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用于气液界面培养的视网膜组织的琼脂糖水凝胶介导的电穿孔方法。

Agarose hydrogel-mediated electroporation method for retinal tissue cultured at the air-liquid interface.

作者信息

Stone Megan L, Lee Hannah H, Levine Edward M

机构信息

Department of Cell and Developmental Biology, Vanderbilt University, Nashville TN 37232, USA.

Department of Ophthalmology and Visual Sciences, Vanderbilt University Medical Center, Nashville TN 37232, USA.

出版信息

iScience. 2024 Nov 1;27(12):111299. doi: 10.1016/j.isci.2024.111299. eCollection 2024 Dec 20.

Abstract

It is advantageous to culture the retina and other tissues at the air-liquid interface to allow for more efficient gas exchange. However, gene delivery to these cultures can be challenging. Electroporation is a fast and robust method of gene delivery, but typically requires submergence in liquid buffer for electrical current flow. We have developed a submergence-free electroporation technique that incorporates an agarose hydrogel disk between the positive electrode and retina. Inner retinal neurons and Müller glia are transfected with increased propensity toward Müller glia transfection after extended time in culture. We also observed an increase in BrdU incorporation in Müller glia following electrical stimulation, and variation in detection of transfected cells from expression vectors with different promoters. This method advances our ability to use retinal tissue for genetic studies and should be adaptable for other tissues cultured at an air-liquid interface.

摘要

将视网膜和其他组织培养在气液界面有利于更高效的气体交换。然而,将基因导入这些培养物可能具有挑战性。电穿孔是一种快速且有效的基因导入方法,但通常需要浸没在液体缓冲液中以实现电流流动。我们开发了一种无浸没电穿孔技术,该技术在正极和视网膜之间加入了一个琼脂糖水凝胶盘。培养较长时间后,视网膜内层神经元和 Müller 胶质细胞的转染率有所提高,且更倾向于 Müller 胶质细胞转染。我们还观察到电刺激后 Müller 胶质细胞中 BrdU 掺入增加,以及来自不同启动子的表达载体对转染细胞的检测存在差异。这种方法提高了我们利用视网膜组织进行基因研究的能力,并且应该适用于在气液界面培养的其他组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fcf/11612790/8159167a95c1/fx1.jpg

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