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1)  marrow-origin osteoblasts
骨髓源成骨细胞
1.
Objective: Through studying the effects of nicotine on the proliferation and osteogenic differentiation of rabbit marrow-origin osteoblasts (MOOBs) in vitro, to learn the action mechanism of tabacco on periodontitis, peri-implantitis and implant osseointegration.
目的:体外分离培养兔骨髓基质细胞,成骨诱导分化成骨髓源成骨细胞,通过实验研究不同浓度尼古丁对兔骨髓源成骨细胞(marrow-origin osteoblasts,MOOBs)体外增殖和成骨分化的影响,以期了解尼古丁对牙种植体骨整合的影响,及在牙周炎和种植体周围炎发生发展中的作用机制。
2)  Bone Marrow-Derived Adult Stem Cells
骨髓源成体干细胞
3)  bone marrow-derived stem cell
骨髓源性干细胞
1.
Roles of bone marrow-derived stem cells in regeneration of renal tubules after renal ischemia-reperfusion injury in mice;
小鼠骨髓源性干细胞迁移到缺血再灌注损伤肾脏内表达CK18和RCA的观察
4)  bone marrow-derived stem cells
骨髓源干细胞
1.
Differentiation of bone marrow-derived stem cells in injured rat brain tissue;
大鼠骨髓源干细胞在损伤脑组织中的分化趋势
2.
Feasibility of tracing the bone marrow-derived stem cells in brain tissue with retrovirus pLXSN-GFP;
应用逆转录病毒pLXSN-GFP在脑组织追踪骨髓源干细胞的可行性
3.
The fluorescence emitted by GFP was observed to identify the presence of the bone marrow-derived stem cells, and the GFAP+/GFP+ cells in the glia limitnas were detected under fluorescence microscopy.
方法将制作好的雌性Sprague-Dawley大鼠脑损伤模型24h后经尾静脉植入GFP标记的雄性Sprague-Dawley大鼠的骨髓源干细胞。
5)  bone marrow derived hepatocyte
骨髓源性肝细胞
1.
AIM:To explore a new cell source and transplantation route for liver injury therapy through investigating whether bone marrow derived hepatocytes(BMDH)could repair liver injury after radiofrequency ablation(RF).
目的:探讨骨髓源性肝细胞(BMDH)能否在一定程度上改善肝功能,寻求一种新的肝损伤修复细胞来源和移植途径。
6)  BMDSCs
骨髓来源干细胞
1.
Experimental study on the implantation and differentiation of donor s BMDSCs in the intestinal epithelium of bone marrow-chimeric mice;
供体骨髓来源干细胞在骨髓嵌合小鼠肠上皮中定植和分化研究
补充资料:成骨细胞

  
  成骨细胞
  

  成骨细胞是骨的形成、骨骼发育与生长的重要细胞,其体积较大,呈立方形或矮柱状,胞浆较丰富,呈强嗜碱性。核大而圆,常位于胞体的一侧,核仁清晰可见。成骨细胞内富于核糖核酸,PAS染色呈阳性反应;碱性磷酸酶染色呈强阳性。成骨细胞可向其周围生生胶原纤维及基质,在未钙化前称为类骨质。类骨质的微纤维间彼此侧向融合,骨盐结晶逐渐沉积,最后类骨质区完全骨质化。成骨细胞在分泌类骨质的过程中逐渐被埋于其中并转变成骨细胞。成骨细胞还能形成基质小泡,其内含有大量的碱性磷酸酶、类脂及小的钙盐结晶体。基质小泡破裂后,碱性磷酸酶能使局部磷酸含量增高。磷脂与钙有很强的亲和力,可使钙盐结晶成为钙化核心,并使钙化范围逐渐扩大,从而导致类骨质的迅速钙化。
  
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