Combination of mesoporous silica materials and bioactive factors is a promising niche-mimetic solution as a hybrid bone substitution for bone tissue engineering. In this work, we have synthesized biocompatible silica-based nanoparticles with abundant mesoporous structure, and incorporated bone-forming peptide (BFP) derived from bone morphogenetic protein-7 (BMP-7) into the mesoporous silica nanoparticles (MSNs) to obtain a slow-release system for osteogenic factor delivery. The chemical characterization demonstrates that the small osteogenic peptide is encapsulated in the mesoporous successfully, and the nitrogen adsorption-desorption isotherms suggest that the peptide encapsulation has no influence on mesoporous structure of MSNs. In the c...
Silicon-derived biomaterials are conducive to regulating the fate of osteo-related stem cells, while...
Realization of clinical potential of human pluripotent stem cells (hPSCs) in bone regenerative medic...
Ceramic (nano)materials are promising materials for bone regeneration applications. The addition of ...
The aim of this work was the preparation of inorganic mesoporous materials from silica, calcium phos...
Jaclyn Lock, Huinan Liu Department of Bioengineering, University of California, Riverside, CA, USA B...
Micro-ribonucleic acid (miRNA)-based therapies show advantages for bone regeneration but need effici...
Osteoporosis is the most common type of bone disease. Conventional treatments are based on the use o...
Bone regeneration is an important issue in many situations, such as bone fracture and surgery. Umbil...
Research in nanomaterials with applications in bone regeneration therapies has experienced a very si...
Biomineralization of the extracellular matrix (ECM) plays a crucial role in bone formation. Function...
A bone implant should integrate to the tissue through a bone-like mineralized interface, which requi...
Bone tissue engineering has emerged as an alternative to overcome the problems associated with the c...
Bioactive glass is known for its potential as a bone scaffold due to its ability to stimulate osteog...
Biomaterials with suitable osteoimmunomodulation properties and ability to deliver osteoinductive bi...
The main limitation of tissue engineering lies in the inability to stimulate osteogenesis, angiogene...
Silicon-derived biomaterials are conducive to regulating the fate of osteo-related stem cells, while...
Realization of clinical potential of human pluripotent stem cells (hPSCs) in bone regenerative medic...
Ceramic (nano)materials are promising materials for bone regeneration applications. The addition of ...
The aim of this work was the preparation of inorganic mesoporous materials from silica, calcium phos...
Jaclyn Lock, Huinan Liu Department of Bioengineering, University of California, Riverside, CA, USA B...
Micro-ribonucleic acid (miRNA)-based therapies show advantages for bone regeneration but need effici...
Osteoporosis is the most common type of bone disease. Conventional treatments are based on the use o...
Bone regeneration is an important issue in many situations, such as bone fracture and surgery. Umbil...
Research in nanomaterials with applications in bone regeneration therapies has experienced a very si...
Biomineralization of the extracellular matrix (ECM) plays a crucial role in bone formation. Function...
A bone implant should integrate to the tissue through a bone-like mineralized interface, which requi...
Bone tissue engineering has emerged as an alternative to overcome the problems associated with the c...
Bioactive glass is known for its potential as a bone scaffold due to its ability to stimulate osteog...
Biomaterials with suitable osteoimmunomodulation properties and ability to deliver osteoinductive bi...
The main limitation of tissue engineering lies in the inability to stimulate osteogenesis, angiogene...
Silicon-derived biomaterials are conducive to regulating the fate of osteo-related stem cells, while...
Realization of clinical potential of human pluripotent stem cells (hPSCs) in bone regenerative medic...
Ceramic (nano)materials are promising materials for bone regeneration applications. The addition of ...