It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis capacity, osteostimulation, and antibacterial properties for regenerating lost bone tissues. In order to achieve this aim, we prepared copper (Cu)-containing mesoporous bioactive glass (Cu-MBG) scaffolds with interconnective large pores (several hundred micrometer) and well-ordered mesopore channels (around 5 nm). Both Cu-MBG scaffolds and their ionic extracts could stimulate hypoxia-inducible factor (HIF)-1α and vascular endothelial growth factor (VEGF) expression in human bone marrow stromal cells (hBMSCs). In addition, both Cu-MBG scaffolds and their ionic extracts significantly promoted the osteogenic differentiation of hBMSCs by improvi...
<div><p>Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applicatio...
The design and development of biomaterials with multifunctional properties is highly attractive in t...
The release of inorganic ions from biomaterials could provide an alternative approach to the use of ...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
There is growing interest in the use of synthetic biomaterials to deliver inorganic ions that are kn...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
<div><p>Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applicatio...
The design and development of biomaterials with multifunctional properties is highly attractive in t...
The release of inorganic ions from biomaterials could provide an alternative approach to the use of ...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
There is growing interest in the use of synthetic biomaterials to deliver inorganic ions that are kn...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applications becau...
<div><p>Bioactive glass (BG) scaffolds are being investigated for bone tissue engineering applicatio...
The design and development of biomaterials with multifunctional properties is highly attractive in t...
The release of inorganic ions from biomaterials could provide an alternative approach to the use of ...