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Prussian blue nanocubes as a multimodal contrast agent for image-guided stem cell therapy of the spinal cord

机译:普鲁士蓝纳米尺寸作为脊髓图像引导茎细胞疗法的多模式造影剂

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摘要

Translation of stem cell therapies to treat injuries and diseases of the spinal cord is hindered by lack of real-time monitoring techniques to guide regenerative therapies intra- and postoperatively. Thus, we developed an ultrasound (US), photoacoustic (PA), and magnetic resonance (MR) imaging approach augmented with Prussian blue nanocubes (PBNCs) to guide stem cell injections intraoperatively and monitor stem cell therapies in the spinal cord postoperatively. Per the clinical procedure, a multi-level laminectomy was performed in ratsex vivo, and PBNC-labeled stem cells were injected directly into the spinal cord while US/PA images were acquired. US/PA/MR images were also acquired post-surgery. Several features of the imaging approach were demonstrated including detection of low stem cell concentrations, real-time needle guidance and feedback on stem cell delivery, and good agreement between US/PA/MR images. These benefits span intra- and postoperative environments to support future development of this imaging tool.
机译:通过缺乏实时监测技术来引导术后再生治疗的实时监测技术,阻碍了干细胞疗法治疗脊髓损伤和疾病的翻译。因此,我们开发了超声(美国),光声(PA)和磁共振(MR)成像方法,其与普鲁士蓝纳米孔(PBNC)增强以引导术中引导干细胞注射,并术后监测脊髓中的干细胞疗法。根据临床程序,在大鼠体内进行多级椎形切除术,并且在获得US / PA图像的同时,将PBNC标记的干细胞直接注入脊髓中。 US / PA / MR图像也被收购了手术后。已经证明了成像方法的几个特征,包括检测低干细胞浓度,实时针指导和对干细胞传递的反馈,以及US / PA / MR图像之间的良好一致性。这些优势跨越术后环境,以支持该成像工具的未来发展。

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