Mechanobiology Research

Mechanobiology research is the study of how physical forces and mechanical properties influence living cells, tissues, and organisms, a field that links biology with engineering. Researchers examine how cells detect forces such as stretch, compression, fluid shear, and matrix stiffness through mechanosensors, cell adhesions, the cytoskeleton, and force-sensitive signaling pathways, which can alter cell shape, gene expression, and behavior. In bioengineering, these principles guide the design of biomaterials, tissue-engineered constructs, organ-on-chip models, and bioreactors that reproduce relevant mechanical environments. Mechanobiology research supports improved models of development and disease while informing regenerative medicine and therapeutic design.

Mechanobiology Research - Related Videos

Research

JoVE Journal - Bioengineering

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.

Preparation of Rat Tail Tendons for Biomechanical and Mechanobiological Studies

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Cited by 21 •

2010

This article describes the experimental procedures used to prepare rat tail tendons for biomechanical and mechanobiological studies. Several features of the main steps in preparation are demonstrated, beginning with extraction, cross-sectional area measurement, rinsing and loading into the bioreactor chamber.

Segmenting Growth of Endothelial Cells in 6-Well Plates on an Orbital Shaker for Mechanobiological Studies

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Cited by 6 •

2021

This protocol describes a coating method to restrict endothelial cell growth to a specific region of a 6-well plate for shear stress application using the orbital shaker model.

Murine Hind Limb Explant Model for Studying the Mechanobiology of Achilles Tendon Impingement

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2023

We present a custom experimental platform and tissue culture protocol that recreates fibrocartilaginous change driven by impingement of the Achilles tendon insertion in murine hind limb explants with sustained cell viability, providing a model suitable for exploring the mechanobiology of tendon impingement.

Research

JoVE Journal - Developmental Biology
Free Sample

In Vitro Model of Fetal Human Vessel On-chip to Study Developmental Mechanobiology

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Cited by 3 •

2023

Described here is a simple workflow to differentiate endothelial cells from human pluripotent stem cells followed by a detailed protocol for their mechanical stimulation. This allows for the study of the developmental mechanobiology of endothelial cells. This approach is compatible with downstream assays of live cells collected from the culture chip after mechanical stimulation.

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