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- W2338603586 endingPage "2555" @default.
- W2338603586 startingPage "2541" @default.
- W2338603586 abstract "Current advances in biomaterial fabrication techniques have broadened their application in different realms of biomedical engineering, spanning from drug delivery to tissue engineering. The success of biomaterials depends highly on the ability to modulate cell and tissue responses, including cell adhesion, as well as induction of repair and immune processes. Thus, most recent approaches in the field have concentrated on functionalizing biomaterials with different biomolecules intended to evoke cell- and tissue-specific reactions. Marine mussels produce mussel adhesive proteins (MAPs), which help them strongly attach to different surfaces, even under wet conditions in the ocean. Inspired by mussel adhesiveness, scientists discovered that dopamine undergoes self-polymerization at alkaline conditions. This reaction provides a universal coating for metals, polymers, and ceramics, regardless of their chemical and physical properties. Furthermore, this polymerized layer is enriched with catechol groups that enable immobilization of primary amine or thiol-based biomolecules via a simple dipping process. Herein, this review explores the versatile surface modification techniques that have recently been exploited in tissue engineering and summarizes polydopamine polymerization mechanisms, coating process parameters, and effects on substrate properties. A brief discussion of polydopamine-based reactions in the context of engineering various tissue types, including bone, blood vessels, cartilage, nerves, and muscle, is also provided." @default.
- W2338603586 created "2016-06-24" @default.
- W2338603586 creator A5011179489 @default.
- W2338603586 creator A5017387288 @default.
- W2338603586 creator A5046146264 @default.
- W2338603586 creator A5059620644 @default.
- W2338603586 creator A5062317501 @default.
- W2338603586 creator A5072397615 @default.
- W2338603586 creator A5075832464 @default.
- W2338603586 date "2015-08-25" @default.
- W2338603586 modified "2023-10-15" @default.
- W2338603586 title "Materials from Mussel-Inspired Chemistry for Cell and Tissue Engineering Applications" @default.
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