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脉冲电场刺激下人骨髓间充质干细胞的迁移及细胞表面糖基化动力学

Migration of human mesenchymal stem cells stimulated with pulsed electric field and the dynamics of the cell surface glycosylation.

作者信息

Jezierska-Woźniak Katarzyna, Lipiński Seweryn, Huflejt Margaret, Grabarczyk Łukasz, Barczewska Monika, Habich Aleksandra, Maksymowicz Wojciech

机构信息

Department of Neurology and Neurosurgery, Faculty of Medical Sciences, Laboratory for Regenerative Medicine, University of Warmia and Mazury in Olsztyn, Poland.

Department of Electric and Power Engineering, Electronics and Automatics, Faculty of Technical Sciences, University of Warmia and Mazury in Olsztyn, Poland.

出版信息

Adv Clin Exp Med. 2018 Sep;27(9):1181-1193. doi: 10.17219/acem/90872.

Abstract

BACKGROUND

The analysis of the stem cells' glycome dynamics at different stages of differentiation and migration makes possible the exploration of the cell surface glycans as markers of the stem cell functional status, and, in the future, compatibility between transplanted cell and host environment.

OBJECTIVES

The objective of our study was to develop novel techniques of investigating cell motility and to assess whether the electric field of the therapeutic spinal cord stimulation system used in vivo contributes to the migration of human mesenchymal stem cells (hMSCs) in vitro.

MATERIAL AND METHODS

We have investigated the electrotaxis of bone marrow-derived MSCs using pulsed electric field (PEF) in the range of 16-80 mV/mm and the frequency of 130 Hz and 240 Hz. The PEF-related dynamics of the cell surface glycosylation was evaluated using 6 plant lectins recognizing individual glycans.

RESULTS

Pulsed electric field at physiological levels (10 mV/mm; 130 Hz) did not influence cellular motility in vitro, which may correspond to the maintenance of the transplanted cells at the lesion site in vivo. An increase of the PEF intensity and the frequency exceeding physiological levels resulted in an increase in the cellular migration rate in vitro. Pulsed electric field elevated above physiological intensity and frequency (40-80 mV/mm; 240 Hz), but not at physiological levels, resulted in changes of the cell surface glycosylation.

CONCLUSIONS

We found the described approach convenient for investigations and for the in vitro modeling of the cellular systems intended for the regenerative cell transplantations in vivo. Probing cell surface glycomes may provide valuable biomarkers to assess the competence of transplanted cells.

摘要

背景

分析干细胞在分化和迁移不同阶段的糖组动态变化,有助于探索细胞表面聚糖作为干细胞功能状态的标志物,并在未来评估移植细胞与宿主环境之间的相容性。

目的

我们研究的目的是开发研究细胞运动性的新技术,并评估体内使用的治疗性脊髓刺激系统的电场是否有助于体外人骨髓间充质干细胞(hMSCs)的迁移。

材料与方法

我们使用16 - 80 mV/mm范围内的脉冲电场(PEF)以及130 Hz和240 Hz的频率研究了骨髓来源的间充质干细胞的电趋性。使用6种识别单个聚糖的植物凝集素评估了与PEF相关的细胞表面糖基化动态变化。

结果

生理水平(10 mV/mm;130 Hz)的脉冲电场在体外不影响细胞运动性,这可能与体内移植细胞在损伤部位的维持情况相对应。PEF强度和频率超过生理水平会导致体外细胞迁移率增加。高于生理强度和频率(40 - 80 mV/mm;240 Hz)但非生理水平的脉冲电场会导致细胞表面糖基化发生变化。

结论

我们发现所述方法便于用于研究以及对体内用于再生细胞移植的细胞系统进行体外建模。探测细胞表面糖组可能提供有价值的生物标志物以评估移植细胞的能力。

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