Platelet lysates (PLs) are a natural source of growth factors (GFs) known for its stimulatory role on stem cells which can be obtained after activation of platelets from blood plasma. The possibility to use PLs as growth factor source for tissue healing and regeneration has been pursued following different strategies. Platelet lysates are an enriched pool of growth factors which can be used as either a GFs source or as a three-dimensional (3D) hydrogel. However, most of current PLs-based hydrogels lack stability, exhibiting significant shrinking behavior. This chapter focuses on the application of supercritical fluid technology to develop three-dimensional architectures of PL constructs, crosslinked with genipin. The proposed technology all...
Platelet‐rich plasma (PRP) has attracted much attention for the treatment of articular cartilage def...
Articular cartilage has an inadequate natural rebuilding capacity. Tissue engineering has shown to ...
The rise of tissue engineering and regenerative medicine (TERM) is a developing field that focuses o...
The tissue engineering strategy proposed in this work regards the development of a novel autologous...
[Excerpt] The field of tissue engineering has evolved greatly since the idea of combining active co...
Platelet lysate (PL) has been increasingly explored in tissue engineering and regenerative medicine ...
The foundation of tissue engineering for either therapeutic or diagnostic applications is the abilit...
"Online ahead of print"The heterogeneity of the hierarchical tissues requires designing multipart en...
One of the major scientific challenges that tissue engineering and regenerative medicine (TERM) face...
Tissue healing is a complex process involving a cascade of cellular and molecular events that are mo...
Despite the advances on biomaterials development and polymer processing technologies, this remains s...
Cartilage and bone tissues in the joints are intimately linked and form the osteochondral unit. A be...
The aim of this study was to develop a new process for the production of bioactive 3D scaffolds usin...
Tissue engineering aims to generate or facilitate regrowth or healing of damaged tissues by applying...
In the last few years, osteochondral tissue engineering has shown an increasing development in advan...
Platelet‐rich plasma (PRP) has attracted much attention for the treatment of articular cartilage def...
Articular cartilage has an inadequate natural rebuilding capacity. Tissue engineering has shown to ...
The rise of tissue engineering and regenerative medicine (TERM) is a developing field that focuses o...
The tissue engineering strategy proposed in this work regards the development of a novel autologous...
[Excerpt] The field of tissue engineering has evolved greatly since the idea of combining active co...
Platelet lysate (PL) has been increasingly explored in tissue engineering and regenerative medicine ...
The foundation of tissue engineering for either therapeutic or diagnostic applications is the abilit...
"Online ahead of print"The heterogeneity of the hierarchical tissues requires designing multipart en...
One of the major scientific challenges that tissue engineering and regenerative medicine (TERM) face...
Tissue healing is a complex process involving a cascade of cellular and molecular events that are mo...
Despite the advances on biomaterials development and polymer processing technologies, this remains s...
Cartilage and bone tissues in the joints are intimately linked and form the osteochondral unit. A be...
The aim of this study was to develop a new process for the production of bioactive 3D scaffolds usin...
Tissue engineering aims to generate or facilitate regrowth or healing of damaged tissues by applying...
In the last few years, osteochondral tissue engineering has shown an increasing development in advan...
Platelet‐rich plasma (PRP) has attracted much attention for the treatment of articular cartilage def...
Articular cartilage has an inadequate natural rebuilding capacity. Tissue engineering has shown to ...
The rise of tissue engineering and regenerative medicine (TERM) is a developing field that focuses o...