phosphate cement combined with alginate for bone regeneration Jung-Hui Park1,2, Eun-Jung Lee1,2, Jonathan C Knowles1,3 and Hae-Won Kim1,2,4 Novel microcarriers consisting of calcium phosphate cement and alginate were prepared for use as three-dimensional scaffolds for the culture and expansion of cells that are effective for bone tissue engineering. The calcium phosphate cement-alginate composite microcarriers were produced by an emulsification of the composite aqueous solutions mixed at varying ratios (calcium phosphate cement powder/alginate solution 0.8–1.2) in an oil bath and the subsequent in situ hardening of the compositions during spherodization. Moreover, a porous structure could be easily created in the solid microcarriers by soa...
Bone tissue engineering requires a well-designed scaffold that can be biodegradable, biocompatible, ...
Contains fulltext : 47743.pdf (publisher's version ) (Closed access)Injectable cal...
Current problems associated with bone allografts include risk of disease transmission, limited avail...
Contains fulltext : 169713.pdf (publisher's version ) (Closed access)Calcium phosp...
Item does not contain fulltextThis study investigated the effects of incorporating glucose micropart...
evaluation of the microstructure, material properties and biocompatibility for bone tissue regenerat...
Biodegradable composites based on nanocrystalline calcium phosphate and bioresorbable polymers N. Ig...
Abstract: Hydroxyapatite (HA) or calcium carbonate (CaCO3) formed on an organic polymer of agarose g...
The search for an ideal bone tissue replacement has led to the development of new composite material...
Abstract: Our studies of amorphous calcium phosphate (ACP)-based dental materials are focused on the...
Item does not contain fulltextThe present study aimed to provide information on material degradation...
To deliver cells deep into injectable calcium phosphate cement (CPC) through alginate-chitosan (AC) ...
Objective This research investigated the mechanical properties and bioactivity of polymethylmetha-cr...
Tissue engineering is promising to meet the increasing need for bone regeneration. Nanostructured ca...
Osteoblasts or stem cells have been delivered into injectable calcium phosphate cement (CPC) to impr...
Bone tissue engineering requires a well-designed scaffold that can be biodegradable, biocompatible, ...
Contains fulltext : 47743.pdf (publisher's version ) (Closed access)Injectable cal...
Current problems associated with bone allografts include risk of disease transmission, limited avail...
Contains fulltext : 169713.pdf (publisher's version ) (Closed access)Calcium phosp...
Item does not contain fulltextThis study investigated the effects of incorporating glucose micropart...
evaluation of the microstructure, material properties and biocompatibility for bone tissue regenerat...
Biodegradable composites based on nanocrystalline calcium phosphate and bioresorbable polymers N. Ig...
Abstract: Hydroxyapatite (HA) or calcium carbonate (CaCO3) formed on an organic polymer of agarose g...
The search for an ideal bone tissue replacement has led to the development of new composite material...
Abstract: Our studies of amorphous calcium phosphate (ACP)-based dental materials are focused on the...
Item does not contain fulltextThe present study aimed to provide information on material degradation...
To deliver cells deep into injectable calcium phosphate cement (CPC) through alginate-chitosan (AC) ...
Objective This research investigated the mechanical properties and bioactivity of polymethylmetha-cr...
Tissue engineering is promising to meet the increasing need for bone regeneration. Nanostructured ca...
Osteoblasts or stem cells have been delivered into injectable calcium phosphate cement (CPC) to impr...
Bone tissue engineering requires a well-designed scaffold that can be biodegradable, biocompatible, ...
Contains fulltext : 47743.pdf (publisher's version ) (Closed access)Injectable cal...
Current problems associated with bone allografts include risk of disease transmission, limited avail...