Abstract Mineralized fibrils are important building blocks in bone tissue, formed by the hierarchical assembly of collagen molecules and crystalline hydroxyapatite (HAp). The mineralization pathway of HAp is reported as a nonclassical‐crystallization, but the nanoconfined crystallization in collagen fibrils remains poorly understood. The mechanism of intrafibrillar mineralization of collagen‐PDA fibrils in modified‐simulated body fluid (m‐SBF) solution is studied. Collagen‐amorphous calcium phosphate (ACP) fibrils are obtained by assembling collagen‐PDA fibrils with polyaspartic acid (pAsp) as a stabilizer. The ACP undergoes a phase transformation to HAp within the fibrils upon adjusting the phosphate concentration. It is found that the pha...
The complex morphologies of mineralised collagen fibrils are regulated through interactions between ...
Biomimetic mineralization of collagen fibrils is an essential process because the mineralized collag...
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citr...
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 ...
Biomineralization of bone, a controlled process where hydroxyapatite nanocrystals preferentially dep...
Contemporary models of intrafibrillar mineralization mechanisms are established using collagen fibri...
Many questions remain regarding the formation of ultrathin hydroxapatite (HAP) crystals within the c...
Inspired by nature, poly(acrylic acid) (PAA) and other polyelectrolytes have been used as noncollage...
AbstractOver the last several years, significant progress has been made toward understanding the mec...
Contemporary models of intrafibrillar mineralization mechanisms are established using collagen fibri...
Over the last several years, significant progress has been made toward understanding the mechanisms ...
The complex morphologies of mineralised collagen fibrils are regulated through interactions between ...
Biomimetic mineralization of collagen fibrils is an essential process because the mineralized collag...
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citr...
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 ...
Biomineralization of bone, a controlled process where hydroxyapatite nanocrystals preferentially dep...
Contemporary models of intrafibrillar mineralization mechanisms are established using collagen fibri...
Many questions remain regarding the formation of ultrathin hydroxapatite (HAP) crystals within the c...
Inspired by nature, poly(acrylic acid) (PAA) and other polyelectrolytes have been used as noncollage...
AbstractOver the last several years, significant progress has been made toward understanding the mec...
Contemporary models of intrafibrillar mineralization mechanisms are established using collagen fibri...
Over the last several years, significant progress has been made toward understanding the mechanisms ...
The complex morphologies of mineralised collagen fibrils are regulated through interactions between ...
Biomimetic mineralization of collagen fibrils is an essential process because the mineralized collag...
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citr...