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心脏成纤维细胞对干细胞来源的工程化心脏组织功能的发育阶段依赖性影响。

Developmental stage-dependent effects of cardiac fibroblasts on function of stem cell-derived engineered cardiac tissues.

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC, USA.

出版信息

Sci Rep. 2017 Feb 9;7:42290. doi: 10.1038/srep42290.

Abstract

We investigated whether the developmental stage of mouse cardiac fibroblasts (CFs) influences the formation and function of engineered cardiac tissues made of mouse embryonic stem cell-derived cardiomyocytes (mESC-CMs). Engineered cardiac tissue patches were fabricated by encapsulating pure mESC-CMs, mESC-CMs + adult CFs, or mESC-CMs + fetal CFs in fibrin-based hydrogel. Tissue patches containing fetal CFs exhibited higher velocity of action potential propagation and contractile force amplitude compared to patches containing adult CFs, while pure mESC-CM patches did not form functional syncytium. The functional improvements in mESC-CM + fetal CF patches were associated with differences in structural remodeling and increased expression of proteins involved in cardiac function. To determine role of paracrine signaling, we cultured pure mESC-CMs within miniature tissue "micro-patches" supplemented with media conditioned by adult or fetal CFs. Fetal CF-conditioned media distinctly enhanced CM spreading and contractile activity, which was shown by pathway inhibitor experiments and Western blot analysis to be mediated via MEK-ERK signaling. In mESC-CM monolayers, CF-conditioned media did not alter CM spreading or MEK-ERK activation. Collectively, our studies show that 3D co-culture of mESC-CMs with embryonic CFs is superior to co-culture with adult CFs for in vitro generation of functional myocardium. Ensuring consistent developmental stages of cardiomyocytes and supporting non-myocytes may be a critical factor for promoting functional maturation of engineered cardiac tissues.

摘要

我们研究了小鼠心脏成纤维细胞 (CFs) 的发育阶段是否会影响由小鼠胚胎干细胞衍生的心肌细胞 (mESC-CMs) 构建的工程化心脏组织的形成和功能。通过将纯 mESC-CMs、mESC-CMs+成年 CFs 或 mESC-CMs+胎儿 CFs 包封在纤维蛋白基水凝胶中,制备工程化心脏组织贴片。与含有成年 CFs 的贴片相比,含有胎儿 CFs 的贴片表现出更高的动作电位传播速度和收缩力幅度,而纯 mESC-CM 贴片未形成功能性合胞体。mESC-CM+fetal CF 贴片的功能改善与结构重塑的差异以及参与心脏功能的蛋白质表达增加有关。为了确定旁分泌信号的作用,我们在补充有成年或胎儿 CF 条件培养基的微型组织“微贴片”中培养纯 mESC-CMs。胎儿 CF 条件培养基明显增强了 CM 的扩展和收缩活性,通过途径抑制剂实验和 Western blot 分析表明,这是通过 MEK-ERK 信号介导的。在 mESC-CM 单层中,CF 条件培养基不会改变 CM 的扩展或 MEK-ERK 的激活。总之,我们的研究表明,mESC-CMs 与胚胎 CFs 的 3D 共培养优于与成年 CFs 的共培养,可用于体外生成功能性心肌。确保心肌细胞的一致发育阶段并支持非心肌细胞可能是促进工程化心脏组织功能成熟的关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/625d/5299411/3b50befdfd4b/srep42290-f1.jpg

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