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电刺激增强啮齿动物缺血性中风模型中移植骨髓基质细胞的迁移能力。

Electrical Stimulation Enhances Migratory Ability of Transplanted Bone Marrow Stromal Cells in a Rodent Ischemic Stroke Model.

作者信息

Morimoto Jun, Yasuhara Takao, Kameda Masahiro, Umakoshi Michiari, Kin Ittetsu, Kuwahara Ken, Kin Kyohei, Okazaki Mihoko, Takeuchi Hayato, Sasaki Tatsuya, Toyoshima Atsuhiko, Tajiri Naoki, Agari Takashi, Borlongan Cesario V, Date Isao

机构信息

Department of Neurological Surgery, Okayama University Graduate School of Medicine, Okayama, Japan.

Department of Psychology, Graduate School of Psychology, Kibi International University 8 Iga-machi, Takahashi-city, Okayama, Japan.

出版信息

Cell Physiol Biochem. 2018;46(1):57-68. doi: 10.1159/000488409. Epub 2018 Mar 20.

Abstract

BACKGROUND/AIMS: Bone marrow stromal cells (BMSCs) transplantation is an important strategy for the treatment of ischemic stroke. Currently, there are no effective methods to guide BMSCs toward the targeted site. In this study, we investigated the effect of electrical stimulation on BMSCs migration in an ischemic model of rats.

METHODS

Adult male Wistar rats weighing 200 to 250 g received right middle cerebral artery occlusion (MCAO) for 90 minutes. BMSCs (2.5×105 cells/ 4 µl PBS) were stereotaxically injected into the left corpus callosum at 1 day after MCAO. After BMSCs injection, a plate electrode with a diameter of 3 mm connected to an implantable electrical stimulator was placed on the right frontal epidural space and a counter electrode was placed in the extra-cranial space. Electrical stimulation at preset current (100 µA) and frequency (100 Hz) was performed for two weeks. Behavioral tests were performed at 1, 4, 8, and 15 days after MCAO using the modified Neurological Severity Score (mNSS) and cylinder test. Rats were euthanized at 15 days after MCAO for evaluation of infarction area and the migration distance and area of BMSCs found in the brain tissue. After evaluating cell migration, we proceeded to explore the mechanisms guiding these observations. MCAO rats without BMSCs transplantation were stimulated with same current and frequency. At 1 and 2 weeks after MCAO, rats were euthanized to evaluate stromal cell-derived factor 1 alpha (SDF-1α) level of brain tissues in the bilateral cortex and striatum.

RESULTS

Behavioral tests at 4, 8, and 15 days after MCAO revealed that stimulation group displayed significant amelioration in mNSS and cylinder test compared to control group (p<0.05). Similarly, the infarction areas of stroke rats in stimulation group were significantly decreased compared to control group (p<0.05). Migration distance and area of transplanted BMSCs were significantly longer and wider respectively in stimulation group. An increased concentration gradient of SDF-1α in stimulation group accompanied this enhanced migration of transplanted cells.

CONCLUSIONS

These results suggest that electrical stimulation enhances migratory ability of transplanted BMSCs in ischemic stroke model of rats. If we can direct the implanted BMSCs to the site of interest, it may lead to a greater therapeutic effect.

摘要

背景/目的:骨髓基质细胞(BMSCs)移植是治疗缺血性脑卒中的重要策略。目前,尚无有效的方法引导BMSCs到达靶位点。在本研究中,我们在大鼠缺血模型中研究了电刺激对BMSCs迁移的影响。

方法

体重200至250 g的成年雄性Wistar大鼠接受右侧大脑中动脉闭塞(MCAO)90分钟。在MCAO后1天,将BMSCs(2.5×105个细胞/4 μl PBS)立体定向注射到左侧胼胝体。注射BMSCs后,将一个直径为3 mm的平板电极连接到植入式电刺激器上,置于右侧额叶硬膜外间隙,将一个对电极置于颅外间隙。以预设电流(100 μA)和频率(100 Hz)进行电刺激两周。在MCAO后1、4、8和15天,使用改良神经功能缺损评分(mNSS)和圆筒试验进行行为测试。在MCAO后15天对大鼠实施安乐死,以评估梗死面积以及在脑组织中发现的BMSCs的迁移距离和面积。在评估细胞迁移后,我们继续探索指导这些观察结果的机制。对未进行BMSCs移植的MCAO大鼠给予相同的电流和频率刺激。在MCAO后1周和2周,对大鼠实施安乐死,以评估双侧皮质和纹状体脑组织中的基质细胞衍生因子1α(SDF-1α)水平。

结果

MCAO后4、8和15天的行为测试显示,与对照组相比,刺激组在mNSS和圆筒试验中表现出显著改善(p<0.05)。同样,与对照组相比,刺激组中风大鼠的梗死面积显著减小(p<0.05)。刺激组中移植BMSCs的迁移距离和面积分别显著更长和更宽。刺激组中SDF-1α浓度梯度的增加伴随着移植细胞迁移的增强。

结论

这些结果表明,电刺激可增强大鼠缺血性脑卒中模型中移植BMSCs的迁移能力。如果我们能够将植入的BMSCs引导至感兴趣的部位,可能会产生更大的治疗效果。

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