This study aimed to design a growth factor loaded copolyester of 3-hydroxybutyrate and 3-hydroxyhexanoate (PHBHHx) nanoparticles containing 3D collagen matrix to achieve growth factor sustained release for long-term stimulation of human mesenchymal stem cells (hMSCs) proliferation/differentiation for tissue engineer application. Platelet-derived growth factor-BB (PDGF-BB), which is known to enhance hMSCs proliferation in human serum, was selected as a model growth factor, and biodegradable copolyester of PHBHHx was chosen to be the sustained release vehicle. PDGF-BB phospholipid complex encapsulated PHBHHx nanoparticles were fabricated, and their effect on hMSCs proliferation was investigated via assays of CCK-8 and live-dead staining to ce...
Background and purpose: Tissue engineering and cell therapy, as promising therapies, provide the opp...
Tissue engineering strategies can be relevant for cartilage repair and regeneration. A collagen matr...
[Excerpt] Dexamethasone-loaded carboxymethylchitosan/poly(amidoamine) dendrimer nanoparticles, CMC/P...
This study aimed to design a growth factor loaded copolyester of 3-hydroxybutyrate and 3-hydroxyhexa...
Platelet-derived growth factor (PDGF) exerts multiple cellular effects that stimulate wound repair i...
Tissue engineering aims to generate or facilitate regrowth or healing of damaged tissues by applying...
New blood vessel formation is a critical requirement for treating many vascular and ischemia related...
Despite the demonstration of various engineered tissues, clinically useful bone tissue regeneration ...
AbstractA novel therapeutic scaffolding system of engineered nanocarriers within a foam matrix for t...
PubMedID: 22081628The effects of double release of insulin-like growth factor I (IGF-I) and growth f...
In bone regenerative strategies, the controlled release of growth factors is one of the main aspects...
[Excerpt] Growth and differentiation factors can be used to guide the biology in tissue engineering,...
The delivery of growth factors is often challenging due to their short half-life, low stability, and...
In recent years, bone tissue engineering has emerged as a promising strategy to overcome the limitat...
Background and purpose: Tissue engineering and cell therapy, as promising therapies, provide the opp...
Tissue engineering strategies can be relevant for cartilage repair and regeneration. A collagen matr...
[Excerpt] Dexamethasone-loaded carboxymethylchitosan/poly(amidoamine) dendrimer nanoparticles, CMC/P...
This study aimed to design a growth factor loaded copolyester of 3-hydroxybutyrate and 3-hydroxyhexa...
Platelet-derived growth factor (PDGF) exerts multiple cellular effects that stimulate wound repair i...
Tissue engineering aims to generate or facilitate regrowth or healing of damaged tissues by applying...
New blood vessel formation is a critical requirement for treating many vascular and ischemia related...
Despite the demonstration of various engineered tissues, clinically useful bone tissue regeneration ...
AbstractA novel therapeutic scaffolding system of engineered nanocarriers within a foam matrix for t...
PubMedID: 22081628The effects of double release of insulin-like growth factor I (IGF-I) and growth f...
In bone regenerative strategies, the controlled release of growth factors is one of the main aspects...
[Excerpt] Growth and differentiation factors can be used to guide the biology in tissue engineering,...
The delivery of growth factors is often challenging due to their short half-life, low stability, and...
In recent years, bone tissue engineering has emerged as a promising strategy to overcome the limitat...
Background and purpose: Tissue engineering and cell therapy, as promising therapies, provide the opp...
Tissue engineering strategies can be relevant for cartilage repair and regeneration. A collagen matr...
[Excerpt] Dexamethasone-loaded carboxymethylchitosan/poly(amidoamine) dendrimer nanoparticles, CMC/P...