Gutiérrez-Fernández María, Otero-Ortega Laura, Ramos-Cejudo Jaime, Rodríguez-Frutos Berta, Fuentes Blanca, Díez-Tejedor Exuperio
Department of Neurology and Stroke Center, Neuroscience and Cerebrovascular Research Laboratory, La Paz University Hospital, Neuroscience Area of IdiPAZ Health Research Institute, Autónoma University of Madrid , Paseo de la Castellana 261, 28046, Madrid , Spain
Expert Opin Biol Ther. 2015 Jun;15(6):873-81. doi: 10.1517/14712598.2015.1040386. Epub 2015 May 10.
Based on the positive results observed in experimental animal models, adipose tissue-derived mesenchymal stem cells (AD-MSCs) constitute a promising therapy for stroke treatment. However, several aspects need to be clarified to identify the optimal conditions for successful clinical translation.
This review focuses on AD-MSC treatment for ischemic and hemorrhagic stroke in experimental animal models. In addition, we will explore the optimization of treatment conditions including AD-MSC production, administration routes and therapeutic windows for their appropriate use in patients. Finally we will provide an update on clinical trials on this therapy.
Compared with other cell types, AD-MSCs have been less investigated in stroke studies. Currently, experimental animal models have shown safety and efficacy with this treatment after stroke. Due to several advantages of AD-MSCs, such as their abundance and accessibility, they can be considered a promising strategy for use in patients. However, many questions are still to be resolved regarding their mechanisms of action, immune system modulation and the effects of AD-MSCs on all components of the brain that may be affected after ischemic and hemorrhagic strokes.
基于在实验动物模型中观察到的积极结果,脂肪组织来源的间充质干细胞(AD-MSCs)构成了一种有前景的中风治疗方法。然而,为确定成功临床转化的最佳条件,仍有几个方面需要阐明。
本综述聚焦于实验动物模型中AD-MSCs对缺血性和出血性中风的治疗。此外,我们将探讨治疗条件的优化,包括AD-MSCs的制备、给药途径以及用于患者的合适治疗窗。最后,我们将提供该疗法临床试验的最新情况。
与其他细胞类型相比,AD-MSCs在中风研究中的研究较少。目前,实验动物模型已显示出这种治疗在中风后的安全性和有效性。由于AD-MSCs具有多种优势,如丰富性和易获取性,它们可被视为用于患者的一种有前景的策略。然而,关于其作用机制、免疫系统调节以及AD-MSCs对缺血性和出血性中风后可能受影响的大脑所有成分的影响,仍有许多问题有待解决。