Pdms Membrane Stretching

PDMS membrane stretching is a technique that mechanically deforms a thin polydimethylsiloxane membrane to model how cells and tissues respond to strain. In a typical device, cells or neural tissue are cultured on the elastic membrane, which is stretched by pneumatic pressure, vacuum, or an external actuator to produce controlled uniaxial or biaxial deformation. In neuroscience, this approach helps investigate mechanotransduction, axonal growth, neuronal injury, and cellular responses to brain-like mechanical forces. By adjusting strain magnitude, rate, and duration, researchers can reproduce distinct physical conditions and measure changes in morphology, signaling, survival, and network function.

Pdms Membrane Stretching - Related Videos

Research

JoVE Journal - Bioengineering

Stretching Micropatterned Cells on a PDMS Membrane

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Cited by 6 •

2014

This manuscript presents a technique to apply or release forces on adherent cells or tissues using unidirectional stretching.

Co-Culture of Schwann Cells with DRG Neurons on a Pre-Stretched Membrane

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2025

The video demonstrates the co-culturing of dorsal root ganglion (DRG) neurons with Schwann cells. DRG neurons are first grown on a pre-stretched membrane for aligned axon growth. Schwann cells are then introduced, which attach to the axons, insulating them and promoting neural cell survival and function.

Live Cell Imaging during Mechanical Stretch

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Cited by 12 •

2015

A novel imaging protocol was developed using a custom motor-driven mechanical actuator to allow the measurement of real time responses to mechanical strain in live cells. Relevant to mechanobiology, the system can apply strains up to 20% while allowing near real-time imaging with confocal or atomic force microscopy.

A Novel Stretching Platform for Applications in Cell and Tissue Mechanobiology

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Cited by 6 •

2014

We present in this article a novel stretching platform that can be used to investigate single cell responses to complex anisotropic biaxial mechanical deformation and quantify the mechanical properties of biological tissues.

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