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Minimally Invasive Lumbar Port System for the Collection of Cerebrospinal Fluid from Rhesus Macaques (Macaca mulatta)

机译:用于从猕猴(Macaca mulatta)收集脑脊液的微创腰椎端口系统

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摘要

Biomedical translational research frequently incorporates collection of CSF from NHP, because CSF drug levels are used as a surrogate for CNS tissue penetration in pharmacokinetic and dynamic studies. Surgical placement of a CNS ventricular catheter reservoir for CSF collection is an intensive model to create and maintain and thus may not be feasible or practical for short-term studies. Furthermore, previous NHP lumbar port models require laminectomy for catheter placement. The new model uses a minimally invasive technique for percutaneous placement of a lumbar catheter to create a closed, subcutaneous system for effective, repeated CSF sample collection. None of the rhesus macaques (Macaca mulatta; n = 10) implanted with our minimally invasive lumbar port (MILP) system experienced neurologic deficits, postoperative infection of the surgical site, or skin erosion around the port throughout the 21.7-mo study. Functional MILP systems were maintained in 70% of the macaques, with multiple, high-quality, 0.5- to 1.0-mL samples of CSF collected for an average of 3 mo by using aspiration or gravitational flow. Among these macaques, 57% had continuous functionality for a mean of 19.2 mo; 50% of the cohort required surgical repair for port repositioning and replacement during the study. The MILP was unsuccessful in 2 macaques, at an average of 9.5 d after surgery. Nonpatency in these animals was attributed to the position of the lumbar catheter. The MILP system is an appropriate replacement for temporary catheterization and previous models requiring laminectomy and is a short-term alternative for ventricular CSF collection systems in NHP.
机译:生物医学转化研究经常包含从NHP收集CSF的信息,因为在药代动力学和动态研究中,CSF药物水平被用作CNS组织渗透的替代物。用于CSF收集的CNS心室导管储库的外科手术放置是创建和维护的密集模型,因此对于短期研究而言可能不可行或不实用。此外,以前的NHP腰椎端口模型需要进行椎板切除术以放置导管。新模型使用微创技术对腰椎导管进行经皮放置,以创建一个封闭的皮下系统,以有效,重复地收集CSF样品。在整个21.7个月的研究中,没有植入我们的微创腰椎端口(MILP)系统的恒河猕猴(Macaca mulatta; n = 10),没有神经系统缺陷,手术部位术后感染或该端口周围的皮肤糜烂。在70%的猕猴中维持了功能性MILP系统,并通过抽吸或重力流收集了多个高质量的0.5-1.0 mL CSF样本,平均3 mo。在这些猕猴中,有57%具有连续功能,平均持续时间为19.2 mo;在研究期间,有50%的队列需要手术修复以重新定位和更换端口。手术后平均9.5 d,两只猕猴的MILP失败。这些动物的不通畅归因于腰椎导管的位置。 MILP系统是临时导管和以前需要进行椎板切除术的模型的适当替代,并且是NHP中心室CSF收集系统的短期替代方案。

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