Results 51 to 60 of about 6,314,402 (187)
The clinical demand for cartilage tissue engineering is potentially large for reconstruction defects resulting from congenital deformities or degenerative disease due to limited donor sites for autologous tissue and donor site morbidities.
Jung-Ju Huang, Shu-Rui Yang, I-Ming Chu, Eric M Brey, Hui-Yi Hsiao and Ming-Huei Cheng
doaj +1 more source
The future of treatment for chondral and osteochondral lesions
The population of patients with symptomatic focal or generalized cartilage lesions is growing due to prolongation of life expectancy and to increasing frequency of sports injuries.
Meriç ÇIRPAR, Feza KORKUSUZ
doaj
Cartilage tissue engineering using pre-aggregated human articular chondrocytes [PDF]
In this study, we first aimed at determining whether human articular chondrocytes (HAC) proliferate in aggregates in the presence of strong chondrocyte mitogens.
Farhadi, J. +13 more
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Advances in cartilage tissue regeneration
Cartilage tissue, characterized by its limited regenerative capacity, presents significant challenges in clinical therapy. Recent advancements in cartilage regeneration have focused on integrating stem cell therapies, tissue engineering strategies, and ...
Julia Skoracka +4 more
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Cartilage regeneration is a clinical challenge. In recent years, hydrogels have emerged as implantable scaffolds in cartilage tissue engineering. Similarly, electrical stimulation has been employed to improve matrix synthesis of cartilage cells, and thus
Julius Zimmermann +3 more
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Cartilage injury is the main cause of disability in the United States, and it has been projected that cartilage injury caused by osteoarthritis will affect 30% of the entire United States population by the year 2030. In this study, we modified hyaluronic
Alvin Kai-Xing Lee +5 more
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Tissue engineering: chondrocytes and cartilage.
Tissue engineering offers new strategies for developing treatments for the repair and regeneration of damaged and diseased tissues. These treatments, using living cells, will exploit new developments in understanding the principles in cell biology that control and direct cell function.
Hardingham, T, Tew, S, Murdoch, A
openaire +3 more sources
A stem cell-based tissue-engineering approach is a promising strategy for treatment of cartilage defects. However, there are conflicting data in the feasibility of using this approach in young recipients.
Zhihua Lu +9 more
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Mechanically adjustable and degradable scaffolds for the treatment of articular cartilage defects
Articular cartilage (AC) has long been known as the tissue that “once destroyed, is not repaired”. Damage to the AC may impair joint function, leading to osteoarthritis, joint destruction, and ultimately, joint replacement.
Ching, Kuan Yong
core +1 more source
Tissue engineering of articular cartilage with biomimetic zones
Articular cartilage damage is a persistent and increasing problem with the aging population, and treatments to achieve biological repair or restoration remain a challenge.
Malda, Jos +3 more
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