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Feasibility and Safety of Intra-arterial Pericyte Progenitor Cell Delivery Following Mannitol-Induced Transient Blood Brain Barrier Opening in a Canine Model

机译:犬模型中甘露醇诱导的瞬时血脑屏障开放后动脉内周细胞祖细胞递送的可行性和安全性

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Stem cell therapy is currently being studied with a view to rescuing various neurological diseases. Such studies require not only the discovery of potent candidate cells but also the development of methods that allow optimal delivery of those candidates to the brain tissues. Given that the blood-brain barrier (BBB) precludes cells from entering the brain, the present study was designed to test whether hyperosmolar mannitol securely opens the BBB and enhances intra-arterial cell delivery. A noninjured normal canine model in which the BBB was presumed to be closed was used to evaluate the feasibility and safety of the tested protocol. Autologous adipose tissue-derived pericytes with platelet-derived growth factor receptor beta positivity were utilized. Cells were administered 5 min after mannitol pretreatment using one of following techniques: (1) bolus injection of a concentrated suspension, (2) continuous infusion of a diluted suspension, or (3) bolus injection of a concentrated suspension that had been shaken by repeated syringe pumping. Animals administered a concentrated cell suspension without mannitol pretreatment served as a control group. Vital signs, blood parameters, neurologic status, and major artery patency were kept stable throughout the experiment and the 1-month posttreatment period. Although ischemic lesions were noted on magnetic resonance imaging in several mongrel dogs with concentrated cell suspension, the injection technique using repeated syringe shaking could avert this complication. The cells were detected in both ipsilateral and contralateral cortices and were more frequent at the ipsilateral and frontal locations, whereas very few cells were observed anywhere in the brain when mannitol was not preinjected. These data suggest that intra-arterial cell infusion with mannitol pretreatment is a feasible and safe therapeutic approach in stable brain diseases such as chronic stroke.
机译:目前正在研究干细胞疗法,以抢救各种神经系统疾病。此类研究不仅需要发现有效的候选细胞,还需要开发允许将这些候选物最佳递送至脑组织的方法。考虑到血脑屏障(BBB)阻止细胞进入大脑,本研究旨在测试高渗甘露醇是否能安全地打开BBB并增强动脉内细胞的递送。假定BBB封闭的正常犬模型未受伤,用于评估测试方案的可行性和安全性。利用具有血小板衍生的生长因子受体β阳性的自体脂肪组织衍生的周细胞。使用以下技术之一在甘露醇预处理后5分钟给予细胞:(1)大剂量注射浓缩悬浮液,(2)连续输注稀释的悬浮液,或(3)大剂量注射经过反复摇动的浓缩悬浮液注射器抽水。给予未经甘露醇预处理的浓缩细胞悬液的动物作为对照组。在整个实验过程中和治疗后1个月内,生命体征,血液参数,神经系统状况和大动脉通畅情况均保持稳定。尽管在磁共振成像中观察到了几只杂种狗的浓缩细胞悬液的缺血性病变,但使用重复的注射器摇动的注射技术可以避免这种并发症。在同侧和对侧皮层中都检测到了这些细胞,并且在同侧和额部位置上的频率更高,而未预注射甘露醇时,在大脑中的任何位置都观察到了很少的细胞。这些数据表明,在稳定的脑部疾病(例如慢性中风)中,用甘露醇预处理进行动脉内输注是一种可行且安全的治疗方法。

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