磁共振成像引导下神经干细胞移植入猪脊髓
Magnetic Resonance Imaging-Guided Transplantation of Neural Stem Cells into the Porcine Spinal Cord.
作者信息
Lamanna Jason J, Urquia Lindsey N, Hurtig Carl V, Gutierrez Juanmarco, Anderson Cody, Piferi Pete, Federici Thais, Oshinski John N, Boulis Nicholas M
机构信息
Department of Neurosurgery, School of Medicine, Georgia Institute of Technology & Emory University, Atlanta, GA, USA.
出版信息
Stereotact Funct Neurosurg. 2017;95(1):60-68. doi: 10.1159/000448765. Epub 2017 Jan 28.
BACKGROUND
Cell-based therapies are a promising treatment option for traumatic, tumorigenic and degenerative diseases of the spinal cord. Transplantation into the spinal cord is achieved with intravascular, intrathecal, or direct intraparenchymal injection. The current standard for direct injection is limited by surgical invasiveness, difficulty in reinjection, and the inability to directly target anatomical or pathological landmarks. The objective of this study was to present the proof of principle for minimally invasive, percutaneous transplantation of stem cells into the spinal cord parenchyma of live minipigs under MR guidance.
METHODS
An MR-compatible spine injection platform was developed to work with the ClearPoint SmartFrame system (MRI Interventions Inc.). The system was attached to the spine of 2 live minipigs, a percutaneous injection cannula was advanced into the spinal cord under MR guidance, and cells were delivered to the cord.
RESULTS
A graft of 2.5 × 106 human (n = 1) or porcine (n = 1) neural stem cells labeled with ferumoxytol nanoparticles was transplanted into the ventral horn of the spinal cord with MR guidance in 2 animals. Graft delivery was visualized with postprocedure MRI, and characteristic iron precipitates were identified in the spinal cord by Prussian blue histochemistry. Grafted stem cells were observed in the spinal cord of the pig injected with porcine neural stem cells. No postoperative morbidity was observed in either animal.
CONCLUSION
This report supports the proof of principle for transplantation and visualization of pharmacological or biological agents into the spinal cord of a large animal under the guidance of MRI.
背景
基于细胞的疗法是治疗脊髓创伤性、肿瘤性和退行性疾病的一种有前景的选择。可通过血管内、鞘内或直接实质内注射将细胞移植到脊髓。目前直接注射的标准受到手术侵袭性、再次注射困难以及无法直接靶向解剖或病理标志的限制。本研究的目的是提供在磁共振(MR)引导下将干细胞微创经皮移植到活体小型猪脊髓实质的原理验证。
方法
开发了一种与MR兼容的脊柱注射平台,以配合ClearPoint SmartFrame系统(MRI Interventions公司)使用。将该系统连接到2只活体小型猪的脊柱上,在MR引导下将经皮注射套管推进到脊髓中,并将细胞输送到脊髓。
结果
在MR引导下,将标记有 ferumoxytol纳米颗粒的2.5×10⁶个人类(n = 1)或猪(n = 1)神经干细胞移植到2只动物脊髓的腹角。术后MRI可观察到移植物的输送情况,普鲁士蓝组织化学在脊髓中鉴定出特征性的铁沉淀物。在注射猪神经干细胞的猪的脊髓中观察到移植的干细胞。两只动物均未观察到术后发病情况。
结论
本报告支持在MRI引导下将药物或生物制剂移植到大型动物脊髓并进行可视化的原理验证。
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Stereotact Funct Neurosurg. 2017
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