首页> 外文期刊>Stem cells translational medicine. >Exposure of Induced Pluripotent Stem Cell‐Derived Vascular Endothelial and Smooth Muscle Cells in Coculture to Hemodynamics Induces Primary Vascular Cell‐Like Phenotypes
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Exposure of Induced Pluripotent Stem Cell‐Derived Vascular Endothelial and Smooth Muscle Cells in Coculture to Hemodynamics Induces Primary Vascular Cell‐Like Phenotypes

机译:共培养中诱导多能干细胞衍生的血管内皮和平滑肌细胞暴露于血流动力学诱导原代血管细胞表型。

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Human induced pluripotent stem cells (iPSCs) can be differentiated into vascular endothelial (iEC) and smooth muscle (iSMC) cells. However, because iECs and iSMCs are not derived from an intact blood vessel, they represent an immature phenotype. Hemodynamics and heterotypic cell:cell communication play important roles in vascular cell phenotypic modulation. Here we tested the hypothesis that hemodynamic exposure of iECs in coculture with iSMCs induces an in vivo‐like phenotype. iECs and iSMCs were cocultured under vascular region‐specific blood flow hemodynamics, and compared to hemodynamic cocultures of blood vessel‐derived endothelial (pEC) and smooth muscle (pSMC) cells. Hemodynamic flow‐induced gene expression positively correlated between pECs and iECs as well as pSMCs and iSMCs. While endothelial nitric oxide synthase 3 protein was lower in iECs than pECs, iECs were functionally mature as seen by acetylated‐low‐density lipoprotein (LDL) uptake. SMC contractile protein markers were also positively correlated between pSMCs and iSMCs. Exposure of iECs and pECs to atheroprone hemodynamics with oxidized‐LDL induced an inflammatory response in both. Dysfunction of the transforming growth factor β (TGFβ) pathway is seen in several vascular diseases, and iECs and iSMCs exhibited a transcriptomic prolife similar to pECs and pSMCs, respectively, in their responses to LY2109761‐mediated transforming growth factor β receptor I/II (TGFβRI/II) inhibition. Although there are differences between ECs and SMCs derived from iPSCs versus blood vessels, hemodynamic coculture restores a high degree of similarity in their responses to pathological stimuli associated with vascular diseases. Thus, iPSC‐derived vascular cells exposed to hemodynamics may provide a viable system for modeling rare vascular diseases and testing new therapeutic approaches. S tem C ells T ranslational M edicine 2017;6:1673–1683
机译:人类诱导的多能干细胞(iPSC)可以分化为血管内皮(iEC)和平滑肌(iSMC)细胞。但是,由于iEC和iSMC并非来自完整的血管,因此它们代表了未成熟的表型。血液动力学和异型细胞:细胞通讯在血管细胞表型调节中起重要作用。在这里,我们测试了以下假设:与iSMC共培养的iEC的血流动力学暴露会诱导体内类似的表型。 iEC和iSMC在血管区域特定的血流血流动力学下共培养,并与血管源性内皮细胞(pEC)和平滑肌(pSMC)的血流动力学共培养进行比较。血流动力学诱导的基因表达在pEC和iEC以及pSMC和iSMC之间呈正相关。尽管iEC中的内皮型一氧化氮合酶3蛋白低于pEC,但从乙酰化低密度脂蛋白(LDL)摄取来看,iEC功能成熟。 SMC收缩蛋白标记在pSMC和iSMC之间也呈正相关。 iEC和pEC暴露于带有氧化的LDL的动脉粥样硬化血流动力学中均会引起炎症反应。在几种血管疾病中都发现了转化生长因子β(TGFβ)通路的功能异常,并且iEC和iSMC对LY2109761介导的转化生长因子β受体I / II的反应分别表现出与pEC和pSMC类似的转录组增殖( TGFβRI/ II)抑制。尽管源自iPSC的EC和SMC与血管之间存在差异,但血流动力学共培养可恢复其对与血管疾病相关的病理刺激反应的高度相似性。因此,暴露于血流动力学的iPSC来源的血管细胞可能为建模罕见的血管疾病和测试新的治疗方法提供可行的系统。系统杂志翻译医学杂志; 2017年; 6:1673–1683

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