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鞘内注射健康小鼠后纳米颗粒在中枢神经系统中的命运。

Fate of nanoparticles in the central nervous system after intrathecal injection in healthy mice.

机构信息

Vivian L. Smith Department of Neurosurgery, McGovern Medical School, University of Texas Health Science Center at Houston, 6431 Fannin St, Houston, TX, 77030, USA.

Barrow Brain Tumor Research Center, Barrow Neurological Institute, 350W. Thomas Rd, Phoenix, AZ, 85013, USA.

出版信息

Sci Rep. 2019 Aug 29;9(1):12587. doi: 10.1038/s41598-019-49028-w.

Abstract

Cerebrospinal fluid (CSF) is produced in the cerebral ventricles and circulates within the subarachnoid space (SAS) of the brain and spinal cord, where it exchanges with interstitial fluid of the parenchyma. The access of CSF to the entire central nervous system (CNS) makes it an attractive medium for drug delivery. However, few intrathecal (IT) therapies have reached the clinic due, in part, to limited distribution and rapid clearance. Given the success of nanoparticle (NP) carriers in prolonging circulation and improving delivery of systemically administered agents, we sought to evaluate the distribution of IT injected NPs within the CNS. We administered fluorescent, 100 nm PEGylated-NPs into the cisterna magna of healthy mice and studied their distribution along the brain and spinal cord. Our data demonstrate that NPs are capable of distributing rapidly through the SAS along the entire neuraxis with reproducible, anatomically defined patterns of delivery. NPs were well retained within the leptomeninges for over 3 weeks, showing preference for ventral surfaces and minimal penetration into the CNS parenchyma. Clearance of NPs occurred across the cribriform plate into the nasal mucosa, with a small fraction of NPs localizing with nerve roots exiting the spinal column. Larger 10 µm particles were also capable of moving through the SAS but did not achieve as widespread distribution. These studies demonstrate the ability of NPs to achieve widespread delivery along the neuraxis and highlight IT administration as a potentially significant route of administration for delivery of nanomedicine to the subarachnoid space.

摘要

脑脊液(CSF)在脑室内产生并在脑和脊髓的蛛网膜下腔(SAS)内循环,在那里与实质的间质液进行交换。CSF 可进入整个中枢神经系统(CNS),使其成为药物递送的有吸引力的介质。然而,由于分布有限和快速清除,很少有鞘内(IT)疗法进入临床。鉴于纳米颗粒(NP)载体在延长循环和改善全身给药的递送方面取得的成功,我们试图评估 IT 注射 NP 在 CNS 内的分布。我们将荧光 100nm 聚乙二醇化 NP 注入健康小鼠的脑脊髓液中,并研究了它们在大脑和脊髓中的分布。我们的数据表明,NP 能够沿着整个神经轴快速通过 SAS 分布,具有可重复的、解剖定义的递药模式。NP 在软脑膜中保留超过 3 周,对腹侧表面有偏好,对 CNS 实质的穿透最小。NP 通过筛板清除到鼻黏膜,一小部分 NP 与离开脊柱的神经根一起定位。更大的 10μm 颗粒也能够穿过 SAS 移动,但不能实现如此广泛的分布。这些研究表明 NP 具有沿着神经轴实现广泛分布的能力,并强调 IT 给药作为将纳米医学递送至蛛网膜下腔的潜在重要途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5fa/6715675/9b264112742d/41598_2019_49028_Fig1_HTML.jpg

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