3D porous scaffolds based on agarose and nanocrystalline apatite, two structural components that act as a temporary mineralized extracellular matrix, were prepared by the GELPOR3D method. This shaping technology allows the introduction of thermally-labile molecules within the scaffolds during the fabrication procedure. An angiogenic protein, Vascular Endothelial Growth Factor, and an antibiotic, cephalexin, loaded in mesoporous silica nanoparticles, were included to design multifunctional scaffolds for bone reconstruction. The dual release of both molecules showed a marked increase in the number of blood vessels on embryonic day 14 in chicken embryos grown ex ovo, while, at the same time providing an antibiotic local concentration capable o...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Mechanical EngineeringChro...
Tissue engineering (TE)-based bone grafts are favorable alternatives to autografts and allografts. B...
Despite the demonstration of various engineered tissues, clinically useful bone tissue regeneration ...
In this article, the synthesis of biocompatible fibrous scaffolds with antimicrobial properties base...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
The osteogenic capability of mesoporous bioactive nanoparticles (MBNPs) in the SiO2–CaO system has b...
3D printing enables a better control over the microstructure of bone restoring constructs, addresses...
Bone infection is a devastating condition resulting from implant or orthopaedic surgery. Therapeutic...
Macroporous scaffolds made of a SiO2-CaO-P2O5 mesoporous bioactive glass (MBG) and ɛpolycaprolactone...
A novel biomaterial comprising alginate dialdehyde-gelatine (ADA-GEL) hydrogel augmented by lysozyme...
The development of new biomaterials for bone tissue regeneration with high bioactivity abilities and...
The risk of infection in bones after surgical procedures can be reduced by using antibacterial scaff...
peer-reviewedBone defects arising from injury and/or disease are a common and debilitating clinical ...
Increase of bone diseases incidence has boosted the study of ceramic biomaterials as a potential ost...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Mechanical EngineeringChro...
Tissue engineering (TE)-based bone grafts are favorable alternatives to autografts and allografts. B...
Despite the demonstration of various engineered tissues, clinically useful bone tissue regeneration ...
In this article, the synthesis of biocompatible fibrous scaffolds with antimicrobial properties base...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
The osteogenic capability of mesoporous bioactive nanoparticles (MBNPs) in the SiO2–CaO system has b...
3D printing enables a better control over the microstructure of bone restoring constructs, addresses...
Bone infection is a devastating condition resulting from implant or orthopaedic surgery. Therapeutic...
Macroporous scaffolds made of a SiO2-CaO-P2O5 mesoporous bioactive glass (MBG) and ɛpolycaprolactone...
A novel biomaterial comprising alginate dialdehyde-gelatine (ADA-GEL) hydrogel augmented by lysozyme...
The development of new biomaterials for bone tissue regeneration with high bioactivity abilities and...
The risk of infection in bones after surgical procedures can be reduced by using antibacterial scaff...
peer-reviewedBone defects arising from injury and/or disease are a common and debilitating clinical ...
Increase of bone diseases incidence has boosted the study of ceramic biomaterials as a potential ost...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Mechanical EngineeringChro...
Tissue engineering (TE)-based bone grafts are favorable alternatives to autografts and allografts. B...
Despite the demonstration of various engineered tissues, clinically useful bone tissue regeneration ...