The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioactive glasses (BGs) are being intensively investigated. The promotion of angiogenesis by copper (Cu) has been known for more than three decades. This element can be incorporated to delivery carriers, such as BGs, and the materials used in biological assays. In this work, Cu-containing mesoporous bioactive glass (MBG) in the SiO2-CaO-P2O5 compositional system was prepared incorporating 5% mol Cu (MBG-5Cu) by replacement of the corresponding amount of Ca. The biological effects of the ionic products of MBG biodegradation were evaluated on a well-known endothelial cell line, the bovine aorta endothelial cells (BAEC), as well as in an in vivo zebraf...
The biggest strategic challenge for tissue engineering is the development of efficient vascularized ...
Angiogenesis in a tissue-engineered device may be induced by incorporating growth factors (e. g., va...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
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...
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...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
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 release of inorganic ions from biomaterials could provide an alternative approach to the use of ...
The biggest strategic challenge for tissue engineering is the development of efficient vascularized ...
Angiogenesis in a tissue-engineered device may be induced by incorporating growth factors (e. g., va...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
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...
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...
It is of great importance to develop multifunctional bioactive scaffolds, which combine angiogenesis...
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 release of inorganic ions from biomaterials could provide an alternative approach to the use of ...
The biggest strategic challenge for tissue engineering is the development of efficient vascularized ...
Angiogenesis in a tissue-engineered device may be induced by incorporating growth factors (e. g., va...
Biocompatible synthetic scaffolds with enhanced osteogenic and angiogenic capacity are of great inte...