Mechanical Loading Bioreactor

A mechanical loading bioreactor is a device that applies controlled physical forces to cells, tissues, or biomaterials to reproduce aspects of their physiological environment in the laboratory. Through programmed compression, tension, shear, or fluid movement, it delivers defined mechanical stimuli that cells detect through mechanosensitive structures and convert into biochemical signals, altering gene expression, matrix production, and tissue organization. In bioengineering, these systems support the development and maturation of engineered cartilage, bone, tendon, and other load-bearing tissues. They also help researchers study mechanotransduction, optimize culture conditions, and evaluate how engineered constructs may perform under functional mechanical demands.

Mechanical Loading Bioreactor - Related Videos

Research

JoVE Journal - Bioengineering

Design of a Biaxial Mechanical Loading Bioreactor for Tissue Engineering

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Cited by 24 •

2013

We designed a novel mechanical loading bioreactor that can apply uniaxial or biaxial mechanical strain to a cartilage biocomposite prior to transplantation into an articular cartilage defect.

Ex vivo Mechanical Loading of Tendon

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2007

A new in vitro system for simultaneously loading four tendons in culture is described.

Education

JoVE Science Education - Engineering

Batch and Continuous Bioreactors

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2023

Bioreactors are used to grow organisms in large volumes, thereby enabling the production of mass quantities of the target product. These reactors can be batch reactors, which contain all of the components needed for cell growth, or continuous reactors, which have inlet and outlet ports allowing for the addition of fresh growth media and the removal of cell waste. This video presents batch and continuous reactors and demonstrates the use of bioreactors to grow bacteria in the laboratory.

Research

JoVE Journal - Bioengineering
Free Sample

Operation of a Benchtop Bioreactor

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Cited by 9 •

2013

Fermentors are used to increase culture yield and productivity of bioengineered cells. After screening multiple microbial or animal cell culture candidates in shake flasks, the next logical step is to increase the selected culture’s biomass with the fermentor. This video demonstrates the setup and operation of a typical benchtop bioreactor system.

Engineering Biological-Based Vascular Grafts Using a Pulsatile Bioreactor

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Cited by 32 •

2011

Our group has developed a bioreactor culture system that mimics the physiological pulsatile stresses of the cardiovascular system to regenerate implantable small-diameter vascular grafts.

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