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急性和亚急性神经调节通过促进生存信号、神经发生和锥体束可塑性来诱导中风恢复。

Acute and Post-acute Neuromodulation Induces Stroke Recovery by Promoting Survival Signaling, Neurogenesis, and Pyramidal Tract Plasticity.

作者信息

Caglayan Ahmet B, Beker Mustafa C, Caglayan Berrak, Yalcin Esra, Caglayan Aysun, Yulug Burak, Hanoglu Lutfu, Kutlu Selim, Doeppner Thorsten R, Hermann Dirk M, Kilic Ertugrul

机构信息

Department of Physiology, Faculty of Medicine, Istanbul Medipol University, Istanbul, Turkey.

Regenerative and Restorative Medical Research Center, Istanbul, Turkey.

出版信息

Front Cell Neurosci. 2019 Apr 12;13:144. doi: 10.3389/fncel.2019.00144. eCollection 2019.

Abstract

Repetitive transcranial magnetic stimulation (rTMS) has gained interest as a non-invasive treatment for stroke based on the data promoting its effects on functional recovery. However, the exact action mechanisms by which the rTMS exert beneficial effects in cellular and molecular aspect are largely unknown. To elucidate the effects of high- and low-frequency rTMS in the acute-ischemic brain, we examined how rTMS influences injury development, cerebral blood flow (CBF), DNA fragmentation, neuronal survival, pro- and anti-apoptotic protein activations after 30 and 90 min of focal cerebral ischemia. In addition, inflammation, angiogenesis, growth factors and axonal outgrowth related gene expressions, were analyzed. Furthermore, we have investigated the effects of rTMS on post-acute ischemic brain, particularly on spontaneous locomotor activity, perilesional tissue remodeling, axonal sprouting of corticobulbar tracts, glial scar formation and cell proliferation, in which rTMS was applied starting 3 days after the stroke onset for 28 days. In the high-frequency rTMS received animals reduced DNA fragmentation, infarct volume and improved CBF were observed, which were associated with increased Bcl-xL activity and reduced Bax, caspase-1, and caspase-3 activations. Moreover, increased angiogenesis, growth factors; and reduced inflammation and axonal sprouting related gene expressions were observed. These results correlated with reduced microglial activation, neuronal degeneration, glial scar formation and improved functional recovery, tissue remodeling, contralesional pyramidal tract plasticity and neurogenesis in the subacute rTMS treated animals. Overall, we propose that high-frequency rTMS in stroke patients can be used to promote functional recovery by inducing the endogenous repair and recovery mechanisms of the brain.

摘要

重复经颅磁刺激(rTMS)作为一种治疗中风的非侵入性方法,因其促进功能恢复的数据而受到关注。然而,rTMS在细胞和分子层面发挥有益作用的确切作用机制在很大程度上尚不清楚。为了阐明高频和低频rTMS在急性缺血性脑中的作用,我们研究了在局灶性脑缺血30分钟和90分钟后,rTMS如何影响损伤发展、脑血流量(CBF)、DNA片段化、神经元存活、促凋亡和抗凋亡蛋白激活。此外,还分析了炎症、血管生成、生长因子和轴突生长相关基因的表达。此外,我们还研究了rTMS对急性缺血性脑后期的影响,特别是对自发运动活动、病灶周围组织重塑、皮质延髓束轴突发芽、胶质瘢痕形成和细胞增殖的影响,其中rTMS在中风发作后3天开始应用,持续28天。在接受高频rTMS的动物中,观察到DNA片段化减少、梗死体积减小和CBF改善,这与Bcl-xL活性增加以及Bax、caspase-1和caspase-3激活减少有关。此外,还观察到血管生成增加、生长因子增加;炎症和轴突生长相关基因表达减少。这些结果与亚急性rTMS治疗动物中微胶质细胞激活减少、神经元变性、胶质瘢痕形成减少以及功能恢复改善、组织重塑、对侧锥体束可塑性和神经发生改善相关。总体而言,我们认为中风患者的高频rTMS可用于通过诱导大脑的内源性修复和恢复机制来促进功能恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8cd/6474396/67cf6bb7df6b/fncel-13-00144-g001.jpg

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