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用于人胚胎干细胞来源的心肌细胞的高级功能成熟的组织工程心脏贴片。

Tissue-engineered cardiac patch for advanced functional maturation of human ESC-derived cardiomyocytes.

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.

出版信息

Biomaterials. 2013 Jul;34(23):5813-20. doi: 10.1016/j.biomaterials.2013.04.026. Epub 2013 May 2.

Abstract

Human embryonic stem cell-derived cardiomyocytes (hESC-CMs) provide a promising source for cell therapy and drug screening. Several high-yield protocols exist for hESC-CM production; however, methods to significantly advance hESC-CM maturation are still lacking. Building on our previous experience with mouse ESC-CMs, we investigated the effects of 3-dimensional (3D) tissue-engineered culture environment and cardiomyocyte purity on structural and functional maturation of hESC-CMs. 2D monolayer and 3D fibrin-based cardiac patch cultures were generated using dissociated cells from differentiated Hes2 embryoid bodies containing varying percentage (48-90%) of CD172a (SIRPA)-positive cardiomyocytes. hESC-CMs within the patch were aligned uniformly by locally controlling the direction of passive tension. Compared to hESC-CMs in age (2 weeks) and purity (48-65%) matched 2D monolayers, hESC-CMs in 3D patches exhibited significantly higher conduction velocities (CVs), longer sarcomeres (2.09 ± 0.02 vs. 1.77 ± 0.01 μm), and enhanced expression of genes involved in cardiac contractile function, including cTnT, αMHC, CASQ2 and SERCA2. The CVs in cardiac patches increased with cardiomyocyte purity, reaching 25.1 cm/s in patches constructed with 90% hESC-CMs. Maximum contractile force amplitudes and active stresses of cardiac patches averaged to 3.0 ± 1.1 mN and 11.8 ± 4.5 mN/mm(2), respectively. Moreover, contractile force per input cardiomyocyte averaged to 5.7 ± 1.1 nN/cell and showed a negative correlation with hESC-CM purity. Finally, patches exhibited significant positive inotropy with isoproterenol administration (1.7 ± 0.3-fold force increase, EC50 = 95.1 nm). These results demonstrate highly advanced levels of hESC-CM maturation after 2 weeks of 3D cardiac patch culture and carry important implications for future drug development and cell therapy studies.

摘要

人胚胎干细胞衍生的心肌细胞 (hESC-CMs) 为细胞治疗和药物筛选提供了有前途的来源。目前已有几种高产率的 hESC-CM 生产方案;然而,显著促进 hESC-CM 成熟的方法仍然缺乏。基于我们之前在小鼠 ESC-CMs 方面的经验,我们研究了三维 (3D) 组织工程培养环境和心肌细胞纯度对 hESC-CM 结构和功能成熟的影响。使用分化的 Hes2 胚状体中含有不同百分比 (48-90%) 的 CD172a (SIRPA)-阳性心肌细胞的分离细胞生成 2D 单层和 3D 纤维蛋白心脏贴片培养物。通过局部控制被动张力的方向,使贴片内的 hESC-CM 均匀对齐。与在年龄 (2 周) 和纯度 (48-65%) 匹配的 2D 单层中的 hESC-CM 相比,3D 贴片中的 hESC-CM 表现出明显更高的传导速度 (CV)、更长的肌节 (2.09 ± 0.02 对 1.77 ± 0.01 μm),以及参与心脏收缩功能的基因的表达增强,包括 cTnT、αMHC、CASQ2 和 SERCA2。随着心肌细胞纯度的增加,心脏贴片中的 CV 增加,在构建纯度为 90%的 hESC-CM 的贴片中达到 25.1 cm/s。心脏贴片的最大收缩力幅度和主动应力平均值分别为 3.0 ± 1.1 mN 和 11.8 ± 4.5 mN/mm2。此外,输入心肌细胞的收缩力平均值为 5.7 ± 1.1 nN/细胞,与 hESC-CM 纯度呈负相关。最后,贴片在给予异丙肾上腺素后表现出显著的正变力作用 (1.7 ± 0.3 倍力增加,EC50 = 95.1 nm)。这些结果表明,在 3D 心脏贴片培养 2 周后,hESC-CM 达到高度成熟水平,对未来的药物开发和细胞治疗研究具有重要意义。

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