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- W2936465362 endingPage "112" @default.
- W2936465362 startingPage "77" @default.
- W2936465362 abstract "The unique combination of semistructured extracellular matrix, biomechanical properties, and active remodeling, makes dentin and bone unique tissues particularly suited to incorporation into nanomaterials. Silica has long been used for dental applications because of its physical and optical properties as well as compatibility in composites, however, the emergence of nanotechnology has provided new opportunities to package and deliver certain elements at the nanoscale, with the intent of enhancing biological effects or properties. Recent studies have suggested that engineered silica nanomaterials possess beneficial properties that endow them with enhanced physical and mechanical properties for dental applications as well as therapeutic properties for bone. In this chapter, we discuss the specific physicochemical properties of silica-based nanomaterials including synthesis methods, size, shape, surface properties, and biocompatibility in the context of both mechanical properties as well as potential biological applications to living cells relevant to both dentition and the skeleton." @default.
- W2936465362 created "2019-04-25" @default.
- W2936465362 creator A5056247686 @default.
- W2936465362 creator A5070049123 @default.
- W2936465362 creator A5070982963 @default.
- W2936465362 creator A5086186521 @default.
- W2936465362 date "2019-01-01" @default.
- W2936465362 modified "2023-09-25" @default.
- W2936465362 title "Applications of silica-based nanomaterials in dental and skeletal biology" @default.
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