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用于电穿孔应用中均匀电场分布的圆形凹槽嵌入件。

Round Well Inset for Uniform Electric Field Distribution in Electroporation Applications.

作者信息

Sahu Praveen, Barozzi Marco, Di Barba Paolo, Mognaschi Maria Evelina, La Mura Monica, Lamberti Patrizia, Forzan Michele, Conconi Maria Teresa, Camarillo Ignacio, Sundararajan Raji, Sieni Elisabetta

机构信息

School of Engineering Technology, Purdue University, West Lafayette, IN 47907, USA.

Science and High Technology Department, University of Insubria, 22100 Como, Italy.

出版信息

Bioengineering (Basel). 2025 Feb 19;12(2):203. doi: 10.3390/bioengineering12020203.

Abstract

Uniform electric field distribution in electroporation is crucial for achieving the effective localized delivery of drug molecules. Currently, in vitro electroporation studies on adherent cells lack a standardized test setup for obtaining consistent and repeatable results, unlike in vitro electroporation studies on cell suspensions that use electroporation cuvettes, which provide uniform electric field distribution. Considering this, we designed, built, and tested a novel inset design for low-volume round well plates, such as the 24- and 96-well plates which are most commonly used in cell culture labs. The inset design was realized using 3D printing and experimentally tested using potato phantoms and HeLa cells. Finite element analysis (FEA) was used to compute the electric field distribution in the round well plates with and without the inset. The FEA indicated that the electric field contour map at the bottom of the well with the inset had a more uniform electric field distribution, with an average value close to the expected 1000 V/cm. In contrast, it was only 840 V/cm without the inset, indicating non-uniform electric field distribution. Uniform electric fields were also obtained using the inset for the potato phantoms and the HeLa cells, indicating the merit of the inset and its usability with low-volume cell culture well plates, which enable the transfer of cells for various assays without additional steps, as well as its cost-effectiveness.

摘要

电穿孔中均匀的电场分布对于实现药物分子的有效局部递送至关重要。目前,与使用能提供均匀电场分布的电穿孔比色皿进行的细胞悬液体外电穿孔研究不同,针对贴壁细胞的体外电穿孔研究缺乏用于获得一致且可重复结果的标准化测试设置。考虑到这一点,我们设计、构建并测试了一种用于小体积圆孔板(如细胞培养实验室中最常用的24孔板和96孔板)的新型嵌入设计。该嵌入设计通过3D打印实现,并使用马铃薯模型和HeLa细胞进行了实验测试。使用有限元分析(FEA)来计算有和没有嵌入物的圆孔板中的电场分布。FEA表明,有嵌入物时孔底部的电场等高线图具有更均匀的电场分布,平均值接近预期的1000 V/cm。相比之下,没有嵌入物时仅为840 V/cm,表明电场分布不均匀。使用该嵌入物对马铃薯模型和HeLa细胞也获得了均匀的电场,这表明了该嵌入物的优点及其在小体积细胞培养孔板中的可用性,它能够在无需额外步骤的情况下转移细胞用于各种分析,以及其成本效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bb7/11851808/50a7e735a223/bioengineering-12-00203-g001.jpg

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