The present study evaluates the synthesis of biocompatible osteoconductive and osteoinductive nano calcium phosphate (CaP) particles by industrially applied, aerosol-derived flame spray pyrolysis method for biomedical field. Calcium phosphate nanoparticles were produced in a range of calcium-to-phosphorus ratio, (1.20–2.19) in order to analyze the morphology and crystallinity changes, and to test the bioactivity of particles. The characterization results confirmed that nanometer-sized, spherical calcium phosphate particles were produced. The average primary particle size was determined as 23 nm by counting more than 500 particles in TEM pictures. XRD patterns, HRTEM, SAED, and SEM analyses revealed the amorphous nature of the as-prepared na...
Amorphous calcium phosphate (ACP) has shown significant effects on the biomineralization and promisi...
Intracellular calcium (Ca2+) is a key signaling element that is involved in a great variety of funda...
In this paper, preparation, bioactivity, and osteoblast cell behavior of cortical bone derived nano-...
The present study evaluates the synthesis of biocompatible osteoconductive and osteoinductive nano c...
In the present study, we demonstrated that calcium phosphate (Cap) nanoparticles formed in cell cult...
Calcium phosphate biocements are biomaterials that present similar crystallographic structure to the...
Calcium phosphate (CaP) based material, especially hydroxyapatite (HAp) nanoparticles have a wide ra...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
Bone injuries and diseases constitute a burden both socially and economically, as the consequences ...
The formation of -tricalcium phosphate (-TCP) nanoparticles via a wet precipitation technique was st...
This study investigated the effects of the morphology and physicochemical properties of calcium phos...
[[abstract]]Micron-scale structure biphasic calcium phosphate (BCP) materials have demonstrated prom...
Amorphous calcium phosphate (aCaP) nanoparticles may trigger the osteogenic commitment of adipose-de...
One of the main goals of materials science in the 21st century is the development of materials with ...
Amorphous calcium phosphate (ACP) has shown significant effects on the biomineralization and promisi...
Intracellular calcium (Ca2+) is a key signaling element that is involved in a great variety of funda...
In this paper, preparation, bioactivity, and osteoblast cell behavior of cortical bone derived nano-...
The present study evaluates the synthesis of biocompatible osteoconductive and osteoinductive nano c...
In the present study, we demonstrated that calcium phosphate (Cap) nanoparticles formed in cell cult...
Calcium phosphate biocements are biomaterials that present similar crystallographic structure to the...
Calcium phosphate (CaP) based material, especially hydroxyapatite (HAp) nanoparticles have a wide ra...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
Bone injuries and diseases constitute a burden both socially and economically, as the consequences ...
The formation of -tricalcium phosphate (-TCP) nanoparticles via a wet precipitation technique was st...
This study investigated the effects of the morphology and physicochemical properties of calcium phos...
[[abstract]]Micron-scale structure biphasic calcium phosphate (BCP) materials have demonstrated prom...
Amorphous calcium phosphate (aCaP) nanoparticles may trigger the osteogenic commitment of adipose-de...
One of the main goals of materials science in the 21st century is the development of materials with ...
Amorphous calcium phosphate (ACP) has shown significant effects on the biomineralization and promisi...
Intracellular calcium (Ca2+) is a key signaling element that is involved in a great variety of funda...
In this paper, preparation, bioactivity, and osteoblast cell behavior of cortical bone derived nano-...