Lecht Shimon, Gerstenhaber Jonathan A, Stabler Collin T, Pimton Pimchanok, Karamil Seda, Marcinkiewicz Cezary, Schulman Edward S, Lelkes Peter I
1 Department of Bioengineering, College of Engineering, Temple University , Philadelphia, Pennsylvania.
Stem Cells Dev. 2014 Aug 15;23(16):1923-36. doi: 10.1089/scd.2014.0042. Epub 2014 Jun 3.
Conditioned media (CM) of transformed cells, such as the human lung-derived A549 cells, is a useful tool for directing differentiation of embryonic stem cells (ESCs). Previous work indicates that A549-CM induced pulmonary differentiation of mouse ESCs (mESCs). In this study, we compared the effects of A549-CM treatment on the differentiation of mESCs organized in monolayer or embryoid bodies. We analyzed the cultures treated with A549-CM using specific lineage markers by quantitative polymerase chain reaction (qPCR) and lineage-focused PCR arrays and demonstrated heterogeneous CM-induced differentiation. We then constructed bioinformatics-based gene networks to establish correlations between the upregulated lineage-specific genes and proteins in the A549-CM identified by proteomic analysis. Network analysis supported the phenotypic and genotypic heterogeneic differentiation of mESCs into multiple cell lineages via enriched stemness, cardiovascular, neuronal, and lung development gene ontologies (GOs). The significant enrichment toward lung ontologies was specific for treatment with A549-CM, but not CM of liver (HepG2) and pancreas (Capan-1) cells. Based on network analysis, we identified laminin alpha5, prosaposin, lamin A/C, dickkopf homolog 1, clusterin, and calreticulin as the most relevant proteins related to the enrichment of lung GOs. We validated the effects of laminin isoforms on mESC differentiation in vitro and found enriched differential induction of surfactant protein gene expression. Our data suggest that A549-CM can be used for identifying secreted proteins for the heterogeneous mixed-lineage differentiation of mESCs toward a variety of lung-relevant cells. Such a heterogeneous cell population will be required for the in vitro generation of complex lung tissue and mixed cell populations for regenerative pulmonary therapy.
转化细胞(如人肺源A549细胞)的条件培养基(CM)是指导胚胎干细胞(ESC)分化的有用工具。先前的研究表明,A549-CM可诱导小鼠胚胎干细胞(mESC)向肺分化。在本研究中,我们比较了A549-CM处理对单层培养或类胚体形式的mESC分化的影响。我们通过定量聚合酶链反应(qPCR)和谱系聚焦PCR阵列,使用特异性谱系标志物分析了经A549-CM处理的培养物,并证明了CM诱导的异质性分化。然后,我们构建了基于生物信息学的基因网络,以建立蛋白质组分析鉴定出的A549-CM中上调的谱系特异性基因与蛋白质之间的相关性。网络分析支持mESC通过富集干性、心血管、神经元和肺发育基因本体(GO)向多种细胞谱系进行表型和基因型异质性分化。对肺本体的显著富集是A549-CM处理所特有的,而肝(HepG2)和胰腺(Capan-1)细胞的CM则无此现象。基于网络分析,我们确定层粘连蛋白α5、prosaposin、核纤层蛋白A/C、Dickkopf同源物1、聚集素和钙网蛋白是与肺GO富集最相关的蛋白质。我们在体外验证了层粘连蛋白亚型对mESC分化的影响,并发现表面活性剂蛋白基因表达的差异诱导增强。我们的数据表明,A549-CM可用于鉴定分泌蛋白,以促使mESC向多种肺相关细胞进行异质性混合谱系分化。这种异质性细胞群体对于体外生成复杂的肺组织以及用于再生性肺治疗的混合细胞群体是必需的。