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Non-invasively enhanced intracranial transplantation of mesenchymal stem cells using focused ultrasound mediated by overexpression of cell-adhesion molecules

机译:使用聚焦超声介导的细胞 - 粘附分子过表达介导的聚焦超声,非侵入性地增强间充质干细胞的颅内移植

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Although there have been reports of promising results regarding the transplantation of mesenchymal stem cells (MSCs) for neurodegenerative diseases through the use of neuronal differentiation or control of the microenvironment, traditional surgical transplantation methods like parenchymal or intravenous injection have limitations such as secondary injuries in the brain, infection, and low survival rate of stem cells in the target site. Focused ultrasound (FUS) treatment is an emerging modality for the treatment of brain diseases, including neurodegenerative disorders. The various biological effects of FUS treatment have been investigated; therefore, the goal is now to improve the delivery efficiency and function of MSCs by capitalizing on the advantages of FUS. In this study, we demonstrated that FUS increases MSC transplantation into brain tissue by 2-fold, and that this finding might be related to the activation of intercellular adhesion molecule-1 in endothelial and subendothelial cells and vascular adhesion molecule-1 in endothelial cells.
机译:尽管已经过了有关于通过使用神经元分化或对微环境分化或对照的微观变性疾病进行间充低性干细胞(MSCs)的有前途的结果,但是如实质或静脉注射剂如实质或静脉注射的传统手术移植方法都具有诸如继发性损伤的局限性靶部位脑,感染和干细胞的低生存率。聚焦超声(FUS)治疗是一种用于治疗脑病的新兴的形态,包括神经变性障碍。研究了Fus治疗的各种生物学效应;因此,目的现在通过利用FUS的优势来提高MSCS的输送效率和功能。在这项研究中,我们证明FUS将MSC移植转化为脑组织的> 2倍,并且该发现可能与内皮细胞中细胞内粘附分子-1的激活有关,内皮细胞中的血管粘附分子-1 。

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