体内分布
碳纳米管
纳米颗粒
纳米技术
生物物理学
外渗
材料科学
单核细胞
癌细胞
荧光寿命成像显微镜
免疫系统
细胞
磁共振成像
化学
体外
荧光
癌症
医学
病理
免疫学
生物化学
生物
放射科
量子力学
内科学
物理
作者
Bryan Ronain Smith,Eliver Ghosn,Harikrishna Rallapalli,Jennifer A. Prescher,Timothy Larson,Leonore A. Herzenberg,Sanjiv S. Gambhir
标识
DOI:10.1038/nnano.2014.62
摘要
In cancer imaging, nanoparticle biodistribution is typically visualized in living subjects using ‘bulk’ imaging modalities such as magnetic resonance imaging, computerized tomography and whole-body fluorescence. Accordingly, nanoparticle influx is observed only macroscopically, and the mechanisms by which they target cancer remain elusive. Nanoparticles are assumed to accumulate via several targeting mechanisms, particularly extravasation (leakage into tumour). Here, we show that, in addition to conventional nanoparticle-uptake mechanisms, single-walled carbon nanotubes are almost exclusively taken up by a single immune cell subset, Ly-6Chi monocytes (almost 100% uptake in Ly-6Chi monocytes, below 3% in all other circulating cells), and delivered to the tumour in mice. We also demonstrate that a targeting ligand (RGD) conjugated to nanotubes significantly enhances the number of single-walled carbon nanotube-loaded monocytes reaching the tumour (P < 0.001, day 7 post-injection). The remarkable selectivity of this tumour-targeting mechanism demonstrates an advanced immune-based delivery strategy for enhancing specific tumour delivery with substantial penetration. Single-walled carbon nanotubes are taken up by monocytes in the blood, demonstrating alternative and enhanced tumour delivery.
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