On-chip Fractionation

On-chip fractionation is the separation of cells, particles, or biomolecules within a miniaturized microfluidic device, enabling precise analysis with small sample volumes. These systems direct fluid through engineered channels or barriers that exploit differences in size, deformability, density, electrical properties, or hydrodynamic behavior, causing sample components to follow distinct paths or become selectively retained. In bioengineering, on-chip fractionation supports cell sorting, sample preparation, circulating tumor cell enrichment, extracellular vesicle isolation, and biomolecule analysis. By integrating separation with detection and other laboratory steps, the approach can reduce reagent use, shorten processing times, and support portable, automated platforms for research and clinical applications.

On-chip Fractionation - Related Videos

Education

JoVE Science Education - Chemistry

Fractional Distillation

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2023

Source: Laboratory of Dr. Nicholas Leadbeater — University of Connecticut Distillation is perhaps the most common laboratory technique employed by chemists for the purification of organic liquids. Compounds in a mixture with different boiling points separate into individual components when the mixture is carefully distilled. The two main types of distillation are "simple distillation" and "fractional distillation", and both are widely used in organic chemistry laboratories. Simple distillation...

Research

JoVE EoE - PCR Techniques

Chip-Based Digital PCR to Detect Rare Transcript Variants Using a Nanofluidic Chip

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2025

This video demonstrates chip-based digital PCR — a variation of the digital PCR technique that is useful in detecting rare transcript variants. The PCR reaction is partitioned into the chambers of a nanofluidic chip, each of which acts as an independent reaction. The detection of fluorescence signals from the chambers with amplified targets confirms the presence of rare transcript variants in the sample.

Organ-on-Chip Models

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2026

Introduction to Organ-on-Chip Models Organ-on-chip models are advanced microphysiological systems that recreate key structural and functional features of human organs in a controlled laboratory setting. These devices integrate living human cells within microfluidic channels, allowing researchers to simulate tissue–tissue interfaces, fluid flow, and mechanical forces that are essential for normal organ function. Unlike traditional cell cultures, which often lack these dynamic physiological cues,...

Lensless Fluorescent Microscopy on a Chip

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Cited by 8 •

2011

A lensless on-chip fluorescent microscopy platform is demonstrated that can image fluorescent objects over an ultra-wide field-of-view of e.g., >0.6-8 cm2 with <4μm resolution using a compressive sampling based decoding algorithm. Such a compact and wide-field fluorescent on-chip imaging modality could be valuable for high-throughput cytometry, rare-cell research and microarray-analysis.

On-Chip Endothelial Inflammatory Phenotyping

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Cited by 3 •

2012

Microfluidic flow chambers etched by photolithography and fabricated from PDMS are applied to probe functional outcomes associated with EC dysfunction and inflammation. In a representative experiment, the ability of differential shear stress to modulate monocytic cell adhesion to cytokine activated EC monolayers is demonstrated.

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