Thesis (Ph.D.)--University of Washington, 2022Understanding how protein scaffolds direct mineral morphogenesis is crucial for engineering bone and tooth and would open new vistas in hybrid materials design. In the case of tooth enamel, which is the hardest tissue in the body and consists of organized bundles of coaligned filamentous apatite crystals, co-aligned amyloid-like amelogenin nanoribbons (Amel NR) are hypothesized to provide the scaffold for amorphous calcium phosphate (ACP) precursor to apatite. From quantitative analysis of ACP nucleation rates on Amel NRs as a function of chemical potential, we see phosphorylated Amel NRs (pAmel NRs) are far more potent calcium phosphate nucleators than other amelogenin motifs or collagen, which...
Thesis (Ph.D.)--University of Washington, 2013The field of biomimicry spans many disciplines, with t...
Mechanisms of protein-guided mineralization in enamel, leading to organized fibrillar apatite nanocr...
Enamel matrix self-assembly has long been suggested as the driving force behind aligned nanofibrous ...
Protein scaffolds direct the organization of amorphous precursors that transform into mineralized ti...
Living organisms build inorganic materials, biominerals, by a process called biomineralization. A ke...
Biomineralization is a crucial process whereby organisms produce mineralized tissues such as teeth f...
Biomineralization is a crucial process whereby organisms produce mineralized tissues such as teeth f...
As the hardest tissue formed by vertebrates, enamel represents nature's engineering masterpiece with...
Enamel is unique. It is the only epithelial-derived mineralized tissue in mammals and has a distinct...
This work demonstrates the fabrication of partially mineralized scaffolds fabricated in 3D shapes u...
Human dental enamel forms over a period of 2 - 4 years by substituting the enamel matrix, a protein ...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Mechanisms of protein-guided mineralization in enamel, leading to organized fibrillar apatite nanocr...
2019-04-25Mature enamel is a highly mineralized biocermaic that is composed of bundles of hydroxyapa...
Human dental enamel forms over a period of 2 - 4 years by substituting the enamel matrix, a protein ...
Thesis (Ph.D.)--University of Washington, 2013The field of biomimicry spans many disciplines, with t...
Mechanisms of protein-guided mineralization in enamel, leading to organized fibrillar apatite nanocr...
Enamel matrix self-assembly has long been suggested as the driving force behind aligned nanofibrous ...
Protein scaffolds direct the organization of amorphous precursors that transform into mineralized ti...
Living organisms build inorganic materials, biominerals, by a process called biomineralization. A ke...
Biomineralization is a crucial process whereby organisms produce mineralized tissues such as teeth f...
Biomineralization is a crucial process whereby organisms produce mineralized tissues such as teeth f...
As the hardest tissue formed by vertebrates, enamel represents nature's engineering masterpiece with...
Enamel is unique. It is the only epithelial-derived mineralized tissue in mammals and has a distinct...
This work demonstrates the fabrication of partially mineralized scaffolds fabricated in 3D shapes u...
Human dental enamel forms over a period of 2 - 4 years by substituting the enamel matrix, a protein ...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Mechanisms of protein-guided mineralization in enamel, leading to organized fibrillar apatite nanocr...
2019-04-25Mature enamel is a highly mineralized biocermaic that is composed of bundles of hydroxyapa...
Human dental enamel forms over a period of 2 - 4 years by substituting the enamel matrix, a protein ...
Thesis (Ph.D.)--University of Washington, 2013The field of biomimicry spans many disciplines, with t...
Mechanisms of protein-guided mineralization in enamel, leading to organized fibrillar apatite nanocr...
Enamel matrix self-assembly has long been suggested as the driving force behind aligned nanofibrous ...