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鞘内导管植入会降低食蟹猴的脑脊液动力学。

Intrathecal catheter implantation decreases cerebrospinal fluid dynamics in cynomolgus monkeys.

机构信息

Department of Chemical and Biological Engineering, University of Idaho, Moscow, ID, United States of America.

Alcyone Therapeutics, Lowell, MA, United States of America.

出版信息

PLoS One. 2020 Dec 30;15(12):e0244090. doi: 10.1371/journal.pone.0244090. eCollection 2020.

Abstract

A detailed understanding of the CSF dynamics is needed for design and optimization of intrathecal drug delivery devices, drugs, and protocols. Preclinical research using large-animal models is important to help define drug pharmacokinetics-pharmacodynamics and safety. In this study, we investigated the impact of catheter implantation in the sub-dural space on CSF flow dynamics in Cynomolgus monkeys. Magnetic resonance imaging (MRI) was performed before and after catheter implantation to quantify the differences based on catheter placement location in the cervical compared to the lumbar spine. Several geometric and hydrodynamic parameters were calculated based on the 3D segmentation and flow analysis. Hagen-Poiseuille equation was used to investigate the impact of catheter implantation on flow reduction and hydraulic resistance. A linear mixed-effects model was used in this study to investigate if there was a statistically significant difference between cervical and lumbar implantation, or between two MRI time points. Results showed that geometric parameters did not change statistically across MRI measurement time points and did not depend on catheter location. However, catheter insertion did have a significant impact on the hydrodynamic parameters and the effect was greater with cervical implantation compared to lumbar implantation. CSF flow rate decreased up to 55% with the catheter located in the cervical region. The maximum flow rate reduction in the lumbar implantation group was 21%. Overall, lumbar catheter implantation disrupted CSF dynamics to a lesser degree than cervical catheter implantation and this effect remained up to two weeks post-catheter implantation in Cynomolgus monkeys.

摘要

深入了解脑脊液动力学对于设计和优化鞘内药物输送装置、药物和方案至关重要。使用大动物模型进行临床前研究对于帮助定义药物药代动力学-药效学和安全性非常重要。在这项研究中,我们研究了蛛网膜下腔导管植入对食蟹猴脑脊液流动动力学的影响。在导管植入前后进行磁共振成像(MRI),根据导管在颈椎与腰椎的放置位置,定量比较差异。基于 3D 分割和流动分析,计算了几个几何和流体动力学参数。我们使用哈根-泊肃叶方程研究导管植入对流量减少和水力阻力的影响。本研究采用线性混合效应模型,考察颈椎和腰椎植入以及两次 MRI 测量时间点之间是否存在统计学上的显著差异。结果表明,几何参数在 MRI 测量时间点之间没有统计学上的变化,也不依赖于导管位置。然而,导管插入确实对流体动力学参数有显著影响,且颈椎植入的影响大于腰椎植入。导管位于颈椎区域时,脑脊液流量减少高达 55%。腰椎植入组的最大流量减少为 21%。总体而言,与颈椎导管植入相比,腰椎导管植入对脑脊液动力学的干扰程度较小,这种影响在食蟹猴中持续到导管植入后两周。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2dc/7773283/3b14ffefdb6c/pone.0244090.g001.jpg

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