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1)  Bone tissue engineering
骨组织工程
1.
Fabrication and characterization of a novel bone tissue engineering construct using collagen I gel to suspend adipose-derived stem cells into a porous PLGA-β-TCP scaffold;
基于脂肪干细胞I型胶原凝胶PLGA-β-TCP支架的新型仿生骨组织工程复合体的构建及生物学性能
2.
Performance assessment of decalcified bone matrix of goat as scaffold of bone tissue engineering;
羊脱钙骨基质作为骨组织工程支架材料的性能评估
3.
The advance of bioceramics for bone tissue engineering scaffold material;
骨组织工程支架材料生物陶瓷的研究进展
2)  tissue engineering
骨组织工程
1.
Objective To investigate the feasibility of Poly-β-hydroxybytyrate (PHB) as a scaffolds in bone tissue engineering.
目的:探讨以聚羟基丁酸酯(PHB)作为骨组织工程支架的可行性。
2.
Objective: To investigate the feasibility of inducing in vitro mesenchymal stem cells ( HMSCs ) derived from human bone marrow differentiate into osteoblasts and potential applicability of the HMSCs as the seed cells in tissue engineering.
目的:研究体外培养的成人骨髓间充质干细胞(HMSCs)在特定条件下定向诱导分化为成骨细胞,探讨其作为骨组织工程种子细胞的可行性和应用价值。
3)  Tissue-engineered bone
组织工程骨
1.
Perfusion-weighted magnetic resonance imaging for monitoring vascularization in tissue-engineered bone in rhesuses;
磁共振灌注成像监测组织工程骨血管化的实验研究
2.
Objective To observe the expression of rhBMP-2 & VEGF gene that were transfected into adipose-derived stem cells(ADSCs)in vitro,and application of the tissue-engineered bone with the transfected compound to repair the bone defect of ulna of Guizhou minipigs.
目的观察重组人骨形成蛋白2(rhBMP-2)和血管内皮生长因子(rhVEGF)转染脂肪源性干细胞(ADSCs)后的体外表达情况,并以含该转染体系的组织工程骨进行大动物负重骨缺损的修复研究。
3.
Objective To construct the tissue-engineered bone with the allogenic demineralized bone matrix (DBM) as the scaffold material and the in vitro cultured human mesenchymal stem cells (hMSCs) and to evaluate the geosteogenesis efficacy and safety by implantation of tissue-engineered bone in nude mice subcutaneously.
目的 以同种异体骨脱钙骨基质(demineralizedbonematrix ,DBM )为支架材料,复合体外诱导培养的人骨髓间充质干细胞(humanmesenchymalstemcells ,hMSCs) ,构建组织工程骨并通过裸鼠皮下异位成骨实验及裸鼠皮下致瘤性实验验证其成骨效果及安全性。
4)  Tissue Engineering Bone
组织工程骨
1.
An experimental study on radionuclide bone imaging in repairing bone defect by tissue engineering bone;
放射性骨显像在组织工程骨修复骨缺损实验中的应用
2.
A histologic evaluation on vascularization of tissue engineering bone induced by endothelial progenitor cells(EPCs) for repairing large segmental defects in early period of bone healing
EPCs促血管化组织工程骨修复大段骨缺损的早期组织学评价
3.
Objective To observe the changes of osteoblasts and vascularization during osteogenesis by tissue engineering technique under the electron microscope and study the feasibility of improving vascularization of the tissue engineering bone by using the small intestine submucosa(SIS) as the scaffold.
目的用组织工程方法构建组织工程骨,从超微结构观察成骨过程中成骨细胞、血管再生的变化,探讨小肠黏膜下层作为组织工程骨支架材料促进组织工程骨血管化的优越性。
5)  Tissue engineered bone
组织工程骨
1.
Expression IL-2 and TNF-α after implanted to subcutanenous tissue with allogeneic tissue engineered bone;
同种异体组织工程骨猪皮下植入后IL-2及TNF-α的表达
2.
Histology research about nervalization of tissue engineered bones
组织工程骨神经化构建的组织学研究
3.
Methods and result Tissue engineered bone had been store in 4℃ and -196℃ for 3 and 6 months respectively,while the tissue engineered bone without cryopreservation and bio-derived bone were observed as control group.
目的 了解不同低温保存方法对组织工程骨支架生物特性、成骨细胞功能和修复骨缺损效果的影响,探讨低温保存组织工程骨的可能性与效果。
6)  osteochondral tissue-engineering
骨软骨组织工程
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