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典型文献
The osteogenesis of Ginsenoside Rb1 incorporatedsilk/micro-nano hydroxyapatite/sodium alginate composite scaffolds for calvarial defect
文献摘要:
Ginsenoside Rb1, the effective constituent of ginseng, has been demonstrated to play favorable roles in improving the immunity system. However, there is little study on the osteogenesis and angiogenesis effect of Ginsenoside Rb1. Moreover, how to establish a delivery system of Ginsenoside Rb1 and its repairment ability in bone defect remains elusive. In this study, the role of Ginsenoside Rb1 in cell viability, proliferation, apoptosis, osteogenic genes expression, ALP activity of rat BMSCs were evaluated firstly. Then, micro-nano HAp granules combined with silk were prepared to establish a delivery system of Ginsenoside Rb1, and the osteogenic and angiogenic effect of Ginsenoside Rb1 loaded on micro-nano HAp/silk in rat calvarial defect models were assessed by sequential fluorescence labeling, and histology analysis, respectively. It revealed that Ginsenoside Rb1 could maintain cell viability, significantly increased ALP activity, osteogenic and angiogenic genes expression. Meanwhile, micro-nano HAp granules combined with silk were fabricated smoothly and were a delivery carrier for Ginsenoside Rb1. Significantly, Ginsenoside Rb1 loaded on micro-nano HAp/silk could facilitate osteogenesis and angiogenesis. All the outcomes hint that Ginsenoside Rb1 could reinforce the osteogenesis differentiation and angiogenesis factor's expression of BMSCs. Moreover, micro-nano HAp combined with silk could act as a carrier for Ginsenoside Rb1 to repair bone defect.
文献关键词:
作者姓名:
Yuqiong Wu;Jiahui Du;Qianju Wu;Ao Zheng;Lingyan Cao;Xinquan Jiang
作者机构:
Department of Prosthodontics,Shanghai Ninth People's Hospital,Shanghai Jiao Tong University School of Medicine;College of Stomatology,Shanghai Jiao Tong University;National Center for Stomatology;National Clinical Research Center for Oral Diseases;Shanghai Key Laboratory of Stomatology;Shanghai Engineering Research Center of Advanced Dental Technology and Materials,Shanghai,China;Stomatological Hospital of Xiamen Medical College,Xiamen,China
引用格式:
[1]Yuqiong Wu;Jiahui Du;Qianju Wu;Ao Zheng;Lingyan Cao;Xinquan Jiang-.The osteogenesis of Ginsenoside Rb1 incorporatedsilk/micro-nano hydroxyapatite/sodium alginate composite scaffolds for calvarial defect)[J].国际口腔科学杂志(英文版),2022(01):60-70
A类:
incorporatedsilk
B类:
osteogenesis,Ginsenoside,Rb1,micro,nano,hydroxyapatite,sodium,alginate,composite,scaffolds,calvarial,defect,effective,constituent,ginseng,has,been,demonstrated,play,favorable,roles,improving,immunity,system,However,there,little,study,angiogenesis,Moreover,how,establish,delivery,its,repairment,bone,remains,elusive,In,this,cell,viability,proliferation,apoptosis,osteogenic,expression,ALP,activity,BMSCs,were,evaluated,firstly,Then,HAp,granules,combined,prepared,angiogenic,loaded,models,assessed,by,sequential,fluorescence,labeling,histology,analysis,respectively,It,revealed,that,could,maintain,significantly,increased,Meanwhile,fabricated,smoothly,carrier,Significantly,facilitate,All,outcomes,hint,reinforce,differentiation
AB值:
0.413504
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