Chen Xi, Xu Haibo, Wan Chao, McCaigue Mervyn, Li Gang
Department of Orthopaedic Surgery, School of Biomedical Sciences, Queen's University Belfast, Musgrave Park Hospital, Belfast, BT9 7JB, United Kingdom.
Stem Cells. 2006 Sep;24(9):2052-9. doi: 10.1634/stemcells.2005-0591. Epub 2006 May 25.
Supplementation of mesenchymal stem cells (MSCs) during hematopoietic stem cell (HSC) transplantation alleviates complications such as graft-versus-host disease, leading to a speedy recovery of hematopoiesis. To meet this clinical demand, a fast MSC expansion method is required. In the present study, we examined the feasibility of using a rotary bioreactor system to expand MSCs from isolated bone marrow mononuclear cells. The cells were cultured in a rotary bioreactor with Myelocult medium containing a combination of supplementary factors, including stem cell factor and interleukin-3 and -6. After 8 days of culture, total cell numbers, Stro-1(+)CD44(+)CD34(-) MSCs, and CD34(+)CD44(+)Stro-1(-) HSCs were increased 9-, 29-, and 8-fold, respectively. Colony-forming efficiency-fibroblast per day of the bioreactor-treated cells was 1.44-fold higher than that of the cells without bioreactor treatment. The bioreactor-expanded MSCs showed expression of primitive MSC markers endoglin (SH2) and vimentin, whereas markers associated with lineage differentiation, including osteocalcin (osteogenesis), type II collagen (chondrogenesis), and C/EBP-alpha (CCAAT/enhancer-binding protein-alpha) (adipogenesis), were not detected. Upon induction, the bioreactor-expanded MSCs were able to differentiate into osteoblasts, chondrocytes, and adipocytes. We conclude that the rotary bioreactor with the modified Myelocult medium reported in this study may be used to rapidly expand MSCs.
在造血干细胞(HSC)移植过程中补充间充质干细胞(MSC)可减轻移植物抗宿主病等并发症,从而使造血功能迅速恢复。为满足这一临床需求,需要一种快速的MSC扩增方法。在本研究中,我们检测了使用旋转生物反应器系统从分离的骨髓单个核细胞中扩增MSC的可行性。将细胞接种于含有干细胞因子、白细胞介素-3和白细胞介素-6等多种补充因子组合的Myelocult培养基的旋转生物反应器中培养。培养8天后,细胞总数、Stro-1(+)CD44(+)CD34(-) MSC和CD34(+)CD44(+)Stro-1(-) HSC分别增加了9倍、29倍和8倍。生物反应器处理组细胞每天的集落形成效率-成纤维细胞比未用生物反应器处理的细胞高1.44倍。生物反应器扩增的MSC表达原始MSC标志物内皮糖蛋白(SH2)和波形蛋白,而未检测到与谱系分化相关的标志物,包括骨钙素(成骨)、II型胶原(软骨形成)和C/EBP-α(CCAAT/增强子结合蛋白-α)(脂肪形成)。经诱导,生物反应器扩增的MSC能够分化为成骨细胞、软骨细胞和脂肪细胞。我们得出结论,本研究报道的使用改良Myelocult培养基的旋转生物反应器可用于快速扩增MSC。