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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >A human hair-based platform for long-term maintenance of 3D engineered cardiac tissues in vitro
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A human hair-based platform for long-term maintenance of 3D engineered cardiac tissues in vitro

机译:基于人的头发的长期维护在体外长期维护

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摘要

In vitro cardiac models constructed with human cardiomyocytes and appropriate biomaterial scaffolds are still in pressing need for drug testing and disease modeling. Here, we describe a platform based on human hair to generate 3D cardiac tissues, termed cardiowire, from human induced pluripotent stem cell-derived cardio-myocytes. The cardiowire was cultivated for an extended period of time (up to 118 days). To monitor the contractile motion of the cardiac tissue, video-based analysis was performed throughout the time course of cultivation. After an appreciably long time (52 days) of culture, the cardiowire remained its strong contractility. Although the gel compaction went on with time, the width of the cardiowire was as large as 1 mm after 100 days. Moreover, it was demonstrated that human hair not only could support cell attachment, but also had long-term mechanical strength to sustain the highly repetitive mechanical stress of the cardiac tissue contraction. This platform could be easily combined with electrical and mechanical stimulation and serve as an in vitro cardiac model for drug screening and other therapeutic applications.
机译:用人心肌细胞和适当的生物材料支架构建的体外心脏模型仍然需要药物检测和疾病建模。在这里,我们描述了一种基于人头发的平台,以产生3D心脏组织,被人诱导的多能干细胞衍生的心肌细胞。铸型越来越长的时间(最长为118天)。为了监测心脏组织的收缩运动,在整个培养过程中进行基于视频分析。在长期(52天)的文化中,心脏仍然是其强烈的收缩力。虽然凝胶压实随着时间的推移,但是铸型的宽度在100天后大约1毫米。此外,人们证明,人发不仅可以支持细胞附着,而且还具有长期的机械强度,以维持心脏组织收缩的高度重复机械应力。该平台可以轻松地与电气和机械刺激结合,并用作药物筛选和其他治疗应用的体外心脏模型。

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