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用于构建收缩性骨骼肌微组织的微流控装置。

Microfluidic devices for construction of contractile skeletal muscle microtissues.

作者信息

Shimizu Kazunori, Araki Hiroyuki, Sakata Kohei, Tonomura Wataru, Hashida Mitsuru, Konishi Satoshi

机构信息

Institute for Innovative NanoBio Drug Discovery and Development, Graduate School of Pharmaceutical Sciences, Kyoto University, Yoshida-shimoadachi, Sakyo-ku, Kyoto 606-8501, Japan; Ritusmeikan Global Innovation Research Organization (R-GIRO), Ritsumeikan University, Noji-higashi, Kusatsu, Shiga 525-8577, Japan.

Graduate School of Science and Engineering, Ritsumeikan University, Noji-higashi, Kusatsu, Shiga 525-8577, Japan.

出版信息

J Biosci Bioeng. 2015 Feb;119(2):212-6. doi: 10.1016/j.jbiosc.2014.07.003. Epub 2014 Jul 30.

Abstract

Cell-culture microchips mimicking tissue/organ-specific functions are required as alternatives to animal testing for drug discovery and disease models. Although three-dimensional (3D) cell culture microfluidic devices can create more biologically relevant cellular microenvironments and higher throughput analysis platforms of cell behavior than conventional techniques, devices for skeletal muscle cells have not been developed. In the present study, we aimed to develop microfluidic devices for 3D cultures of skeletal muscle cells. Skeletal muscle cells mixed with a collagen type-I solution was introduced into the microchannel for cells (MC-C) and was gelated. Then, the medium was introduced into the microchannel for medium (MC-M). During this process, connecting microchannels (Con-MCs) prevented leakage of the collagen solution mixed with cells from MC-C to MC-M and supplied the nutrients from the medium in MC-M to the cells in MC-C. Skeletal muscle microtissues cultured in the microchannel for a week consisted of myotubes were confirmed by histological analysis and immunofluorescence staining. The skeletal muscle microtissues in the microchannel contracted in response to externally applied electrical stimulation (1 and 50 Hz). These results indicate that the functional skeletal muscle microtissues were constructed in the microchannel. Thus, the microfluidic device for culturing 3D skeletal muscle microtissues presented in this study has a potential to be used for drug discovery and toxicological tests.

摘要

作为药物研发和疾病模型动物实验的替代方法,需要能够模拟组织/器官特定功能的细胞培养微芯片。尽管三维(3D)细胞培养微流控装置比传统技术能够创造出更具生物学相关性的细胞微环境和更高通量的细胞行为分析平台,但用于骨骼肌细胞的装置尚未开发出来。在本研究中,我们旨在开发用于骨骼肌细胞三维培养的微流控装置。将与I型胶原溶液混合的骨骼肌细胞引入细胞微通道(MC-C)并使其凝胶化。然后,将培养基引入培养基微通道(MC-M)。在此过程中,连接微通道(Con-MCs)可防止与细胞混合的胶原溶液从MC-C泄漏到MC-M,并将MC-M中培养基的营养物质供应给MC-C中的细胞。通过组织学分析和免疫荧光染色证实,在微通道中培养一周的骨骼肌微组织由肌管组成。微通道中的骨骼肌微组织对外加电刺激(1和50Hz)有收缩反应。这些结果表明,在微通道中构建了功能性骨骼肌微组织。因此,本研究中提出的用于培养三维骨骼肌微组织的微流控装置有潜力用于药物研发和毒理学测试。

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