Scaffolds for bone tissue regeneration should provide the right cues for stem cell adhesion and proliferation, but also lead to their osteogenic differentiation. Hydrogels of modified platelet lysates (PLMA) show the proper mechanical stability for cell encapsulation and contain essential bioactive molecules required for cell maintenance. We prepared a novel PLMA-based nanocomposite for bone repair and regeneration capable of releasing biofactors to induce osteogenic differentiation. Human bone marrow-derived mesenchymal stem cells (hBMMSCs) were encapsulated in PLMA hydrogels containing bioactive mesoporous silica nanoparticles previously loaded with dexamethasone and functionalized with calcium and phosphate ions. After 21 d of cultur...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Novel silicate nanoplatelets that induce osteogenic differentiation of human mesenchymal stem cells ...
BackgroundNanomaterials have unique advantages in controlling stem cell function due to their biomim...
BackgroundNanomaterials have unique advantages in controlling stem cell function due to their biomim...
Bone loss associated with degenerative disease and trauma is a clinical problem increasing with the ...
Jaclyn Lock, Huinan Liu Department of Bioengineering, University of California, Riverside, CA, USA B...
First published online 15 Aug 2014Herein, we evaluate the influence of a PLL–HA bilayer on the surfa...
Bone is a vascularized organic-inorganic composite tissue that shows a heavily-mineralized extracell...
Leveraging 3D bioprinting for processing stem cell-laden biomaterials has unlocked a tremendous pote...
Demineralized bone matrix (DBM) is currently used in many clinical applications for bone augmentatio...
Demineralized bone matrix (DBM) is currently used in many clinical applications for bone augmentatio...
Demineralized bone matrix (DBM) is currently used in many clinical applications for bone augmentatio...
Leveraging 3D bioprinting for processing stem cell-laden biomaterials has unlocked a tremendous pote...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Novel silicate nanoplatelets that induce osteogenic differentiation of human mesenchymal stem cells ...
BackgroundNanomaterials have unique advantages in controlling stem cell function due to their biomim...
BackgroundNanomaterials have unique advantages in controlling stem cell function due to their biomim...
Bone loss associated with degenerative disease and trauma is a clinical problem increasing with the ...
Jaclyn Lock, Huinan Liu Department of Bioengineering, University of California, Riverside, CA, USA B...
First published online 15 Aug 2014Herein, we evaluate the influence of a PLL–HA bilayer on the surfa...
Bone is a vascularized organic-inorganic composite tissue that shows a heavily-mineralized extracell...
Leveraging 3D bioprinting for processing stem cell-laden biomaterials has unlocked a tremendous pote...
Demineralized bone matrix (DBM) is currently used in many clinical applications for bone augmentatio...
Demineralized bone matrix (DBM) is currently used in many clinical applications for bone augmentatio...
Demineralized bone matrix (DBM) is currently used in many clinical applications for bone augmentatio...
Leveraging 3D bioprinting for processing stem cell-laden biomaterials has unlocked a tremendous pote...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Tissue engineering offers new approaches to repair bone defects, which cannot be repaired physiologi...
Novel silicate nanoplatelets that induce osteogenic differentiation of human mesenchymal stem cells ...