Department of Biochemistry and Cell Biology, Cell and Matrix Research Institute, School of Medicine, Kyungpook National University, 101 Dongin 2Ga, Jung-Gu, Daegu 700-422, South Korea.
J Control Release. 2012 Feb 10;157(3):493-9. doi: 10.1016/j.jconrel.2011.09.070. Epub 2011 Sep 16.
Macromolecular nanoparticles can extravasate and accumulate within tumor tissues via the passive targeting system, reflecting enhanced permeability and the retention effect. However, the unsatisfactory tumor therapeutic efficacy of the passive-targeting system, attributable to the retention of extravasated nanoparticles in the vicinity of tumor vessels, argues that a new system that facilitates intracellular delivery of nanoparticles within tumors is needed. Here, we developed hydrophobically modified glycol chitosan (HGC) nanoparticles conjugated with interleukin-4 receptor (IL-4R) binding peptides, termed I4R, and tested them in mice bearing IL-4R-positive tumors. These HGC-I4R nanoparticles exhibited enhanced IL-4R-dependent cellular uptake in tumors compared to nonconjugated nanoparticles, leading to better therapeutic and imaging efficacy. We conclude that I4R facilitates and enhances cellular uptake of nanoparticles in tumor tissues. This study suggests that the intracelluar uptake of nanoparticles in tumors is an essential factor to consider in designing nanoparticles for tumor-targeted drug delivery and imaging.
高分子纳米粒可以通过被动靶向系统渗出并在肿瘤组织中积累,这反映了增强的通透性和滞留效应。然而,由于渗出的纳米粒在肿瘤血管附近的保留,被动靶向系统的肿瘤治疗效果并不理想,这表明需要开发一种新的系统来促进纳米粒在肿瘤内的细胞内递。在这里,我们开发了疏水性修饰的壳聚糖(HGC)纳米粒,其与白细胞介素 4 受体(IL-4R)结合肽缀合,称为 I4R,并在携带 IL-4R 阳性肿瘤的小鼠中进行了测试。与非缀合纳米粒相比,这些 HGC-I4R 纳米粒在肿瘤中表现出增强的 IL-4R 依赖性细胞摄取,从而实现更好的治疗和成像效果。我们得出结论,I4R 促进并增强了纳米粒在肿瘤组织中的细胞摄取。这项研究表明,在设计用于肿瘤靶向药物输送和成像的纳米粒时,考虑纳米粒在肿瘤中的细胞内摄取是一个重要因素。