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Blood–brain barrier transport studies aggregation and molecular dynamics simulation of multiwalled carbon nanotube functionalized with fluorescein isothiocyanate

机译:异硫氰酸荧光素功能化的多壁碳纳米管的血脑屏障转运研究聚集和分子动力学模拟

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摘要

In this study, the ability of a multiwalled carbon nanotube functionalized with fluorescein isothiocyanate (MWCNT–FITC) was assessed as a prospective central nervous system-targeting drug delivery system to permeate the blood–brain barrier. The results indicated that the MWCNT–FITC conjugate is able to penetrate microvascular cerebral endothelial monolayers; its concentrations in the Transwell® system were fully equilibrated after 48 hours. Cell viability test, together with phase-contrast and fluorescence microscopies, did not detect any signs of MWCNT–FITC toxicity on the cerebral endothelial cells. These microscopic techniques also revealed presumably the intracellular localization of fluorescent MWCNT–FITCs apart from their massive nonfluorescent accumulation on the cellular surface due to nanotube lipophilic properties. In addition, the 1,000 ps molecular dynamics simulation in vacuo discovered the phenomenon of carbon nanotube aggregation driven by van der Waals forces via MWCNT–FITC rapid dissociation as an intermediate phase.
机译:在这项研究中,用异硫氰酸荧光素(MWCNT-FITC)功能化的多壁碳纳米管的能力被评估为靶向中枢神经系统的药物递送系统渗透血脑屏障的能力。结果表明,MWCNT-FITC共轭物能够穿透微血管脑内皮细胞单层。 48小时后,其在Transwell ®系统中的浓度完全平衡。细胞活力测试以及相衬和荧光显微镜检查未发现任何MWCNT–FITC对脑内皮细胞毒性的迹象。这些显微镜技术还推测出,由于纳米管亲脂性,荧光MWCNT-FITCs在细胞表面的大量非荧光积累,使其在细胞内定位。此外,在真空中进行的1,000 ps分子动力学模拟发现了通过范德华力通过MWCNT–FITC作为中间相的快速解离作用驱动的碳纳米管聚集现象。

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