The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is thought to proceed by aggregation of prenucleation clusters recently identified as calcium triphosphate complexes. We have performed ab initio molecular dynamics simulations to elucidate their structures and stabilities in aqueous solution. We find the calcium to be seven-coordinated by two water molecules, two bidentate phosphates, and one monodentate phosphate. Free energy results obtained using umbrella sampling simulations show that the complex with a Ca/P ratio of 1:3 is the most energetically favored and more thermodynamically stable than the free ions
Calcium orthophosphates (CaPs) are the hard constituents of bones and teeth, and thus of ultimate im...
A new force field has been derived for the aqueous calcium phosphate system that aims to reproduce t...
Calcification in bone, cartilage, and cardiovascular tissues involves the release of specialized ext...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
© 2019 American Chemical Society. Classical molecular dynamics simulations and free energy methods h...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
Hydroxyapatite (HA), the main mineral phase of mammalian tooth enamel and bone, originates in body f...
Calcium phosphate is the main mineral phase within our bodies, but despite many studies there is not...
Hydroxyapatite (HA), the main mineral phase of mammalian tooth enamel and bone, originates in body f...
A new force field has been derived for the aqueous calcium phosphate system that aims to reproduce t...
Despite its importance in many industrial, geological and biological processes, the mechanism of cry...
A new force field has been derived for the aqueous calcium phosphate system that aims to reproduce t...
Copyright © 2019 American Chemical Society. Calcium orthophosphates (CaPs) are the hard constituents...
Calcium orthophosphates (CaPs) are the hard constituents of bones and teeth, and thus of ultimate im...
A new force field has been derived for the aqueous calcium phosphate system that aims to reproduce t...
Calcification in bone, cartilage, and cardiovascular tissues involves the release of specialized ext...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
The nucleation of calcium phosphates, the main inorganic component of bone and tooth tissues, is tho...
© 2019 American Chemical Society. Classical molecular dynamics simulations and free energy methods h...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
Classical molecular dynamics simulations and free energy methods have been used to obtain a better u...
Hydroxyapatite (HA), the main mineral phase of mammalian tooth enamel and bone, originates in body f...
Calcium phosphate is the main mineral phase within our bodies, but despite many studies there is not...
Hydroxyapatite (HA), the main mineral phase of mammalian tooth enamel and bone, originates in body f...
A new force field has been derived for the aqueous calcium phosphate system that aims to reproduce t...
Despite its importance in many industrial, geological and biological processes, the mechanism of cry...
A new force field has been derived for the aqueous calcium phosphate system that aims to reproduce t...
Copyright © 2019 American Chemical Society. Calcium orthophosphates (CaPs) are the hard constituents...
Calcium orthophosphates (CaPs) are the hard constituents of bones and teeth, and thus of ultimate im...
A new force field has been derived for the aqueous calcium phosphate system that aims to reproduce t...
Calcification in bone, cartilage, and cardiovascular tissues involves the release of specialized ext...