Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, 32611, USA.
Ann Biomed Eng. 2011 Nov;39(11):2823-34. doi: 10.1007/s10439-011-0362-x. Epub 2011 Aug 2.
Direct infusion, or convection-enhanced delivery (CED), into peripheral nerves may provide a method for delivering substances to the intrathecal space or specific fiber bundles entering the spinal cord. To better understand this potential delivery technique, we have characterized the extracellular transport of macromolecular agents from peripheral nerves to the spinal cord in magnetic resonance (MR) imaging studies. High-resolution dynamic contrast-enhanced MR imaging at 11.1 T was used to monitor and characterize in vivo the extracellular transport dynamics of Gd-DTPA-albumin tracer during CED into rat sciatic nerves. Extracellular tracers followed peripheral nerves towards the spinal cord and at vertebral levels L4 and L5 appeared to enter the cerebrospinal fluid and nerve roots. Uptake directly into spinal cord tissues (white and gray matter) appeared to be limited. Spatial distribution patterns within spinal cord regions depended on CED factors, including cannula placement, and underlying tissue structures including peripheral nerve branching and membrane structures at nerve root entry. The applied MR techniques allowed for visualization and quantification of tracer spread and distribution within the rat spinal cord region. The results show that CED into peripheral nerves provides an alternative route for delivering therapeutics to nerve roots and the intrathecal space surrounding the spinal cord.
直接输注或对流增强递送(CED)到外周神经可能为将物质递送到鞘内空间或进入脊髓的特定纤维束提供一种方法。为了更好地理解这种潜在的递药技术,我们在磁共振(MR)成像研究中对大分子药物从外周神经到脊髓的细胞外转运进行了特征描述。在 11.1T 高分辨率动态对比增强 MR 成像中,监测和描述了 Gd-DTPA-白蛋白示踪剂在 CED 进入大鼠坐骨神经期间的细胞外转运动力学。细胞外示踪剂沿着外周神经向脊髓方向移动,在 L4 和 L5 椎骨水平似乎进入了脑脊液和神经根。直接进入脊髓组织(白质和灰质)的摄取似乎受到限制。脊髓区域内的空间分布模式取决于 CED 因素,包括套管放置位置,以及包括外周神经分支和神经根进入处的膜结构在内的基础组织结构。所应用的 MR 技术允许可视化和量化示踪剂在大鼠脊髓区域内的扩散和分布。结果表明,CED 到外周神经为将治疗药物递送到神经根和脊髓周围的鞘内空间提供了一种替代途径。