Kulbacka Julita, Kasztelanic Rafał, Kotulska Małgorzata, Pysz Dariusz, Stępniewski Grzegorz, Stępień Ryszard, Saczko Jolanta, Miklavčič Damijan, Buczyński Ryszard
Department of Molecular and Cellular Biology, Faculty of Pharmacy, Wroclaw Medical University, Borowska 211A, 50-556, Wrocław, Poland.
Department of Glass, Institute of Electronic Materials Technology, Wolczyńska 133, 01-919, Warsaw, Poland; Faculty of Physics, Warsaw University, Pasteura 7, 02-093 Warsaw Poland.
Bioelectrochemistry. 2020 Oct;135:107545. doi: 10.1016/j.bioelechem.2020.107545. Epub 2020 May 13.
A new type of ultrathin fiber microprobe for selective electroporation is reported. The microprobe is 10 cm long and has a diameter of 350 µm. This microprobe is a low cost tool, which allows electroporation of an arbitrary selected single cell or groups of cells among population with use of a standard microscope and cell culture plates. The microprobe in its basic form contains two metal microelectrodes made of a silver-copper alloy, running along the fiber, each with a diameter of 23 µm. The probe was tested in vitro on a population of normal and cancer cells. Successful targeted electroporation was observed by means of accumulation of trypan blue (TB) dye marker in the cell. The electroporation phenomenon was also verified with propidium iodide and AnnexinV in fluorescent microscopy.
报道了一种用于选择性电穿孔的新型超薄纤维微探针。该微探针长10厘米,直径为350微米。这种微探针是一种低成本工具,使用标准显微镜和细胞培养板能够对群体中任意选择的单个细胞或细胞群进行电穿孔。其基本形式的微探针包含两个由银铜合金制成的金属微电极,沿纤维排列,每个电极直径为23微米。该探针在体外对正常细胞和癌细胞群体进行了测试。通过台盼蓝(TB)染料标记物在细胞中的积累观察到了成功的靶向电穿孔。在荧光显微镜下还用碘化丙啶和膜联蛋白V验证了电穿孔现象。