Polo Scientifico e Tecnologico, IRCCS Multimedica, Milano, Italy.
Nanomedicine. 2010 Apr;6(2):277-88. doi: 10.1016/j.nano.2009.08.001. Epub 2009 Aug 20.
Single-wall carbon nanotubes (SWCNTs) could be promising delivery vehicles for cancer therapy. These carriers are generally introduced intravenously, however, little is known of their interactions with endothelial cells, the cells lining vessels and mediating clearance of nanoparticles. Here we show that SWCNTs of 1 to 5 microm in length, both "pristine" and functionalized by oxidation, had limited toxicity for endothelial cells in vitro as determined by growth, migration morphogenesis, and survival assays. Endothelial cells transiently took up SWCNTs, and several lines of data indicated that they were associated with an enhanced acidic vesicle compartment within the endothelial cells. Our findings of SWCNT interactions with endothelial cells suggest these may be optimal vehicles for targeting the vasculature and potential carriers of anti-angiogenic drugs. The implications on their biological activity must be taken into account when considering the use of these nanoparticles for therapeutic delivery of drugs.
Interactions of single walled carbon nanotubes (SWCNTs) with endothelial cells following IV administration remains unclear. Functionalized and naïve SWCNTs of 1-5 mm in length had limited toxicity to endothelial cells in vitro. Endothelial cells transiently took up SWCNTs and were associated with an enhanced acidic vesicle compartment within the cells. These findings suggest that SWCNTs may be promising vehicles for targeting the vasculature and potential carriers of anti-angiogenic drugs.
单壁碳纳米管(SWCNTs)可能是癌症治疗有前途的药物载体。这些载体通常通过静脉内给药,但是,对于它们与内皮细胞(衬在血管上并介导纳米颗粒清除的细胞)的相互作用知之甚少。在这里,我们发现 1 到 5 微米长的“原始”和氧化功能化的 SWCNTs 在体外对内皮细胞的毒性有限,这是通过生长,迁移形态发生和存活测定确定的。内皮细胞短暂地摄取了 SWCNTs,并且有几条数据表明它们与内皮细胞内增强的酸性囊泡区室有关。我们对 SWCNT 与内皮细胞相互作用的发现表明,它们可能是靶向血管的最佳载体,也是抗血管生成药物的潜在载体。在考虑将这些纳米颗粒用于药物治疗性递送时,必须考虑到其生物活性的影响。
静脉内给药后,单壁碳纳米管(SWCNTs)与内皮细胞的相互作用仍不清楚。功能化和原始的 1-5 毫米长的 SWCNTs 在体外对内皮细胞的毒性有限。内皮细胞短暂地摄取了 SWCNTs,并与细胞内增强的酸性囊泡区室有关。这些发现表明,SWCNTs 可能是靶向血管的有前途的载体,也是抗血管生成药物的潜在载体。