Cartilage Tissue Engineering

Cartilage tissue engineering is a regenerative approach that creates or repairs cartilage by combining living cells, biomaterials, and biochemical or physical cues. In a typical strategy, chondrocytes or stem-cell-derived cells are seeded within a three-dimensional scaffold, where the scaffold provides structural support and the local environment guides cell adhesion, proliferation, and production of an extracellular matrix rich in cartilage components. In biology and translational research, these constructs help investigate cartilage development, degeneration, and repair while addressing the limited intrinsic healing capacity of mature cartilage. The field supports potential treatments for joint injuries and osteoarthritis and advances the design of functional, patient-specific tissue replacements.

Cartilage Tissue Engineering - Related Videos

Education

JoVE Science Education - Engineering

Overview of Tissue Engineering

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2023

Tissue engineering aims to create artificial tissue from biomaterials, specific cells, and growth factors. These engineered tissue constructs have far-reaching benefits, with possibilities for organ replacement and tissue repair. This video introduces the field of tissue engineering and examines the components of engineered tissue. This video also outlines some prominent methods used to create the tissue scaffold, introduce a cell population, and encourage growth and proliferation. Finally,...

Research

JoVE Journal - Biology

Experimental Approaches to Tissue Engineering

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Cited by 2 •

2007

Tissue Engineering by Intrinsic Vascularization in an In Vivo Tissue Engineering Chamber

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Cited by 17 •

2016

This is a guideline for constructing in vivo vascularized tissue using a microsurgical arteriovenous loop or a flow-through pedicle configuration inside a tissue engineering chamber. The vascularized tissues generated can be employed for organ regeneration and replacement of tissue defects, as well as for drug testing and disease modeling.

Human Cartilage Tissue Fabrication Using Three-dimensional Inkjet Printing Technology

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Cited by 85 •

2014

The methods described in this paper show how to convert a commercial inkjet printer into a bioprinter with simultaneous UV polymerization. The printer is capable of constructing 3D tissue structure with cells and biomaterials. The study demonstrated here constructed a 3D neocartilage.

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.

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