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一种 [F]-正电子发射荧光团可安全评估小分子在 CSF、CSF 瘘管和 CNS 装置中的分布。

An [F]-Positron Emitting Fluorophore Allows Safe Evaluation of Small Molecule Distribution in the CSF, CSF Fistulas, and CNS Device Placement.

机构信息

Department of Otolaryngology - Head & Neck Surgery, Northwell Health , Hofstra Northwell School of Medicine , New York , New York 10075 , United States.

Department of Radiology , Memorial Sloan Kettering Cancer Center , New York , New York 10065 , United States.

出版信息

Mol Pharm. 2019 Aug 5;16(8):3636-3646. doi: 10.1021/acs.molpharmaceut.9b00485. Epub 2019 Jul 10.

Abstract

The small molecule fluorescein is commonly used to guide the repair of cerebral spinal fluid leaks (CSFLs) in the clinic. We modified fluorescein so that it is also visible by positron emission tomography (PET). This probe was used to quantitatively track the fast distribution of small molecules in the CSF of rats. We tested this probe in models relevant to the clinical diagnosis and treatment of central nervous system (CNS) diseases that affect CSF flow. In this study, fluorescein was radiolabeled with fluorine-18 to produce Fc-AMBF. [F]-Fc-AMBF was introduced at trace quantities (13.2 nmols, 100 μCi) intrathecally (between L5 and L6) in rats to observe the dynamic distribution and clearance of small molecules in the CSF by both [F]-PET and fluorescence (FL) imaging. Murine models were used to demonstrate the following utilities of Fc-AMBF: (1) utility in monitoring the spontaneous CSFL repair of a compression fracture of the cribriform plate and (2) utility in quantifying CSF flow velocity during neurosurgical lumboperitoneal shunt placement. Fc-AMBF clearly delineated CSF-containing volumes based on noninvasive PET imaging and in ex vivo FL histology. In vivo morbidity ( = 16 rats, <2.7 mg/kg, 77 times the PET dose) was not observed. The clearance of the contrast agent from the CNS was rapid and quantitative ( = 33.8 ± 0.6 min by FL and = 26.0 ± 0.5 min by PET). Fc-AMBF was cleared from the CSF through the vasculature and/or lymphatic system that supplies the cribriform plate and the temporal bone. Fc-AMBF can be used to diagnose CSFLs, image CSFL repair, and determine the CSF flow velocity in the CNS or through lumboperitoneal shunts by PET/FL imaging. In conclusion, Fc-AMBF PET imaging has been demonstrated to safely and dynamically quantitate CSF flow, diagnose fistulas associated with the CSF space, and approximate the clearance of small molecules in the CSF.

摘要

小分子荧光素通常用于指导临床中脑脊髓液漏(CSFL)的修复。我们对荧光素进行了修饰,使其也可以通过正电子发射断层扫描(PET)看到。该探针用于定量跟踪大鼠 CSF 中小分子的快速分布。我们在与影响 CSF 流动的中枢神经系统(CNS)疾病的临床诊断和治疗相关的模型中测试了该探针。在这项研究中,用氟-18 对荧光素进行放射性标记,得到 Fc-AMBF。[F]-Fc-AMBF 以微量(13.2nmols,100μCi)鞘内(L5 和 L6 之间)注射到大鼠体内,通过[F]-PET 和荧光(FL)成像观察 CSF 中小分子的动态分布和清除。使用小鼠模型证明了 Fc-AMBF 的以下用途:(1)监测筛板压缩骨折的自发性 CSFL 修复;(2)量化神经外科腰腹腔分流术期间 CSF 流速。Fc-AMBF 基于非侵入性 PET 成像和离体 FL 组织学清楚地描绘了含有 CSF 的容积。未观察到体内发病率(=16 只大鼠,<2.7mg/kg,PET 剂量的 77 倍)。造影剂从 CNS 快速且定量清除(FL 为 33.8±0.6min,PET 为 26.0±0.5min)。Fc-AMBF 通过供应筛板和颞骨的血管系统和/或淋巴系统从 CSF 中清除。Fc-AMBF 可通过 PET/FL 成像用于诊断 CSFL、成像 CSFL 修复以及确定 CNS 或腰腹腔分流中的 CSF 流速。总之,已证明 Fc-AMBF PET 成像可安全且动态地定量 CSF 流动、诊断与 CSF 空间相关的瘘管,并近似 CSF 中小分子的清除。

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