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使用聚合物插件在圆形多孔培养板中产生均匀电场。

Uniform electric field generation in circular multi-well culture plates using polymeric inserts.

机构信息

Micro/Bio/Nanofluidics Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, 904-0495, Japan.

Research Center for Applied Sciences, Academia Sinica, Taipei, 11529, Taiwan.

出版信息

Sci Rep. 2016 May 19;6:26222. doi: 10.1038/srep26222.

Abstract

Applying uniform electric field (EF) in vitro in the physiological range has been achieved in rectangular shaped microchannels. However, in a circular-shaped device, it is difficult to create uniform EF from two electric potentials due to different electrical resistances originated from the length difference between the diameter of the circle and the length of any parallel chord of the bottom circular chamber where cells are cultured. To address this challenge, we develop a three-dimensional (3D) computer-aided designed (CAD) polymeric insert to create uniform EF in circular shaped multi-well culture plates. A uniform EF with a coefficient of variation (CV) of 1.2% in the 6-well plate can be generated with an effective stimulation area percentage of 69.5%. In particular, NIH/3T3 mouse embryonic fibroblast cells are used to validate the performance of the 3D designed Poly(methyl methacrylate) (PMMA) inserts in a circular-shaped 6-well plate. The CAD based inserts can be easily scaled up (i.e., 100 mm dishes) to further increase effective stimulation area percentages, and also be implemented in commercially available cultureware for a wide variety of EF-related research such as EF-cell interaction and tissue regeneration studies.

摘要

在体外生理范围内施加均匀电场 (EF) 已在矩形微通道中实现。然而,在圆形装置中,由于细胞培养的底部圆形腔的直径与任何平行弦的长度之间的差异导致电阻不同,因此很难从两个电势中产生均匀的 EF。为了解决这一挑战,我们开发了一种三维 (3D) 计算机辅助设计 (CAD) 聚合物插件,以在圆形多孔培养板中产生均匀的 EF。在 6 孔板中可以产生具有 1.2% 变化系数 (CV) 的均匀 EF,有效刺激面积百分比为 69.5%。特别是,使用 NIH/3T3 小鼠胚胎成纤维细胞来验证 3D 设计的聚甲基丙烯酸甲酯 (PMMA) 插件在圆形 6 孔板中的性能。基于 CAD 的插件可以轻松扩展(即 100mm 培养皿)以进一步提高有效刺激面积百分比,并且还可以在市售的培养器皿中实现,以进行各种与 EF 相关的研究,如 EF-细胞相互作用和组织再生研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75da/4872143/e00cb2b7e5e5/srep26222-f1.jpg

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