Microfluidic Biochip

A microfluidic biochip is a miniaturized analytical device that controls tiny fluid volumes in microscale channels, enabling complex biological assays in a compact format. It works by directing samples through engineered channels using pressure-driven or capillary flow, where mixing, separation, concentration, and reactions occur under controlled conditions; integrated sensors or imaging then measure the results. In immunology and infection research, these chips can isolate immune cells, model cell interactions, detect pathogen-derived molecules, and evaluate host responses or antimicrobial activity with reduced reagent use and rapid analysis. Their small scale also supports multiplexed testing and controlled cellular microenvironments.

Microfluidic Biochip - Related Videos

Research

JoVE Journal - Bioengineering

A Microfluidic-based Electrochemical Biochip for Label-free DNA Hybridization Analysis

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Cited by 4 •

2014

We present a microfluidic-based electrochemical biochip for DNA hybridization detection. Following ssDNA probe functionalization, the specificity, sensitivity, and detection limit are studied with complementary and non-complementary ssDNA targets. Results illustrate the influence of the DNA hybridization events on the electrochemical system, with a detection limit of 3.8 nM.

Application of Biochip Microfluidic Technology to Detect Serum Allergen-specific Immunoglobulin E (sIgE)

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Cited by 5 •

2019

This paper presents a protocol for detecting serum-specific immunoglobulin E with a microfluidic cartridge-based chemiluminescence system and the evaluation of its usefulness in allergy diagnoses.

Research

JoVE Journal - Environment
Free Sample

Preparation and Testing of Impedance-based Fluidic Biochips with RTgill-W1 Cells for Rapid Evaluation of Drinking Water Samples for Toxicity

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Cited by 12 •

2016

This manuscript describes how to prepare fluidic biochips with Rainbow trout gill epithelial cells for use in a field portable electric cell-substrate impedance sensor. The protocol for running a rapid drinking water toxicity test with the sensor is also described.

Microfluidic Flow Chambers Using Reconstituted Blood to Model Hemostasis and Platelet Transfusion In Vitro

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Cited by 9 •

2016

Platelet transfusion and hemostasis was modeled using blood reconstitution and microfluidic flow chambers to investigate the function of blood banking platelets. The data demonstrate the consequences of platelet storage lesion on hemostasis, in vitro.

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