Department of Pharmaceutics, College of Pharmaceutical Science, Soochow University, Suzhou, People's Republic of China.
Nanomedicine. 2012 Oct;8(7):1172-81. doi: 10.1016/j.nano.2012.01.009. Epub 2012 Feb 7.
N-Trimethyl chitosan (TMC) was synthesized and used to prepare lactosyl-norcantharidin TMC nanoparticles (Lac-NCTD-TMC-NPs) using an ionic cross-linkage process. Lac-NCTD-TMC-NPs with an average particle size of 120.6 ± 1.7 nm were obtained, with an entrapment efficiency of 69.29% ± 0.76%, and a drug-loading amount of 9.1% ± 0.07%. The release of Lac-NCTD-TMC-NPs in vitro was investigated through a dialysis method, and its sustained effect was evident. In the human liver cancer cell line HepG2, the half-maximum inhibiting concentration (IC(50)) of TMC-encapsulated Lac-NCTD (Lac-NCTD-TMC-NPs) was only 24.2% that of free Lac-NCTD at 24 hours. Lac-NCTD induced HepG2 cell death by triggering apoptosis. In vitro cellular uptake and in vivo NIR fluorescence real-time imaging both indicated a high targeting efficacy. In comparison with Lac-NCTD and Lac-NCTD chitosan NPs (Lac-NCTD-CS-NPs ), Lac-NCTD-TMC-NPs had the strongest antitumor activity on the murine hepatocarcinoma 22 subcutaneous model.
In this article the preparation of N-trimethyl chitosan-encapsulated lactosyl-norcantharidin nanoparticles is described that displayed efficient targeting and sustained release in a hepatocarcinoma SC murine model.
合成了 N-三甲基壳聚糖(TMC),并使用离子交联法将其制备成乳糖基去甲斑蝥素 TMC 纳米粒(Lac-NCTD-TMC-NPs)。获得平均粒径为 120.6±1.7nm、包封率为 69.29%±0.76%、载药量为 9.1%±0.07%的 Lac-NCTD-TMC-NPs。通过透析法研究了 Lac-NCTD-TMC-NPs 的体外释放情况,其具有明显的缓释效果。在人肝癌细胞系 HepG2 中,TMC 包裹的 Lac-NCTD(Lac-NCTD-TMC-NPs)在 24 小时时的半最大抑制浓度(IC(50))仅为游离 Lac-NCTD 的 24.2%。Lac-NCTD 通过触发细胞凋亡诱导 HepG2 细胞死亡。体外细胞摄取和体内近红外荧光实时成像均表明具有高靶向效率。与 Lac-NCTD 和 Lac-NCTD 壳聚糖 NPs(Lac-NCTD-CS-NPs)相比,Lac-NCTD-TMC-NPs 在小鼠肝癌 22 皮下模型中具有最强的抗肿瘤活性。
本文描述了 N-三甲基壳聚糖包封的乳糖基去甲斑蝥素纳米粒的制备方法,在肝癌 SC 小鼠模型中显示出有效的靶向和持续释放。