Nanofluidic Arrays

Nanofluidic arrays are engineered systems of interconnected channels, pores, or wells with nanoscale dimensions that control fluids and biomolecules, enabling measurements at length scales comparable to individual molecules. Their small size creates strong surface effects and molecular confinement, while pressure-driven or electrokinetic transport moves samples through patterned nanostructures for separation, concentration, trapping, or detection. In biology, these arrays support single-molecule analysis, DNA manipulation, biomarker detection, and studies of transport through membranes and cellular-scale barriers. By reducing sample volumes and integrating many parallel nanostructures, they can improve analytical throughput and help researchers examine biological processes with high spatial and molecular resolution.

Nanofluidic Arrays - Related Videos

Research

JoVE Journal - Engineering

Creating Sub-50 Nm Nanofluidic Junctions in PDMS Microfluidic Chip via Self-Assembly Process of Colloidal Particles

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Cited by 1 •

2016

We propose a simple self-assembly technique of silica colloidal nanoparticles to create a nanofluidic junction between two microchannels in polydimethylsiloxane (PDMS). Using this technique, a nanoporous bead membrane with a pore size down to ~45 nm was built inside a microchannel and applied to electrokinetic preconcentration of DNA samples.

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.

Array Comparative Genomic Hybridization (Array CGH) for Detection of Genomic Copy Number Variants

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Cited by 7 •

2015

Array CGH for the detection of genomic copy number variants has replaced G-banded karyotype analysis. This paper describes the technology and its application in a diagnostic service laboratory.

Synthesis of Graphene Nanofluids with Controllable Flake Size Distributions

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2019

A method for synthesizing graphene nanofluids with controllable flake size distributions is presented.

Research

JoVE Journal - Biology
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Design and Use of Multiplexed Chemostat Arrays

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Cited by 108 •

2013

We developed and validated a small-footprint array of miniature chemostats built from readily available parts for low cost. Physiological and experimental evolution results were similar to larger volume chemostats. The ministat array provides a compact, inexpensive, and accessible platform for traditional chemostat experiments, functional genomics, and chemical screening applications.

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