Department of Medicine, Division of Cardiology, Emory University School of Medicine, Atlanta, GA 30322, USA.
Severance Biomedical Science Institute, Yonsei University College of Medicine, Seoul, Republic of Korea.
Theranostics. 2022 Mar 14;12(6):2758-2772. doi: 10.7150/thno.67661. eCollection 2022.
The advent of human pluripotent stem cells (hPSCs) presented a new paradigm to employ hPSC-derived cardiomyocytes (hPSC-CMs) in drug screening and disease modeling. However, hPSC-CMs differentiated in conventional two-dimensional systems are structurally and functionally immature. Moreover, these differentiation systems generate predominantly one type of cell. Since the heart includes not only CMs but other cell types, such monolayer cultures have limitations in simulating the native heart. Accordingly, three-dimensional (3D) cardiac tissues have been developed as a better platform by including various cardiac cell types and extracellular matrices. Two advances were made for 3D cardiac tissue generation. One type is engineered heart tissues (EHTs), which are constructed by 3D cell culture of cardiac cells using an engineering technology. This system provides a convenient real-time analysis of cardiac function, as well as a precise control of the input/output flow and mechanical/electrical stimulation. The other type is cardiac organoids, which are formed through self-organization of differentiating cardiac lineage cells from hPSCs. While mature cardiac organoids are more desirable, at present only primitive forms of organoids are available. In this review, we discuss various models of hEHTs and cardiac organoids emulating the human heart, focusing on their unique features, utility, and limitations.
人多能干细胞(hPSCs)的出现开创了一个新的范例,可以用人多能干细胞衍生的心肌细胞(hPSC-CMs)进行药物筛选和疾病建模。然而,在传统的二维系统中分化的 hPSC-CMs 在结构和功能上不成熟。此外,这些分化系统主要产生一种类型的细胞。由于心脏不仅包括心肌细胞,还包括其他细胞类型,因此单层培养在模拟天然心脏方面存在局限性。因此,三维(3D)心脏组织已被开发为一个更好的平台,其中包括各种心脏细胞类型和细胞外基质。在 3D 心脏组织的生成方面取得了两项进展。一种是工程心脏组织(EHTs),它是通过使用工程技术对心脏细胞进行 3D 细胞培养构建的。该系统提供了对心脏功能的方便实时分析,以及对输入/输出流和机械/电刺激的精确控制。另一种是心脏类器官,它是由 hPSCs 中的分化心脏谱系细胞自组织形成的。虽然成熟的心脏类器官更受欢迎,但目前仅提供原始形式的类器官。在这篇综述中,我们讨论了模拟人类心脏的各种 hEHTs 和心脏类器官模型,重点介绍了它们的独特特征、用途和局限性。