Investigation of Angiogenesis by in vivo Multiphoton Microscopy during Bone-formation in Murine Calvarial Critical Bone Defect Repaired by Genetically Modified 3D-PLGA/nHAp Scaffold
Jian Li; Chen Yu; Chengbo Liu; Chang She; Bin Teng; Liang Song; Pei-Gen Ren
刊名Journal of Orthopaedic Translation
2016
英文摘要Reconstruction of critical bone defects remains a major orthopaedic clinical challenge because of poor bone regeneration, especially angiogenesis. Implant failure of critical bone defect is often due to avascular necrosis. A satisfactory vascularization is prerequisite for the survival and integration of new tissue with existing host tissue. Genetic modification of biological scaffold to enhance angiogenesis is one of the effective methods for bone regeneration. Present work investigates angiogenesis by in vivo multiphoton microscopy during bone-formation in murine calvarial critical bone defect repaired by genetically modificated 3D-printed PLGA/nHAp scaffold.
收录类别其他
原文出处http://www.sciencedirect.com/science/article/pii/S2214031X1630122X
语种英语
内容类型期刊论文
源URL[http://ir.siat.ac.cn:8080/handle/172644/10520]  
专题深圳先进技术研究院_医工所
作者单位Journal of Orthopaedic Translation
推荐引用方式
GB/T 7714
Jian Li,Chen Yu,Chengbo Liu,et al. Investigation of Angiogenesis by in vivo Multiphoton Microscopy during Bone-formation in Murine Calvarial Critical Bone Defect Repaired by Genetically Modified 3D-PLGA/nHAp Scaffold[J]. Journal of Orthopaedic Translation,2016.
APA Jian Li.,Chen Yu.,Chengbo Liu.,Chang She.,Bin Teng.,...&Pei-Gen Ren.(2016).Investigation of Angiogenesis by in vivo Multiphoton Microscopy during Bone-formation in Murine Calvarial Critical Bone Defect Repaired by Genetically Modified 3D-PLGA/nHAp Scaffold.Journal of Orthopaedic Translation.
MLA Jian Li,et al."Investigation of Angiogenesis by in vivo Multiphoton Microscopy during Bone-formation in Murine Calvarial Critical Bone Defect Repaired by Genetically Modified 3D-PLGA/nHAp Scaffold".Journal of Orthopaedic Translation (2016).
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