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电场作为骨髓间充质干细胞归巢到皮肤创伤的潜在定向线索。

Electric field as a potential directional cue in homing of bone marrow-derived mesenchymal stem cells to cutaneous wounds.

机构信息

Department of Cell Biology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Gronostajowa 7, 30-387 Krakow, Poland.

Department of Cell Biology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Gronostajowa 7, 30-387 Krakow, Poland.

出版信息

Biochim Biophys Acta Mol Cell Res. 2017 Feb;1864(2):267-279. doi: 10.1016/j.bbamcr.2016.11.011. Epub 2016 Nov 15.

Abstract

Bone marrow-derived cells are thought to participate and enhance the healing process contributing to skin cells or releasing regulatory cytokines. Directional cell migration in a weak direct current electric field (DC-EF), known as electrotaxis, may be a way of cell recruitment to the wound site. Here we examined the influence of electric field on bone marrow adherent cells (BMACs) and its potential role as a factor attracting mesenchymal stem cells to cutaneous wounds. We observed that in an external EF, BMAC movement was accelerated and highly directed with distinction of two cell populations migrating toward opposite poles: mesenchymal stem cells migrated toward the cathode, whereas macrophages toward the anode. Analysis of intracellular pathways revealed that macrophage electrotaxis mostly depended on Rho family small GTPases and calcium ions, but interruption of PI3K and Arp2/3 had the most pronounced effect on electrotaxis of MSCs. However, in all cases we observed only a partial decrease in directionality of cell movement after inhibition of certain proteins. Additionally, although we noticed the accumulation of EGFR at the cathodal side of MSCs, it was not involved in electrotaxis. Moreover, the cell reaction to EF was very dynamic with first symptoms occurring within <1min. In conclusion, the physiological DC-EF may act as a factor positioning bone marrow cells within a wound bed and the opposite direction of MSC and macrophage movement did not result either from utilizing different signalling or redistribution of investigated cell surface receptors.

摘要

骨髓来源的细胞被认为参与并促进皮肤细胞的愈合过程,或释放调节细胞因子。在弱直流电场(DC-EF)中的定向细胞迁移,即电趋性,可能是细胞募集到创伤部位的一种方式。在这里,我们研究了电场对骨髓贴壁细胞(BMAC)的影响及其作为吸引间充质干细胞到皮肤创伤部位的因素的潜在作用。我们观察到,在外电场中,BMAC 的运动被加速并具有高度方向性,可区分两种朝向相反极迁移的细胞群体:间充质干细胞向阴极迁移,而巨噬细胞向阳极迁移。细胞内途径分析表明,巨噬细胞的电趋性主要依赖于 Rho 家族小 GTPases 和钙离子,但 PI3K 和 Arp2/3 的中断对 MSCs 的电趋性有最显著的影响。然而,在所有情况下,我们仅观察到在抑制某些蛋白质后,细胞运动的方向性有部分降低。此外,尽管我们注意到 EGFR 在 MSCs 的阴极侧聚集,但它不参与电趋性。此外,细胞对 EF 的反应非常迅速,<1min 内就出现了最初的症状。总之,生理 DC-EF 可能作为一个因素,将骨髓细胞定位在创伤床内,并且 MSC 和巨噬细胞运动的相反方向既不是由于利用不同的信号,也不是由于研究的细胞表面受体的重新分布。

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