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比较工程心脏组织的制造技术。

Comparing fabrication techniques for engineered cardiac tissue.

机构信息

Graduate Program in Bioengineering and Small-scale Technologies, University of California, Merced, USA.

Bioengineering Department, University of California, Merced, USA.

出版信息

J Biomed Mater Res A. 2024 Nov;112(11):1921-1929. doi: 10.1002/jbm.a.37737. Epub 2024 May 16.

Abstract

Tissue engineering can provide in vitro models for drug testing, disease modeling, and perhaps someday, tissue/organ replacements. For building 3D heart tissue, the alignment of cardiac cells or cardiomyocytes (CMs) is important in generating a synchronously contracting tissue. To that end, researchers have generated several fabrication methods for building heart tissue, but direct comparisons of pros and cons using the same cell source is lacking. Here, we derived cardiomyocytes (CMs) from human induced pluripotent stem cells (hiPSCs) and compare the assembly of these cells using three fabrication methods: cardiospheres, muscle rings, and muscle strips. All three protocols successfully generated compacted tissue comprised of hiPSC-derived CMs stable for at least 2 weeks. The percentage of aligned cells was greatest in the muscle strip (55%) and the muscle ring (50%) compared with the relatively unaligned cardiospheres (35%). The iPSC-derived CMs within the muscle strip also exhibited the greatest elongation, with elongation factor at 2.0 compared with 1.5 for the muscle ring and 1.2 for the cardiospheres. This is the first direct comparison of various fabrication techniques using the same cell source.

摘要

组织工程可以提供体外模型,用于药物测试、疾病建模,也许有朝一日还可以用于组织/器官替代。为了构建 3D 心脏组织,使心脏细胞或心肌细胞(CMs)排列整齐对于产生同步收缩的组织很重要。为此,研究人员已经开发了几种构建心脏组织的制造方法,但缺乏使用相同细胞来源的优缺点的直接比较。在这里,我们从人诱导多能干细胞(hiPSCs)中分离出心肌细胞(CMs),并使用三种制造方法比较这些细胞的组装:心肌球、肌环和肌条。所有三种方案都成功地生成了由 hiPSC 衍生的 CMs 组成的紧凑组织,至少稳定 2 周。与相对未对齐的心肌球(35%)相比,肌条(55%)和肌环(50%)中的对齐细胞比例更高。肌条内的 iPSC 衍生的 CMs 还表现出最大的伸长,伸长因子为 2.0,而肌环为 1.5,心肌球为 1.2。这是首次使用相同细胞来源对各种制造技术进行的直接比较。

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