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  2. Tissue engineering - Wikipedia

    en.wikipedia.org/wiki/Tissue_engineering

    Micro-mass cultures of C3H-10T1/2 cells at varied oxygen tensions stained with Alcian blue. A commonly applied definition of tissue engineering, as stated by Langer [3] and Vacanti, [4] is "an interdisciplinary field that applies the principles of engineering and life sciences toward the development of biological substitutes that restore, maintain, or improve [Biological tissue] function or a ...

  3. Scaffold protein - Wikipedia

    en.wikipedia.org/wiki/Scaffold_protein

    Scaffolds localize the signaling reaction to a specific area in the cell, a process that could be important for the local production of signaling intermediates. A particular example of this process is the scaffold, A-kinase anchor proteins (AKAPs), which target cyclic AMP-dependent protein kinase to various sites in the cell. [7]

  4. Fibrin scaffold - Wikipedia

    en.wikipedia.org/wiki/Fibrin_scaffold

    Fibrin scaffold is an important element in tissue engineering approaches as a scaffold material. It is advantageous opposed to synthetic polymers and collagen gels when cost, inflammation , immune response , toxicity and cell adhesion are concerned. [ 11 ]

  5. Decellularization - Wikipedia

    en.wikipedia.org/wiki/Decellularization

    A decellularized aortic homograft. Decellularization (also spelled decellularisation in British English) is the process used in biomedical engineering to isolate the extracellular matrix (ECM) of a tissue from its inhabiting cells, leaving an ECM scaffold of the original tissue, which can be used in artificial organ and tissue regeneration.

  6. In vivo bioreactor - Wikipedia

    en.wikipedia.org/wiki/In_vivo_bioreactor

    Tissue engineering is a biomedical engineering discipline that combines biology, chemistry, and engineering to design neotissue (newly formed tissue) on a scaffold. [3] Tissues scaffolds are functionally identical to the extracellular matrix found, acting as a site upon which regenerative cellular components adsorb to encourage cellular growth. [4]

  7. Biomimetic material - Wikipedia

    en.wikipedia.org/wiki/Biomimetic_material

    Biomimetic materials in tissue engineering are materials that have been designed such that they elicit specified cellular responses mediated by interactions with scaffold-tethered peptides from extracellular matrix (ECM) proteins; essentially, the incorporation of cell-binding peptides into biomaterials via chemical or physical modification. [3]

  8. Protein adsorption - Wikipedia

    en.wikipedia.org/wiki/Protein_adsorption

    Tissue engineering is a relatively new field that utilizes a scaffolding as a platform upon which the desired cells proliferate. It is not clear what defines an ideal scaffold for a specific tissue type. The considerations are complex and protein adsorption only adds to the complexity.

  9. Contact guidance - Wikipedia

    en.wikipedia.org/wiki/Contact_guidance

    Cells can orient in response to contact guidance when located inside three-dimensional structures, such as collagen gels, scaffolds, and soft tissues. In those conditions, the geometrical cues provided by collagen or scaffold fibers are able to influence the orientation of cells.