体外诱导成骨细胞在降解性镁合金表面的附着与增殖
Attachment and proliferation of induced osteoblasts from bone marrow stromal stem cells in vitro on degradable magnesium alloy
查看参考文献9篇
文摘
|
目的观察诱导后的成骨细胞在Mg-Mn-Zn表面附着与增殖情况.方法分离培养兔骨髓基质干细胞(BMSCs),将其诱导分化为成骨细胞后,以1×108/L的细胞浓度种植在Mg-Mn-Zn及对照组纯钛表面,联合培养1、3、5d后,分别用扫描电镜、激光扫描共焦显微镜观察两种金属表面的细胞形态学变化及生长情况.结果 BMSCs以球状体方式进行克隆生长,经诱导后的细胞表达成骨细胞特性,在与镁合金复合培养后,细胞发生黏附并增殖连接成片.结论诱导后的成骨细胞在Mg-Mn-Zn表面有较好的分裂增殖能力,提示镁合金有较好的骨诱导生成作用 |
其他语种文摘
|
Objective To investigate the attachment and proliferation of osteoblasts from bone marrow stromal stem cells(BMSCs)on the surface of Mg-Mn-Zn alloy. Methods Rabbit BMSCs were isolated by density gradient centrifugation method and amplified in the flasks, using the osteogenic inducing conditions(OGC)as the culture media. The osteogenic potential of BMSCs was investigated by means of Alizarin red staining, alkaline phosphatase(ALP) staining, collogen I immunohistochemisty technology, scanning electron microscope(SEM)and transmission electron microscope(TEM). Besides, induced osteoblasts were seeded on the surface of Mg-Mn-Zn alloy and pure Ti by 1×10~5/ ml. Scanning electron microscopy and laser scanning confocal microscopy were carried out to observe cell morphology and growth at l,3 and 5 days under co-culture condition. Results Rabbit BMSCs growed in a great number and in the form of cell spheroids and the cells outgrew in all directions firstly. These cells were then induced into osteoblasts which could adhere to the surface of Mg-Mn-Zn and connected with each other to form lamellar substances. Conclusion Osteoblasts from BMSCs have good adhesion and growth capability on the surface of Mg-Mn-Zn indicating that magnesium alloy posses good bone induction function |
来源
|
解剖学报
,2010,41(3):430-434 【核心库】
|
DOI
|
10.3969/j.issn.0529-1356.2010.03.021
|
关键词
|
Mg-Mn-Zn合金
;
骨髓基质干细胞
;
钛
;
扫描电镜
;
激光扫描共焦显微镜
;
兔
|
地址
|
1.
中国医科大学解剖学教研室, 沈阳, 110001
2.
中国科学院金属研究所, 沈阳, 110016
3.
辽宁省人民医院骨外科, 沈阳, 110015
|
语种
|
中文 |
文献类型
|
研究性论文 |
ISSN
|
0529-1356 |
学科
|
基础医学 |
基金
|
国家自然科学基金
|
文献收藏号
|
CSCD:3940567
|
参考文献 共
9
共1页
|
1.
Zhang E. In vivo evaluation of biodegradable magnesium alloy bone implant in the first 6 months implantation.
J Biomed Mater Res A,2008,88(5):1012-1018
|
CSCD被引
1
次
|
|
|
|
2.
Xu L. In vitro and in vivo evaluation of the surface bioactivity of a calcium phosphate coated magnesium alloy.
Biomaterials,2009,30(8):1512-1523
|
CSCD被引
68
次
|
|
|
|
3.
Xu L. In vivo corrosion behavior of Mg-Mn-Zn alloy for bone implant application.
J Biomed Mater Res A,2007,83(3):703-711
|
CSCD被引
58
次
|
|
|
|
4.
Wan C. Osteogenic potential of rabbit marrow stromal stem cells cultured in vitro:a histochemical and scanning electron microscopic study.
Chinese Joumal of Traumatology,2002,5(6):374-379
|
CSCD被引
2
次
|
|
|
|
5.
Dominici M. Bone marrow mesenchymal cells:biological properties and clinical applications.
J Biol Regul Homeost Agents,2001,15(3):28-37
|
CSCD被引
6
次
|
|
|
|
6.
Rossi MID. Multicellular spheroids of bone marrow stromal cells:a three-dimensional in vitro culture system for the study of hematopoietic cell migration.
Braz J Med Biol Res,2005,38(10):1455-1462
|
CSCD被引
2
次
|
|
|
|
7.
Sujata Kalel. Threedimensional cellular development is essential for ex vivo formation of human bone.
Nat Biotechnol,2000,18(9):954-958
|
CSCD被引
2
次
|
|
|
|
8.
尹东松. Zn对铸态 Mg-Mn合金力学性能和腐蚀性能的影响.
中国有色金属学报,2008,18(3):388-393
|
CSCD被引
1
次
|
|
|
|
9.
Oron A. Correlation between rate of bony ingrowth to stainless steel,pure titanium,and titanium alloy implants in vivo and formation of hydroxyapetite on their surfaces in vitro.
J Biomed Mater Res A,2008,85(4):945-952
|
CSCD被引
1
次
|
|
|
|
|