Several types of nanocrystalline apatites have been described, obtained in various ways. Among these, biomimetic nanocrystalline apatites (BNA), whose characteristics are close to those of biological apatites, have been shown to exhibit specific properties mainly related to their surface structure and composition. The aim of this paper is to review current knowledge of these compounds
Calcium phosphate apatites are inorganic compounds encountered in many different mineralized tissues...
Carbonated Biomimetic Nanocrystalline Apatite (BNAc) coatings are obtained for the first time by Col...
The incorporation of foreign ions, such as Mg2+, exhibiting a biological activity for bone regenerat...
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...
Non-stoichiometric nanocrystalline apatite powders are used to elaborate highly-bioactive biomateria...
Biomimetic calcium phosphate apatites are particularly adapted to bio-medical applications due to th...
Nanocrystalline apatites are major constituents of hard tissues, and attempts are made worldwide to ...
Bone is a natural nanocomposite. Its mineral component is nanocrystalline calcium phosphate apatite,...
Nanocrystalline nonstoichiometric apatites constitute the mineral part of bones, and synthe...
Calcium phosphate apatites offer outstanding biological adaptability that can be attributed to their...
Apatites can accommodate a large number of vacancies and afford multiple ionic substitutions determi...
The surface structure and hydrophilicity of synthetic nanocrystalline apatite with strongly bound ci...
Apatites are one of the most intensively studied materials for possible biomedical applications. New...
Calcium phosphate apatites are inorganic compounds encountered in many different mineralized tissues...
Carbonated Biomimetic Nanocrystalline Apatite (BNAc) coatings are obtained for the first time by Col...
The incorporation of foreign ions, such as Mg2+, exhibiting a biological activity for bone regenerat...
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...
Non-stoichiometric nanocrystalline apatite powders are used to elaborate highly-bioactive biomateria...
Biomimetic calcium phosphate apatites are particularly adapted to bio-medical applications due to th...
Nanocrystalline apatites are major constituents of hard tissues, and attempts are made worldwide to ...
Bone is a natural nanocomposite. Its mineral component is nanocrystalline calcium phosphate apatite,...
Nanocrystalline nonstoichiometric apatites constitute the mineral part of bones, and synthe...
Calcium phosphate apatites offer outstanding biological adaptability that can be attributed to their...
Apatites can accommodate a large number of vacancies and afford multiple ionic substitutions determi...
The surface structure and hydrophilicity of synthetic nanocrystalline apatite with strongly bound ci...
Apatites are one of the most intensively studied materials for possible biomedical applications. New...
Calcium phosphate apatites are inorganic compounds encountered in many different mineralized tissues...
Carbonated Biomimetic Nanocrystalline Apatite (BNAc) coatings are obtained for the first time by Col...
The incorporation of foreign ions, such as Mg2+, exhibiting a biological activity for bone regenerat...