Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citrate and the combined role of the two bone organic matrix components in controlling mineral formation was investigated for the first time. Mineralized and non-mineralized collagen fibrils have been in depth characterized by combining small- and wide-angle X-ray scattering (SAXS/WAXS) techniques with Atomic Force Microscopy (AFM) imaging. A synergic effect of collagen and citrate in driving the formation of long-term stable amorphous calcium phosphate (ACP) nanoparticles with platy morphology was found. AFM images on mineralized collagen fibrils revealed that some of the ACP nanoparticles were deposited on the intramolecular nanoscopic holes of...
Over the last several years, significant progress has been made toward understanding the mechanisms ...
Bone is a composite material in which collagen fibrils form a scaffold for a highly organized arrang...
The process of collagen mineralization represents a current challenge in tissue engineering and is ...
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citr...
The mineralized extracellular matrix of bone is an organic?inorganic nanocomposite consisting primar...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Bone is a hierarchically structured composite material whose basic building block is the mineralized...
We revealed that nucleation sites within collagen fibrils determined pathways for calcium phosphate ...
AbstractOver the last several years, significant progress has been made toward understanding the mec...
Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites is a fa...
This work explores the mechanisms underlying the crystallization of citrate-functionalized amorphous...
Over the last several years, significant progress has been made toward understanding the mechanisms ...
Bone is a composite material in which collagen fibrils form a scaffold for a highly organized arrang...
The process of collagen mineralization represents a current challenge in tissue engineering and is ...
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citr...
The mineralized extracellular matrix of bone is an organic?inorganic nanocomposite consisting primar...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Bone is a hierarchically structured composite material whose basic building block is the mineralized...
We revealed that nucleation sites within collagen fibrils determined pathways for calcium phosphate ...
AbstractOver the last several years, significant progress has been made toward understanding the mec...
Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites is a fa...
This work explores the mechanisms underlying the crystallization of citrate-functionalized amorphous...
Over the last several years, significant progress has been made toward understanding the mechanisms ...
Bone is a composite material in which collagen fibrils form a scaffold for a highly organized arrang...
The process of collagen mineralization represents a current challenge in tissue engineering and is ...