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脉冲电刺激影响成骨细胞黏附及钙离子信号转导。

Pulsed Electrical Stimulation Affects Osteoblast Adhesion and Calcium Ion Signaling.

机构信息

Department of Cell Biology, Rostock University Medical Center, 18057 Rostock, Germany.

Department of Computer Science and Electrical Engineering, Institute of General Electrical Engineering, University of Rostock, 18059 Rostock, Germany.

出版信息

Cells. 2022 Aug 25;11(17):2650. doi: 10.3390/cells11172650.

Abstract

An extensive research field in regenerative medicine is electrical stimulation (ES) and its impact on tissue and cells. The mechanism of action of ES, particularly the role of electrical parameters like intensity, frequency, and duration of the electric field, is not yet fully understood. Human MG-63 osteoblasts were electrically stimulated for 10 min with a commercially available multi-channel system (IonOptix). We generated alternating current (AC) electrical fields with a voltage of 1 or 5 V and frequencies of 7.9 or 20 Hz, respectively. To exclude liquid-mediated effects, we characterized the AC-stimulated culture medium. AC stimulation did not change the medium's pH, temperature, and oxygen content. The HO level was comparable with the unstimulated samples except at 5 V_7.9 Hz, where a significant increase in HO was found within the first 30 min. Pulsed electrical stimulation was beneficial for the process of attachment and initial adhesion of suspended osteoblasts. At the same time, the intracellular Ca level was enhanced and highest for 20 Hz stimulated cells with 1 and 5 V, respectively. In addition, increased Ca mobilization after an additional trigger (ATP) was detected at these parameters. New knowledge was provided on why electrical stimulation contributes to cell activation in bone tissue regeneration.

摘要

再生医学中一个广泛的研究领域是电刺激(ES)及其对组织和细胞的影响。ES 的作用机制,特别是诸如强度、频率和电场持续时间等电参数的作用,尚未完全了解。使用市售的多通道系统(IonOptix),我们对人 MG-63 成骨细胞进行了 10 分钟的电刺激。我们产生了电压分别为 1 或 5 V、频率分别为 7.9 或 20 Hz 的交流(AC)电场。为了排除液体介导的影响,我们对 AC 刺激的培养基进行了特征描述。AC 刺激不会改变培养基的 pH 值、温度和氧含量。HO 水平与未刺激的样品相当,除了在 5 V_7.9 Hz 时,在前 30 分钟内发现 HO 显著增加。脉冲电刺激有利于悬浮成骨细胞的附着和初始黏附过程。同时,细胞内 Ca 水平升高,1 和 5 V 刺激的 20 Hz 细胞的 Ca 水平最高。此外,在这些参数下,还检测到在额外的触发(ATP)后 Ca 动员增加。这为电刺激如何有助于骨组织再生中细胞激活提供了新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53df/9454840/46670ca56566/cells-11-02650-g001.jpg

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