Whey protein isolate (WPI) is a by-product from the production of cheese and Greek yoghurt comprising β-lactoglobulin (β-lg) (75%). Hydrogels can be produced from WPI solutions through heating; hydrogels can be sterilized by autoclaving. WPI hydrogels have shown cytocompatibility and ability to enhance proliferation and osteogenic differentiation of bone-forming cells. Hence, they have promise in the area of bone tissue regeneration. In contrast to commonly used ceramic minerals for bone regeneration, a major advantage of hydrogels is the ease of their modification by incorporating biologically active substances such as enzymes. Calcium carbonate (CaCO3) is the main inorganic component of the exoskeletons of marine invertebrates. Two polymo...
Recently, milk-derived proteins have attracted attention for applications in the biomedical field su...
The present work focuses on the development of novel multicomponent organic‐inorganic hydrogel compo...
The search for an ideal bone tissue replacement has led to the development of new composite material...
Whey protein isolate (WPI) is a by-product from the production of cheese and Greek yoghurt comprisin...
International audienceWhey protein isolate (WPI) is a by-product from the production of cheese and G...
Mineralization of hydrogel biomaterials is considered desirable to improve their suitability as mate...
This work explores novel biocomposite hydrogels fabricated using 40% (wt/vol) solution of whey prote...
Mineralization of hydrogels is desirable prior to applications in bone regeneration. CaCO3 is a wide...
Aging populations in developed countries will increase the demand for implantable materials to suppo...
This study deals with the design and comprehensive evaluation of novel hydrogels based on whey prote...
Alkaline phosphatase (ALP), an enzyme involved in mineralization of bone, is incorporated into three...
Hydrogels are an important class of highly hydrated polymers that are widely investigated for potent...
Alkaline phosphatase (ALP), an enzyme involved in mineralization of bone, is incorporated into three...
Alkaline phosphatase (ALP), an enzyme involved in mineralization of bone, is incorporated into three...
Biomaterials for bone regeneration have predominantly been fabricated from inorganic substances such...
Recently, milk-derived proteins have attracted attention for applications in the biomedical field su...
The present work focuses on the development of novel multicomponent organic‐inorganic hydrogel compo...
The search for an ideal bone tissue replacement has led to the development of new composite material...
Whey protein isolate (WPI) is a by-product from the production of cheese and Greek yoghurt comprisin...
International audienceWhey protein isolate (WPI) is a by-product from the production of cheese and G...
Mineralization of hydrogel biomaterials is considered desirable to improve their suitability as mate...
This work explores novel biocomposite hydrogels fabricated using 40% (wt/vol) solution of whey prote...
Mineralization of hydrogels is desirable prior to applications in bone regeneration. CaCO3 is a wide...
Aging populations in developed countries will increase the demand for implantable materials to suppo...
This study deals with the design and comprehensive evaluation of novel hydrogels based on whey prote...
Alkaline phosphatase (ALP), an enzyme involved in mineralization of bone, is incorporated into three...
Hydrogels are an important class of highly hydrated polymers that are widely investigated for potent...
Alkaline phosphatase (ALP), an enzyme involved in mineralization of bone, is incorporated into three...
Alkaline phosphatase (ALP), an enzyme involved in mineralization of bone, is incorporated into three...
Biomaterials for bone regeneration have predominantly been fabricated from inorganic substances such...
Recently, milk-derived proteins have attracted attention for applications in the biomedical field su...
The present work focuses on the development of novel multicomponent organic‐inorganic hydrogel compo...
The search for an ideal bone tissue replacement has led to the development of new composite material...