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利用同步压力喷射和局部电穿孔在神经组织中进行局灶性大分子递送。

Focal macromolecule delivery in neuronal tissue using simultaneous pressure ejection and local electroporation.

作者信息

Barker Matthew, Billups Brian, Hamann Martine

机构信息

Department of Cell Physiology and Pharmacology, Leicester University, Medical Sciences Building, P.O. Box 138, University Road, Leicester LE1 9HN, UK.

出版信息

J Neurosci Methods. 2009 Mar 15;177(2):273-84. doi: 10.1016/j.jneumeth.2008.10.021. Epub 2008 Oct 30.

Abstract

Electroporation creates transient pores in the plasma membrane to introduce macromolecules within a cell or cell population. Generally, electrical pulses are delivered between two electrodes separated from each other, making electroporation less likely to be localised. We have developed a new device combining local pressure ejection with local electroporation through a double-barrelled glass micropipette to transfer impermeable macromolecules in brain slices or in cultured HEK293 cells. The design achieves better targeting of the site of pressure ejection with that of electroporation. With this technique, we have been able to limit the delivery of propidium iodide or dextran amine within areas of 100-200 micrometer. We confirm that local electroporation is transient and show that when combined with pressure ejection, it allows local transfection of EGFP plasmids within HEK293 cells or within cerebellar and hippocampal slice cultures. We further show that local electroporation is less damaging when compared to global electroporation using two separate electrodes. Focal delivery of dextran amine dyes within trapezoid body fibres allowed tracing axonal tracts within brainstem slices, enabling the study of identified calyx of Held presynaptic terminals in living brain tissue. This labelling method can be used to target small nuclei in neuronal tissue and is generally applicable to the study of functional synaptic connectivity, or live axonal tracing in a variety of brain areas.

摘要

电穿孔在质膜上形成瞬时孔道,以将大分子导入细胞或细胞群体中。一般来说,电脉冲在彼此分离的两个电极之间传递,这使得电穿孔不太可能局限于局部。我们开发了一种新装置,通过双管玻璃微吸管将局部压力喷射与局部电穿孔相结合,以在脑片或培养的HEK293细胞中转移不可渗透的大分子。该设计实现了压力喷射部位与电穿孔部位更好的靶向性。利用这项技术,我们能够将碘化丙啶或葡聚糖胺的递送限制在100 - 200微米的区域内。我们证实局部电穿孔是瞬时的,并表明当与压力喷射相结合时,它能在HEK293细胞内或小脑和海马切片培养物中实现EGFP质粒的局部转染。我们进一步表明,与使用两个单独电极的全局电穿孔相比,局部电穿孔的损伤更小。在梯形体纤维内局部递送葡聚糖胺染料可追踪脑干切片内的轴突束,从而能够在活脑组织中研究已鉴定的Held壶腹突触前终末。这种标记方法可用于靶向神经元组织中的小核,并且一般适用于研究功能性突触连接或在各种脑区进行活轴突追踪。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c2b/2680959/709a485a5df0/gr1.jpg

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