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脑皮层立体定向给药后功能化碳纳米管的体内降解。

In vivo degradation of functionalized carbon nanotubes after stereotactic administration in the brain cortex.

机构信息

Nanomedicine Laboratory, Centre for Drug Delivery Research, UCL School of Pharmacy, University College London, UK.

出版信息

Nanomedicine (Lond). 2012 Oct;7(10):1485-94. doi: 10.2217/nnm.12.33. Epub 2012 Jun 19.

Abstract

AIM

Carbon nanotubes (CNTs) are increasingly being utilized in neurological applications as components of implants, electrodes or as delivery vehicles. Any application that involves implantation or injection of CNTs into the CNS needs to address the distribution and fate of the material following interaction and residence within the neuronal tissue. Here we report a preliminary study investigating the fate and structural integrity of amino-functionalized CNTs following stereotactic administration in the brain cortex.

MATERIALS & METHODS: The CNTs investigated had previously shown the capacity to internalize in various cell types of the CNS. An aqueous suspension of multiwalled CNT-NH(3) (+) was stereotactically injected into the mouse brain cortex. Their interaction with neural cells and consequent effects on the CNT structural integrity was investigated by optical, transmission electron microscopy and Raman spectroscopy of brain tissue sections for a period between 2 and 14 days post cortical administration.

RESULTS & DISCUSSION: The occurrence of severe nanotube structure deformation leading to partial degradation of the chemically functionalized-multiwalled CNT-NH(3) (+) in vivo following internalization within microglia was revealed even at early time points. Such initial observations of CNT degradation within the brain tissue render further systematic investigations using high-resolution tools imperative.

摘要

目的

碳纳米管(CNTs)作为植入物的组成部分、电极或输送载体,越来越多地应用于神经科学领域。任何涉及将 CNT 植入或注射到中枢神经系统(CNS)的应用都需要解决材料在与神经元组织相互作用和驻留后的分布和命运问题。在这里,我们报告了一项初步研究,该研究调查了在大脑皮层中进行立体定向给药后,氨基功能化 CNT 的命运和结构完整性。

材料与方法

所研究的 CNT 先前已显示出能够内化到中枢神经系统的各种细胞类型中。将多壁 CNT-NH(3)(+)的水性悬浮液通过立体定向注射到小鼠大脑皮层中。通过对脑组织切片进行光学、透射电子显微镜和拉曼光谱分析,研究了 CNT 与神经细胞的相互作用及其对 CNT 结构完整性的后续影响,研究时间为皮层给药后 2 至 14 天。

结果与讨论

即使在早期,也揭示了在被内化到小胶质细胞内后,CNT 结构发生严重变形,导致化学功能化的多壁 CNT-NH(3)(+)部分降解。在脑组织内观察到 CNT 降解的这些初步发现,使得需要使用高分辨率工具进行进一步的系统研究。

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