Effects of polarized macrophages on the in vitro gene expression after Co-Culture of human pluripotent stem cell-derived cardiomyocytes

Emily A. Wrona , Bruce Sun , Saly Romero-Torres , Donald O. Freytes
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引用次数: 5

Abstract

A promising approach to rescue cardiac function after a myocardial infarction (MI) is to apply an engineered heart tissue (EHT) onto the infarcted area. After the onset of MI, a dynamic inflammatory environment develops comprising of the temporal recruitment of macrophages (Mϕs), and their interactions with the cells of the damaged myocardium. There is limited knowledge about the interactions between this inflammatory environment and the cells that could potentially be used to create an EHT, such as pluripotent stem cell derived-cardiomyocytes. In the present study, a cell-based system was used to study the in vitro interactions between lipopolysaccharide (LPS) and interferon-gamma (IFNγ)-activated Mϕs, and interleukin 4 (IL4) and interleukin 13 (IL13)-activated Mϕs and human embryonic stem cell-derived cardiomyocytes (hESC-CMs). Using a co-culture system, gene expression profiles of key markers of both the Mϕs and the hESC-CMs were obtained, as well as the protein secretion. Additionally, the effects of Mϕ polarizing cytokines on hESC-CMs with or without the presence of Mϕs were studied. Mϕs co-cultured with hESC-CMs showed no significant changes in their gene expression profile after two days in culture. hESC-CMs, however, were noted to have an overall decrease in expression of cardiac-related genes upon exposure to both Mϕ subtypes in co-culture. Gene expression of Bone morphogenetic protein-2 (BMP2), Bone morphogenetic protein-4 (BMP4) and GATA-binding protein-4 (GATA4) were also affected by Mϕ exposure and by inflammatory signals such as LPS and IFNγ. This study represents an important step towards the design of advanced in vitro testing platforms to further study the effect of Mϕs and inflammatory signals on EHTs in vitro.

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极化巨噬细胞对人多能干细胞源性心肌细胞共培养后体外基因表达的影响
在心肌梗死(MI)后,将工程化心脏组织(EHT)应用于梗死区域是一种很有前途的挽救心功能的方法。心肌梗死发作后,一个动态的炎症环境形成,包括巨噬细胞的暂时性募集,以及它们与受损心肌细胞的相互作用。关于这种炎症环境与可能用于产生EHT的细胞(如多能干细胞衍生的心肌细胞)之间的相互作用的知识有限。本研究采用细胞为基础的系统,研究了脂多糖(LPS)与干扰素γ (IFNγ)激活的鼠乳杆菌,以及白细胞介素4 (IL4)和白细胞介素13 (IL13)激活的鼠乳杆菌与人胚胎干细胞源性心肌细胞(hESC-CMs)的体外相互作用。采用共培养系统,分别获得了小鼠和hESC-CMs关键标志物的基因表达谱和蛋白分泌谱。此外,我们还研究了在存在或不存在Mϕ的情况下,Mϕ极化细胞因子对hESC-CMs的影响。与hESC-CMs共培养2天后,其基因表达谱无明显变化。然而,注意到hESC-CMs在暴露于两种mn -亚型共培养时,心脏相关基因的表达总体下降。骨形态发生蛋白-2 (BMP2)、骨形态发生蛋白-4 (BMP4)和gata结合蛋白-4 (GATA4)的基因表达也受到Mϕ暴露和炎症信号(如LPS和IFNγ)的影响。本研究为设计先进的体外测试平台,进一步研究m - ϕs和炎症信号对体外EHTs的影响迈出了重要的一步。
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A decade of progress: Achievements and future challenges for regenerative medicine research in the United Kingdom The past, present, and future promise of pluripotent stem cells The past, present, and future promise of pluripotent stem cells Expanding the horizons of cell-based immunotherapies: CAR-neutrophils Xenotransplantation – has its time finally arrived?
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