detection need to fulfill specific requirements in terms of sensit...
Rapid, sensitive, and specific detection of causative pathogens is key to personalized medicine and ...
Designs and applications of microfluidics-based devices for molecular diagnostics (Nucleic Acid Ampl...
Microfluidic components and systems for rapid (<60 min), low-cost, convenient, field-deployable s...
Molecular diagnostics that involve nucleic acid amplification tests (NAATs) are crucial for preventi...
The disproportionate burden of infectious disease and lack of appropriate diagnostic tools in the d...
Nucleic acid amplification technologies (NAATs) offer the most sensitive tests in the clinical labor...
There has been a recent resurgence in the use of paper as a substrate for developing point-of-care m...
There has been a recent resurgence in the use of paper as a substrate for developing point-of-care m...
Rapid, efficient and accurate nucleic acid molecule detection is important in the screening of disea...
Ideal point-of-care medical diagnostic devices are low cost assays capable of performing quantitativ...
Ideal point-of-care medical diagnostic devices are low cost assays capable of performing quantitativ...
The concept of personalised diagnostics is to direct accurate clinical decisions based on an individ...
Point-Of-Care (POC) testing has advanced to more affordable and rapid alternatives by adapting conve...
Point-of-care testing (POCT) is necessary to provide a rapid diagnostic result for a prompt on-site ...
Diagnostic tools for biomolecular detection need to fulfill specific requirements in terms of sensit...
Rapid, sensitive, and specific detection of causative pathogens is key to personalized medicine and ...