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一种使用逆向反射雅努斯微粒对人诱导多能干细胞衍生心肌细胞进行高通量三维培养和节律评估的新颖且经济高效的方法。

A novel and cost-effective method for high-throughput 3D culturing and rhythmic assessment of hiPSC-derived cardiomyocytes using retroreflective Janus microparticles.

作者信息

Pham Huyen T M, Nguyen Duc Long, Kim Hyo-Sop, Yang Eun Kyeong, Kim Jae-Ho, Yoon Hyun C, Park Hyun-Ji

机构信息

Department of Molecular Science and Technology, Ajou University, Suwon, 16499, South Korea.

出版信息

Biomater Res. 2023 Aug 16;27(1):79. doi: 10.1186/s40824-023-00416-4.

Abstract

BACKGROUND

Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) gain attention as a potent cell source in regenerative medicine and drug discovery. With the necessity of the demands for experimental models to create a more physiologically relevant model of the heart in vitro we herein investigate a 3D culturing platform and a method for assessing rhythm in hiPSC-CMs.

METHODS

The 3D cell culture PAMCELL™ plate is designed to enable cells to attach exclusively to adhesive patterned areas. These cell adhesive zones, named as micro-patterned pads, feature micron silica beads that are surface-modified with the well-known arginyl-glycyl-aspartic acid (RGD) peptide. RGD binding to the surface of hiPSC-CMs facilitates cell-cell attachment and the formation of uniform-size spheroids, which is controlled by the diameter of the micro-patterned pads. The assessment and evaluation of 3D hiPSC-CMs beating pattern are carried out using reflective properties of retroreflective Janus micro-particle (RJP). These RJPs are modified with an antibody targeting the gap junction protein found on the surface of hiPSC-CM spheroids. The signal assessment system comprises a camera attached to an optical microscope and a white light source.

RESULTS

The 3D PAMCELL™ R100 culture plate efficiently generate approximately 350 uniform-sized hiPSC-CM spheroids in each well of a 96-well plate and supported a 20-day culture. Analysis of genes and protein expression levels reveal that iPSC-CM spheroids grown on PAMCELL™ R100 retain cardiac stem cell characteristics and functions, outperforming traditional 2D culture platform. Additionally, the RJPs enable monitoring and evaluation of in vitro beating properties of cardiomyocytes without using complex monitoring setup. The system demonstrates its capability to identify alteration in the rhythmic activity of cardiac cells when exposed to ion channel blockers, nifedipine and E4031.

CONCLUSIONS

The integration of the 3D culture method and RJPs in this study establishes a platform for evaluating the rhythmic properties of 3D hiPSC-CMs. This approach holds significant potential for identifying arrhythmias or other cardiac abnormalities, ultimately contributing to the development of more effective therapies for heart diseases.

摘要

背景

人诱导多能干细胞衍生的心肌细胞(hiPSC-CMs)作为再生医学和药物发现中一种强大的细胞来源而受到关注。鉴于需要创建更具生理相关性的体外心脏实验模型,我们在此研究一种3D培养平台以及评估hiPSC-CMs节律的方法。

方法

3D细胞培养PAMCELL™板的设计使细胞仅能附着于有黏附图案的区域。这些细胞黏附区,称为微图案垫,其特征是带有经著名的精氨酰-甘氨酰-天冬氨酸(RGD)肽表面修饰的微米级二氧化硅珠。RGD与hiPSC-CMs表面结合促进细胞间附着并形成大小均匀的球体,这由微图案垫的直径控制。使用逆向反射雅努斯微粒(RJP)的反射特性对3D hiPSC-CMs的跳动模式进行评估和评价。这些RJP用靶向hiPSC-CM球体表面发现的缝隙连接蛋白的抗体进行修饰。信号评估系统包括连接到光学显微镜的相机和白色光源。

结果

3D PAMCELL™ R100培养板在96孔板的每个孔中高效产生约350个大小均匀的hiPSC-CM球体,并支持20天的培养。基因和蛋白质表达水平分析表明,在PAMCELL™ R100上生长的iPSC-CM球体保留了心脏干细胞的特征和功能,优于传统的2D培养平台。此外,RJP能够在不使用复杂监测装置的情况下监测和评估心肌细胞的体外跳动特性。该系统展示了其在暴露于离子通道阻滞剂硝苯地平和E4031时识别心脏细胞节律活动变化的能力。

结论

本研究中3D培养方法和RJP的整合建立了一个评估3D hiPSC-CMs节律特性的平台。这种方法在识别心律失常或其他心脏异常方面具有巨大潜力,最终有助于开发更有效的心脏病治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3442/10428620/e28303c52cec/40824_2023_416_Fig1_HTML.jpg

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