Pages that link to "Q54396424"
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The following pages link to Effect of endothelial cells on bone regeneration using poly(L-lactide-co-1,5-dioxepan-2-one) scaffolds. (Q54396424):
Displaying 18 items.
- Nano-ceramic composite scaffolds for bioreactor-based bone engineering (Q30411502) (← links)
- Leukocyte transmigration into tissue-engineered constructs is influenced by endothelial cells through Toll-like receptor signaling (Q35652069) (← links)
- Adenoviral Mediated Expression of BMP2 by Bone Marrow Stromal Cells Cultured in 3D Copolymer Scaffolds Enhances Bone Formation (Q35903359) (← links)
- Biological effects of functionalizing copolymer scaffolds with nanodiamond particles (Q36978008) (← links)
- Bone regeneration of mouse critical-sized calvarial defects with human mesenchymal stem cells in scaffold (Q37428237) (← links)
- In vitro pre-vascularisation of tissue-engineered constructs A co-culture perspective (Q38234984) (← links)
- Cell seeding density is a critical determinant for copolymer scaffolds-induced bone regeneration (Q38275780) (← links)
- Angiogenic and Immunomodulatory Properties of Endothelial and Mesenchymal Stem Cells (Q38793057) (← links)
- Co-culture of human bone marrow stromal cells with endothelial cells alters gene expression profiles (Q39641026) (← links)
- Mesenchymal stem cells induce endothelial cell quiescence and promote capillary formation (Q40626597) (← links)
- Endothelial microvascular networks affect gene-expression profiles and osteogenic potential of tissue-engineered constructs (Q41842256) (← links)
- Osteogenic stimulatory conditions enhance growth and maturation of endothelial cell microvascular networks in culture with mesenchymal stem cells (Q41861726) (← links)
- Generation of osteogenic construct using periosteal-derived osteoblasts and polydioxanone/pluronic F127 scaffold with periosteal-derived CD146 positive endothelial-like cells (Q42512412) (← links)
- Bone physiology in human grafted and non-grafted extraction sockets--an immunohistochemical study (Q44909027) (← links)
- Biodegradable polymer scaffolds loaded with low-dose BMP-2 stimulate periodontal ligament cell differentiation (Q45262882) (← links)
- Surfactant tuning of hydrophilicity of porous degradable copolymer scaffolds promotes cellular proliferation and enhances bone formation (Q51368611) (← links)
- Degradable amorphous scaffolds with enhanced mechanical properties and homogeneous cell distribution produced by a three-dimensional fiber deposition method (Q57337632) (← links)
- Adenoviral mediated mono delivery of BMP2 is superior to the combined delivery of BMP2 and VEGFA in bone regeneration in a critical-sized rat calvarial bone defect (Q64053977) (← links)