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Liquid marble technology to create cost-effective 3D cardiospheres as a platform for in vitro drug testing and disease modelling

机译:液体大理石技术创建具有成本效益的3D心脏体作为体外药物检测和疾病建模的平台

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摘要

Three-dimensional (3D) cell culturing has several advantages over 2D cultures. 3D cell cultures more accurately mimic the in vivo environment, which is vital to obtain reliable results in disease modelling and toxicity testing. With the introduction of the Yamanaka factors, reprogramming of somatic cells to induced pluripotent stem cells (iPSCs) became available. This iPSC technology provides a scalable source of differentiated cells. iPSCs can be programmed to differentiate into any cell type of the body, including cardiomyocytes. These heart-specific muscle cells, can then serve as a model for therapeutic drug screening or assay development. Current methods to achieve multicellular spheroids by 3D cell cultures, such as hanging drop and spinner flasks are expensive, time-consuming and require specialized materials and training. Hydrophobic powders can be used to create a micro environment for cell cultures, which are termed liquid marbles (LM). In this procedure we describe the first use of the LM technology for 3D culturing in vitro derived human cardiomyocytes which results in the formation of cardiospheres within 24h. The cardiospheres could be used for several in depth and high-throughput analyses.
机译:三维(3D)细胞培养具有超过2D培养物的若干优点。 3D细胞培养物更准确地模仿体内环境,这对于获得疾病建模和毒性测试的可靠结果至关重要。随着Yamanaka因素的引入,可获得诱导多能干细胞(IPSC)的体细胞重新编程。该IPSC技术提供了可扩展的差异细胞来源。可以对IPSC进行编程以区分含有身体的任何细胞类型,包括心肌细胞。然后,这些心脏特异性肌细胞可以作为治疗药物筛选或测定发育的模型。通过3D细胞培养物实现多细胞球体的目前的方法,例如悬挂滴和旋转瓶昂贵,耗时,需要专门的材料和训练。疏水性粉末可用于为细胞培养物产生微环境,其被称为液体大理石(LM)。在此过程中,我们描述了第一次使用LM技术在体外衍生的人心肌细胞中的3D培养,这导致24小时内形成心肌。心电图可以用于多种深度和高通量分析。

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