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Harnessing cell–biomaterial interactions for osteochondral tissue regeneration.

Kyobum Kim | Diana M Yoon | Antonios Mikos | F Kurtis Kasper
Advances in biochemical engineering/biotechnology | 2012

Articular cartilage that is damaged or diseased often requires surgical intervention to repair the tissue; therefore, tissue engineering strategies have been developed to aid in cartilage regeneration. Tissue engineering approaches often require the integration of cells, biomaterials, and growth factors to direct and support tissue formation. A variety of cell types have been isolated from adipose, bone marrow, muscle, and skin tissue to promote cartilage regeneration. The interaction of cells with each other and with their surrounding environment has been shown to play a key role in cartilage engineering. In tissue engineering approaches, biomaterials are commonly used to provide an initial framework for cell recruitment and proliferation and tissue formation. Modifications of the properties of biomaterials, such as creating sites for cell binding, altering their physicochemical characteristics, and regulating the delivery of growth factors, can have a significant influence on chondrogenesis. Overall, the goal is to completely restore healthy cartilage within an articular cartilage defect. This chapter aims to provide information about the importance of cell–biomaterial interactions for the chondrogenic differentiation of various cell populations that can eventually produce functional cartilage matrix that is indicative of healthy cartilage tissue.

Pubmed ID: 21975954

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Associated grants

  • Agency: NIAMS NIH HHS, United States
    Id: R21 AR056076
  • Agency: NIAMS NIH HHS, United States
    Id: R01-AR057083
  • Agency: NIAMS NIH HHS, United States
    Id: R01-AR048756
  • Agency: NIAMS NIH HHS, United States
    Id: R01 AR048756
  • Agency: NIAMS NIH HHS, United States
    Id: R01 AR057083
  • Agency: NIAMS NIH HHS, United States
    Id: R21-AR056076

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EMBOSS (tool)

RRID:SCR_008493

Software analysis package for molecular biology community. Automatically copes with data in variety of formats and allows transparent retrieval of sequence data from web. Libraries are provided with package. Provides toolkit for creating bioinformatics applications or workflows. Provides set of sequence analysis programs. Provided programs cover areas such as sequence alignment, rapid database searching with sequence patterns, protein motif identification, nucleotide sequence pattern analysis, codon usage analysis for small genomes, rapid identification of sequence patterns in large scale sequence sets, and presentation tools for publication.

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Pipeline Pilot (tool)

RRID:SCR_014917

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