Messana Joseph M, Hwang Nathaniel S, Coburn Jeannine, Elisseeff Jennifer H, Zhang Zijun
Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD 21218, USA.
J Tissue Eng Regen Med. 2008 Dec;2(8):499-506. doi: 10.1002/term.125.
For applications in tissue engineering and regenerative medicine, embryonic stem cells (ESCs) are commonly pre-differentiated in the form of embryoid bodies (EBs). The uncontrolled cell differentiation in EBs results in a highly heterogeneous cell population, an unfavourable condition for therapeutic development. The purpose of this study was to determine an optimal size of EBs for chondrogenic differentiation. EBs were produced in suspension culture with mouse ESCs (ES-D3 GL). The 5-day-old EBs were sorted under a microscope by diameter: small EBs (S-EBs, < 100 microm), medium EBs (M-EBs, 100-150 microm) and large EBs (L-EBs, > 150 microm). The three sizes of EBs were cultured separately for 3 weeks in chondrogenic medium. Type II collagen and aggrecan gene expression was significantly upregulated in the S-EBs, when compared with the M-EBs and L-EBs (p < 0.05 and p < 0.001, respectively). Proteoglycans produced by the cells derived from S-EBs were > 50% of the other two groups. In addition, both Oct4 and Sox2 were expressed more in S-EBs than in M-EBs and L-EBs. Type X collagen expression was relatively increased in L-EBs. Slight shifts toward haematopoietic and endothelial differentiation were seen in the L- and M-EBs. In summary, the size of EBs has implications on ESC differentiation. Cells derived from S-EBs have a greater chondrogenic potential than those from M-EBs and L-EBs. The size of EBs can be a parameter utilized to optimize ESC differentiation for tissue engineering.
在组织工程和再生医学的应用中,胚胎干细胞(ESCs)通常以胚状体(EBs)的形式进行预分化。EBs中不受控制的细胞分化会导致细胞群体高度异质性,这对治疗性开发来说是不利条件。本研究的目的是确定用于软骨形成分化的EBs的最佳大小。通过小鼠胚胎干细胞(ES-D3 GL)在悬浮培养中产生EBs。在显微镜下按直径对5天大的EBs进行分选:小EBs(S-EBs,<100微米)、中EBs(M-EBs,100 - 150微米)和大EBs(L-EBs,>150微米)。将这三种大小的EBs分别在软骨形成培养基中培养3周。与M-EBs和L-EBs相比,S-EBs中II型胶原蛋白和聚集蛋白聚糖基因表达显著上调(分别为p < 0.05和p < 0.001)。源自S-EBs的细胞产生的蛋白聚糖比其他两组多>50%。此外,Oct4和Sox2在S-EBs中的表达均高于M-EBs和L-EBs。L-EBs中X型胶原蛋白表达相对增加。在L-EBs和M-EBs中可见向造血和内皮分化的轻微转变。总之,EBs的大小对胚胎干细胞分化有影响。源自S-EBs的细胞比源自M-EBs和L-EBs的细胞具有更大的软骨形成潜力。EBs的大小可以作为一个参数,用于优化组织工程中胚胎干细胞的分化。