Microfluidic Liposome Generation

Microfluidic liposome generation is a method for producing liposomes, nanoscale lipid vesicles that can encapsulate and deliver biological or therapeutic cargo, within precisely controlled microfluidic devices. In these systems, an organic lipid phase and an aqueous phase meet under laminar flow, and hydrodynamic focusing promotes rapid solvent exchange and spontaneous lipid self-assembly; adjusting flow rates and channel conditions helps control vesicle size, distribution, and encapsulation efficiency. This approach offers reproducible, scalable preparation compared with conventional bulk methods and supports the development of drug delivery systems, diagnostic platforms, vaccines, and engineered biomaterials in bioengineering research.

Microfluidic Liposome Generation - Related Videos

Research

JoVE Journal - Bioengineering

Microfluidic Production of Lysolipid-Containing Temperature-Sensitive Liposomes

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Cited by 5 •

2020

The protocol presents the optimized parameters for preparing thermosensitive liposomes using the staggered herringbone micromixer microfluidics device. This also allows co-encapsulation of doxorubicin and indocyanine green into the liposomes and the photothermal-triggered release of doxorubicin for controlled/triggered drug release.

High-throughput Protein Expression Generator Using a Microfluidic Platform

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Cited by 22 •

2012

We present a microfluidic approach for the expression of protein arrays. The device consists of thousands of reaction chambers controlled by micro-mechanical valves. The microfluidic device is mated to a microarray-printed gene library. These genes are then transcribed and translated on-chip, resulting in a protein array ready for experimental use.

Generating Neuromuscular Junctions Using a Microfluidic Device

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2025

The video demonstrates the formation of neuromuscular junctions using a microfluidic device. Neural precursor cells and muscle progenitor cells are seeded into different wells within the device and left to mature into motor neurons and myotubes, respectively. The creation of a volume and chemical gradient leads to the development of active neuromuscular junctions.

Lipid Bilayer Vesicle Generation Using Microfluidic Jetting

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Cited by 16 •

2014

Microfluidic jetting against a droplet interface lipid bilayer provides a reliable way to generate vesicles with control over membrane asymmetry, incorporation of transmembrane proteins, and encapsulation of material. This technique can be applied to study a variety of biological systems where compartmentalized biomolecules are desired.

Antigenic Liposomes for Generation of Disease-specific Antibodies

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Cited by 18 •

2018

Described is the preparation of antigenic liposomal nanoparticles and their use in stimulating B-cell activation in vitro and in vivo. Consistent and robust antibody responses led to the development of a new peanut allergy model. The protocol for generating antigenic liposomes can be extended to different antigens and immunization models.

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