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用于大规模培养细胞球的 3D 细胞培养板的设计与制造。

Design and manufacture of 3D cell culture plate for mass production of cell-spheroids.

机构信息

Department of Mechanical and Automotive Engineering, Kongju National University, Cheonan, 31080, South Korea.

College of Pharmacy, Yeungnam University, Gyeongsan, Gyeongbuk, 38541, South Korea.

出版信息

Sci Rep. 2019 Sep 27;9(1):13976. doi: 10.1038/s41598-019-50186-0.

Abstract

A 3D cell culture is preferred to 2D cell culture since it allows cells to grow in all directions in vitro, similar to how they would in vivo. 3D cell culture plates currently used in tissue engineering research have limited access to control the geometry. Furthermore, 3D cell culture plate manufacturing methods are relatively complex, time-consuming, labor-intensive, and expensive. Therefore, a design and manufacturing method, which has relatively low cost, high throughput, and high size flexibility, is proposed. Cell culture plate was fabricated by computer aided design and manufacturing software using polydimethylsiloxane as a plate constituent. With the successfully-developed 3D cell culture plate, the morphology and viability of the cultured mesenchymal stem cells were tested.The mesenchymal stem cells seeded on the newly-fabricated 3D cell culture plate aggregated to form 3D spheroids within 24 h of incubation and well-maintained their viability. Thus, due to the capacity of mass production of the cell spheroids with a desired cell viability, the newly-fabricated plate has a great promise to prepare 3D cell spheroids for experimental as well as clinical applications.

摘要

与 2D 细胞培养相比,3D 细胞培养更受青睐,因为它可以使细胞在体外向各个方向生长,类似于它们在体内的生长方式。目前在组织工程研究中使用的 3D 细胞培养板对控制几何形状的访问有限。此外,3D 细胞培养板的制造方法相对复杂、耗时、劳动密集且昂贵。因此,提出了一种设计和制造方法,该方法具有成本相对较低、高通量和高度尺寸灵活性的特点。细胞培养板是使用计算机辅助设计和制造软件制造的,聚二甲基硅氧烷作为板的组成部分。使用成功开发的 3D 细胞培养板,测试了培养的间充质干细胞的形态和活力。间充质干细胞接种在新制造的 3D 细胞培养板上,在孵育 24 小时内聚集形成 3D 球体,并保持良好的活力。因此,由于具有所需细胞活力的细胞球体的大规模生产能力,新制造的培养板在用于实验和临床应用的 3D 细胞球体的制备方面具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/887f/6765015/07f08958bf52/41598_2019_50186_Fig1_HTML.jpg

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