Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Functional biomaterials for cartilage regeneration

View through CrossRef
AbstractThe injury and degeneration of articular cartilage and associated arthritis are leading causes of disability worldwide. Cartilage tissue engineering as a treatment modality for cartilage defects has been investigated for over 20 years. Various scaffold materials have been developed for this purpose, but has yet to achieve feasibility and effectiveness for widespread clinical use. Currently, the regeneration of articular cartilage remains a formidable challenge, due to the complex physiology of cartilage tissue and its poor healing capacity. Although intensive research has been focused on the developmental biology and regeneration of cartilage tissue and a diverse plethora of biomaterials have been developed for this purpose, cartilage regeneration is still suboptimal, such as lacking a layered structure, mechanical mismatch with native cartilage and inadequate integration between native tissue and implanted scaffold. The ideal scaffold material should have versatile properties that actively contribute to cartilage regeneration. Functional scaffold materials may overcome the various challenges faced in cartilage tissue engineering by providing essential biological, mechanical, and physical/chemical signaling cues through innovative design. This review thus focuses on the complex structure of native articular cartilage, the critical properties of scaffolds required for cartilage regeneration, present strategies for scaffold design, and future directions for cartilage regeneration with functional scaffold materials. © 2012 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 100A: 2526–2536, 2012.
Title: Functional biomaterials for cartilage regeneration
Description:
AbstractThe injury and degeneration of articular cartilage and associated arthritis are leading causes of disability worldwide.
Cartilage tissue engineering as a treatment modality for cartilage defects has been investigated for over 20 years.
Various scaffold materials have been developed for this purpose, but has yet to achieve feasibility and effectiveness for widespread clinical use.
Currently, the regeneration of articular cartilage remains a formidable challenge, due to the complex physiology of cartilage tissue and its poor healing capacity.
Although intensive research has been focused on the developmental biology and regeneration of cartilage tissue and a diverse plethora of biomaterials have been developed for this purpose, cartilage regeneration is still suboptimal, such as lacking a layered structure, mechanical mismatch with native cartilage and inadequate integration between native tissue and implanted scaffold.
The ideal scaffold material should have versatile properties that actively contribute to cartilage regeneration.
Functional scaffold materials may overcome the various challenges faced in cartilage tissue engineering by providing essential biological, mechanical, and physical/chemical signaling cues through innovative design.
This review thus focuses on the complex structure of native articular cartilage, the critical properties of scaffolds required for cartilage regeneration, present strategies for scaffold design, and future directions for cartilage regeneration with functional scaffold materials.
© 2012 Wiley Periodicals, Inc.
J Biomed Mater Res Part A: 100A: 2526–2536, 2012.

Related Results

The mechanism of cartilage regeneration by buffy coat and the pre-clinical study
The mechanism of cartilage regeneration by buffy coat and the pre-clinical study
Abstract Background Autologous bone marrow buffy coat transplantation possesses obvious advantages in the therapy of cartilage defects. However, there is no definite r...
Evaluation of knee articular cartilage through calcium-suppressed technique in dual-energy computed tomography
Evaluation of knee articular cartilage through calcium-suppressed technique in dual-energy computed tomography
Objectives: The evaluation of knee articular cartilage is of paramount importance in diagnosing and managing musculoskeletal disorders. Accurate and non-invasive imaging techniques...
Mitigating Oxidative Stress Enhances Cartilage Regeneration by Ameliorating Apoptosis of Cartilage Progenitor Cells in Adult Mice
Mitigating Oxidative Stress Enhances Cartilage Regeneration by Ameliorating Apoptosis of Cartilage Progenitor Cells in Adult Mice
AbstractCartilage regeneration in juvenile mice was better than in adult mice. This study evaluated the roles of cytokines and reactive oxygen species (ROS) after cartilage injury ...
Intraoperative Acoustic Evaluation of Living Human Knee Cartilage-Comparison with Respect to Cartilage Degeneration and Aging
Intraoperative Acoustic Evaluation of Living Human Knee Cartilage-Comparison with Respect to Cartilage Degeneration and Aging
Objective The objective of the study was to evaluate the mechanical properties of living human knee cartilage using our ultrasonic device, and to compare the measurements with resp...
Arthrosonography and biomarkers in the evaluation of destructive knee cartilage osteoarthrosis
Arthrosonography and biomarkers in the evaluation of destructive knee cartilage osteoarthrosis
Introduction. Knee osteoarthrosis (OA) is a degenerative disease with progressive loss of cartilage of joints and bone destruction. During this process, the release of fragments of...
The regulatory roles of decorin in the maintenance and remodeling of articular cartilage matrix during aging
The regulatory roles of decorin in the maintenance and remodeling of articular cartilage matrix during aging
Osteoarthritis (OA) is the most prevalent musculoskeletal disease worldwide, with aging recognized as its leading risk factor. Age-related degeneration of articular cartilage invol...
Evolution of Cartilage Repair Technology
Evolution of Cartilage Repair Technology
Articular cartilage plays an important role in daily joint activities. With the aging of the social population, the degenerative cartilage injury and the sports injury caused by in...
Preface
Preface
It is both an honor and a privilege to introduce this inaugural issue of Biomaterials Connect. Biomaterials Connect is a newly established journal that in...

Back to Top