Dong Jian-De, Huang Jin-Hong, Gao Feng, Zhu Zhao-Hui, Zhang Jian
Department of Cardiothoracic Surgery, Beijing Electric Power Hospital, Beijing, People's Republic of China.
Vascular. 2011 Aug;19(4):206-13. doi: 10.1258/vasc.2011.oa0283. Epub 2011 Jul 22.
The aim of the study was to construct small-diameter vascular grafts using canine mesenchymal stem cells (cMSCs) and a pulsatile flow bioreactor. cMSCs were isolated from canine bone marrow and expanded ex vivo. cMSCs were then seeded onto the luminal surface of decellularized arterial matrices, which were further cultured in a pulsatile flow bioreactor for four days. Immunohistochemical staining and scanning electron microscopy was performed to characterize the tissue-engineered blood vessels. cMSCs were successfully seeded onto the luminal surface of porcine decellularized matrices. After four-day culture in the pulsatile flow bioreactor, the cells were highly elongated and oriented to the flow direction. Immunohistochemistry demonstrated that the cells cultured under pulsatile flow expressed Von Willebrand factor, an endothelial cell marker. In conclusion, cMSCs seeded onto decellularized arterial matrices could differentiate into endothelial lineage after culturing in a pulsatile flow bioreactor, which provides a novel approach for tissue engineering of small-diameter blood vessels.
本研究的目的是利用犬间充质干细胞(cMSCs)和脉动流生物反应器构建小口径血管移植物。从犬骨髓中分离出cMSCs并在体外进行扩增。然后将cMSCs接种到去细胞动脉基质的管腔表面,再在脉动流生物反应器中培养四天。进行免疫组织化学染色和扫描电子显微镜检查以对组织工程血管进行表征。cMSCs成功接种到猪去细胞基质的管腔表面。在脉动流生物反应器中培养四天后,细胞高度伸长并沿流动方向排列。免疫组织化学表明,在脉动流下培养的细胞表达血管性血友病因子,这是一种内皮细胞标志物。总之,接种到去细胞动脉基质上的cMSCs在脉动流生物反应器中培养后可分化为内皮谱系,这为小口径血管的组织工程提供了一种新方法。