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Poly (dopamine) coated superparamagnetic iron oxide nanocluster for noninvasive labeling tracking and targeted delivery of adipose tissue-derived stem cells

机译:聚(多巴胺)涂层超顺磁性氧化铁纳米簇用于脂肪组织来源的干细胞的非侵入性标记跟踪和靶向递送

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摘要

Tracking and monitoring of cells in vivo after transplantation can provide crucial information for stem cell therapy. Magnetic resonance imaging (MRI) combined with contrast agents is believed to be an effective and non-invasive technique for cell tracking in living bodies. However, commercial superparamagnetic iron oxide nanoparticles (SPIONs) applied to label cells suffer from shortages such as potential toxicity, low labeling efficiency, and low contrast enhancing. Herein, the adipose tissue-derived stem cells (ADSCs) were efficiently labeled with SPIONs coated with poly (dopamine) (SPIONs cluster@PDA), without affecting their viability, proliferation, apoptosis, surface marker expression, as well as their self-renew ability and multi-differentiation potential. The labeled cells transplanted into the mice through tail intravenous injection exhibited a negative enhancement of the MRI signal in the damaged liver-induced by carbon tetrachloride, and subsequently these homed ADSCs with SPIONs cluster@PDA labeling exhibited excellent repair effects to the damaged liver. Moreover, the enhanced target-homing to tissue of interest and repair effects of SPIONs cluster@PDA-labeled ADSCs could be achieved by use of external magnetic field in the excisional skin wound mice model. Therefore, we provide a facile, safe, noninvasive and sensitive method for external magnetic field targeted delivery and MRI based tracking of transplanted cells in vivo.
机译:移植后体内细胞的追踪和监测可以为干细胞治疗提供重要信息。磁共振成像(MRI)与造影剂的结合被认为是一种有效的,无创的,用于活体细胞追踪的技术。然而,应用于标记细胞的商业超顺磁性氧化铁纳米粒子(SPIONs)存在诸如潜在毒性,低标记效率和低对比度增强之类的不足。在这里,脂肪组织衍生的干细胞(ADSCs)被涂有聚(多巴胺)的SPIONs(SPIONs cluster @ PDA)有效标记,而不会影响它们的生存能力,增殖,凋亡,表面标志物表达以及它们的自我更新能力和多分化潜能。通过尾静脉注射移植入小鼠体内的标记细胞在四氯化碳诱导的受损肝脏中表现出MRI信号的负增强,随后这些带有SPIONs cluster @ PDA标记的归巢ADSC对受损肝脏表现出优异的修复作用。而且,通过在切除皮肤伤口的小鼠模型中使用外部磁场,可以实现对目标组织的增强靶归巢和SPIONs簇@PDA标记的ADSC的修复作用。因此,我们提供了一种简便,安全,无创且灵敏的方法,用于体外磁场靶向递送和基于MRI的体内移植细胞追踪。

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