[HTML][HTML] Fabrication and application of novel porous scaffold in situ-loaded graphene oxide and osteogenic peptide by cryogenic 3D printing for repairing critical-sized …

Y Zhang, C Wang, L Fu, S Ye, M Wang, Y Zhou - Molecules, 2019 - mdpi.com
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical-Sized …

Y Zhang, C Wang, L Fu, S Ye… - Molecules (Basel …, 2019 - pubmed.ncbi.nlm.nih.gov
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical-Sized …

Y Zhang, C Wang, L Fu, S Ye, M Wang, Y Zhou - Molecules, 2019 - search.ebscohost.com
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical-Sized …

W Zhang, Y Fu - Molecules, 2019 - cir.nii.ac.jp
抄録< jats: p> Osteogenic peptides have been reported as highly effective in directing
mesenchymal stem cell osteogenic differentiation in vitro and bone formation in vivo …

Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical-Sized …

Y Zhang, C Wang, L Fu, S Ye, M Wang… - Molecules (Basel …, 2019 - europepmc.org
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

[PDF][PDF] Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical …

Y Zhang, C Wang, L Fu, S Ye, M Wang… - …, 2019 - pdfs.semanticscholar.org
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical-Sized …

Y Zhang, C Wang, L Fu, S Ye, M Wang, Y Zhou - Molecules, 2019 - search.proquest.com
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

[HTML][HTML] Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical …

Y Zhang, C Wang, L Fu, S Ye, M Wang, Y Zhou - Molecules, 2019 - ncbi.nlm.nih.gov
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

[PDF][PDF] Fabrication and Application of Novel Porous Scaffold in Situ-Loaded Graphene Oxide and Osteogenic Peptide by Cryogenic 3D Printing for Repairing Critical …

Y Zhang, C Wang, L Fu, S Ye, M Wang, Y Zhou - Molecules, 2019 - researchgate.net
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …

Fabrication and application of novel porous scaffold in situ-loaded graphene oxide and osteogenic peptide by cryogenic 3D printing for repairing critical-sized bone …

Y Zhang, C Wang, L Fu, S Ye, M Wang, Y Zhou - Molecules, 2019 - hub.hku.hk
Osteogenic peptides have been reported as highly effective in directing mesenchymal stem
cell osteogenic differentiation in vitro and bone formation in vivo. Therefore, developing …