This work explores the mechanisms underlying the crystallization of citrate-functionalized amorphous calcium phosphate (cit-ACP) in two relevant media, combining in situand ex situ characterization techniques. Results demonstrate that citrate desorption from cit-ACP triggers the surface-mediated transformation to nanocrystalline apatite (Ap). Our findings shed light on the key role of citrate, an important component of bone organic matrix, and the medium composition in controlling the rate of transformation and the morphology of the resulting Ap phase
OCP crystals were hydrolyzed in solutions containing Ca2+, Mg2+, HPO42-, CO32-, F-, citrate or P2O7 ...
This research was funded by the Spanish Government (grant nos. RTI2018.099565.B.I00 and CGL2015-6468...
In the field of bone regeneration, some clinical conditions require highly-resorbable, reactive bone...
This work explores the mechanisms underlying the crystallization of citrate-functionalized amorphous...
Mineralisation of calcium phosphates in bone has been proposed to proceed via an initial amorphous p...
Bio-inspired apatite nanoparticles precipitated in the presence of citrate ions at increasing matura...
Amorphous calcium phosphate (ACP) is a material of high interest for dentistry, orthopedics, and oth...
Transformations between amorphous and crystalline apatite mechanistically govern some of the most es...
The mineral fractions of bones and teeth are non-stoichiometric apatite crystals. Their morphology, ...
Citrate binds strongly to the surface of calcium phosphate (apatite) nanocrystals in bone and is tho...
The surface structure and hydrophilicity of synthetic nanocrystalline apatite with strongly bound ci...
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citr...
Nanocrystalline apatites play an important role in biomineralisation and they are used as bioactive ...
Nanocrystalline calcium phosphate apatites constitute the main inorganic part of hard tissues, and a...
Nanocrystalline apatitic calcium phosphates play a crucial role in calcified tissues and biomaterial...
OCP crystals were hydrolyzed in solutions containing Ca2+, Mg2+, HPO42-, CO32-, F-, citrate or P2O7 ...
This research was funded by the Spanish Government (grant nos. RTI2018.099565.B.I00 and CGL2015-6468...
In the field of bone regeneration, some clinical conditions require highly-resorbable, reactive bone...
This work explores the mechanisms underlying the crystallization of citrate-functionalized amorphous...
Mineralisation of calcium phosphates in bone has been proposed to proceed via an initial amorphous p...
Bio-inspired apatite nanoparticles precipitated in the presence of citrate ions at increasing matura...
Amorphous calcium phosphate (ACP) is a material of high interest for dentistry, orthopedics, and oth...
Transformations between amorphous and crystalline apatite mechanistically govern some of the most es...
The mineral fractions of bones and teeth are non-stoichiometric apatite crystals. Their morphology, ...
Citrate binds strongly to the surface of calcium phosphate (apatite) nanocrystals in bone and is tho...
The surface structure and hydrophilicity of synthetic nanocrystalline apatite with strongly bound ci...
Bioinspired in vitro collagen mineralization experiments have been performed in the presence of citr...
Nanocrystalline apatites play an important role in biomineralisation and they are used as bioactive ...
Nanocrystalline calcium phosphate apatites constitute the main inorganic part of hard tissues, and a...
Nanocrystalline apatitic calcium phosphates play a crucial role in calcified tissues and biomaterial...
OCP crystals were hydrolyzed in solutions containing Ca2+, Mg2+, HPO42-, CO32-, F-, citrate or P2O7 ...
This research was funded by the Spanish Government (grant nos. RTI2018.099565.B.I00 and CGL2015-6468...
In the field of bone regeneration, some clinical conditions require highly-resorbable, reactive bone...