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- W4226180136 endingPage "164" @default.
- W4226180136 startingPage "129" @default.
- W4226180136 abstract "Bone tissue engineering (BTE) approaches are focused on repairing fractured or damaged bones. Exciting technologies have been developed to repair and regenerate damaged tissues and organs by the implantation of biopolymers’ composite scaffolds. The hierarchical nature of bone is an inspiration for nanostructured biomaterials, and nanostructured composite scaffolds are gaining special consideration for BTE. These scaffolds are fabricated from biopolymers and bioactive nanofillers and have biodegradability, good mechanical properties, and ease of formation characteristics necessary for osteogenesis. Biopolymers resemble extracellular matrix (ECM) with different levels of biodegradability and better biological qualities, and fillers like hydroxyapatite play a vital role in enhancing biocompatibility, restoration, and osteoconduction. Biopolymers in microspheres, nanofibers, tough foams, and hydrogels can be used to create a wide range of scaffolds. This review will discuss biopolymer-based nanocomposite materials for their design and properties. A detailed review and discussion of the current status and surface engineering of biopolymers and their applications in BTE and their feasibility of production and future applications have also been presented." @default.
- W4226180136 created "2022-05-05" @default.
- W4226180136 creator A5003589831 @default.
- W4226180136 creator A5015127259 @default.
- W4226180136 creator A5017813870 @default.
- W4226180136 creator A5020381396 @default.
- W4226180136 creator A5035006048 @default.
- W4226180136 creator A5040989680 @default.
- W4226180136 creator A5063117159 @default.
- W4226180136 date "2022-01-01" @default.
- W4226180136 modified "2023-09-23" @default.
- W4226180136 title "Medical applications of polymer/functionalized nanoparticle composite systems, renewable polymers, and polymer–metal oxide composites" @default.
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