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Tracking cells implanted into cynomolgus monkeys (Macaca fascicularis) using MRI

机译:使用MRI跟踪植入食蟹猴(猕猴)的细胞

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Regenerative therapy with stem cell transplantation is used to treat various diseases such as coronary syndrome and Buerger’s disease. For instance, stem-cell transplantation into the infarcted myocardium is an innovative and promising strategy for treating heart failure due to ischemic heart disease. Basic studies using small animals have shown that transplanted cells improve blood flow in the infarcted region. Magnetic resonance imaging (MRI) can noninvasively identify and track transplanted cells labeled with superparamagnetic iron oxide (SPIO). Although clinical regenerative therapies have been clinically applied to patients, the fate of implanted cells remains unknown. In addition, follow-up studies have shown that some adverse events can occur after recovery. Therefore, the present study evaluated the ability of MRI using a 3T scanner to track implanted peripheral blood mononuclear cells labeled with SPIO on days 0 and 7 after intramuscular (i.m.) and intravenous (i.v.) injection into a cynomolgus monkey. Labeled cells were visualized at the liver and triceps surae muscle on MR images using T1- and T2-weighted sequences and histologically localized by Prussian blue staining. The transplanted cells were tracked without abnormal clinical manifestations throughout this study. Hence, MRI of cynomolgus monkey transplanted SPIO-labeled cells is a safe and efficient method of tracking labeled cells that could help to determine the mechanisms involved in regenerative therapy.
机译:干细胞移植的再生疗法用于治疗各种疾病,例如冠状动脉综合征和Buerger病。例如,干细胞移植到梗塞的心肌中是治疗缺血性心脏病致心力衰竭的一种创新且有希望的策略。使用小型动物进行的基础研究表明,移植的细胞可改善梗塞区域的血流。磁共振成像(MRI)可以无创地识别和跟踪用超顺磁性氧化铁(SPIO)标记的移植细胞。尽管临床再生疗法已经在临床上应用于患者,但是植入细胞的命运仍然未知。此外,后续研究表明,康复后可能会发生一些不良事件。因此,本研究评估了肌内(i.m.)和静脉内(i.v.)注入食蟹猴后第0天和第7天使用3T扫描仪进行MRI跟踪被SPIO标记的植入的外周血单核细胞的MRI能力。使用T1和T2加权序列在MR图像上在肝和肱三头肌上标记的细胞可视化,并通过普鲁士蓝染色进行组织学定位。在整个研究过程中,对移植的细胞进行了追踪,没有异常的临床表现。因此,食蟹猴移植的SPIO标记细胞的MRI是追踪标记细胞的一种安全有效的方法,可以帮助确定再生治疗涉及的机制。

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