Microfluidic Shear Flow

Microfluidic shear flow is the controlled movement of fluid through channels measuring micrometers in size, used to study how living cells respond to mechanical forces. Because fluid motion is confined within narrow channels, researchers can precisely adjust flow rate, viscosity, and channel geometry to generate defined wall shear stress at cell surfaces. This approach models conditions found in blood vessels, airways, and other biological interfaces while enabling real-time observation under small-volume conditions. Microfluidic shear-flow systems support investigations of cell adhesion, migration, mechanotransduction, vascular function, and disease processes, and can improve the physiological relevance of in vitro experiments.

Microfluidic Shear Flow - Related Videos

Research

JoVE Journal - Biology
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Platelet Adhesion and Aggregation Under Flow using Microfluidic Flow Cells

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Cited by 29 •

2009

The platelet adhesion cascade takes place in the presence of shear flow, a factor not accounted for in conventional (static) well-plate assays. This article reports on a platelet-aggregation assay utilizing a microfluidic well-plate format to emulate physiological shear flow conditions.

Research

JoVE Journal - Biology

The Assembly and Application of 'Shear Rings': A Novel Endothelial Model for Orbital, Unidirectional and Periodic Fluid Flow and Shear Stress

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Cited by 10 •

2016

Different levels and patterns of fluid shear are known to modulate endothelial gene expression, phenotype and susceptibility to disease. We discuss the assembly and use of 'shear rings': a model that produces unidirectional, periodic shear stress patterns. Shear rings are simple to assemble, economical and can produce high cell yields.

Designing Microfluidic Devices for Studying Cellular Responses Under Single or Coexisting Chemical/Electrical/Shear Stress Stimuli

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Cited by 4 •

2016

Micro-fabricated devices integrated with fluidic components provide an in vitro platform for cell studies mimicking the in vivo micro-environment. We developed polymethylmethacrylate-based microfluidic chips for studying cellular responses under single or coexisting chemical/electrical/shear stress stimuli.

Parallel-plate Flow Chamber and Continuous Flow Circuit to Evaluate Endothelial Progenitor Cells under Laminar Flow Shear Stress

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Cited by 51 •

2012

We are describing a method to subject adherent cells to laminar flow shear stress in a sterile continuous flow circuit. The cells' adhesion, morphology can be studied through the transparent chamber, samples obtained from the circuit for metabolite analysis and cells harvested after shear exposure for future experiments or culture.

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