Department of Pharmaceutical Sciences and Technology, Institute of Chemical Technology, N.P Marg, Matunga, Mumbai 400019, India.
J Biomed Nanotechnol. 2009 Oct;5(5):445-55. doi: 10.1166/jbn.2009.1038.
The investigation was aimed at designing pH-sensitive, polymeric nanoparticles of curcumin, a natural anti-cancer agent, for the treatment of colon cancer. The objective was to enhance the bioavailability of curcumin, simultaneously reducing the required dose through selective targeting to colon. Eudragit S100 was chosen to aid targeting since the polymer dissolves at colonic pH to result in selective colonic release of the entrapped drug. Solvent emulsion-evaporation technique was employed to formulate the nanoparticles. Various process parameters were optimized and the optimized formulation was evaluated for particle size distribution and encapsulation efficiency before subjecting to freeze-drying. The freeze dried product was characterized for particle size, drug content, DSC studies, particle morphology. Anti-cancer potential of the formulation was demonstrated by MTT assay in HT-29 cell line. Nanometric, homogeneous, spherical particles were obtained with encapsulation efficiency of 72%. Freeze-dried nanoparticles exhibited a negative surface charge, drug content of > 99% and presence of drug in amorphous form which may result in possible enhanced absorption. MTT assay demonstrated almost double inhibition of the cancerous cells by nanoparticles, as compared to curcumin alone, at the concentrations tested. Enhanced action may be attributed to size influenced improved cellular uptake, and may result in reduction of overall dose requirement. Results indicate the potential for in vivo studies to establish the clinical application of the formulation.
本研究旨在设计一种基于姜黄素(天然抗癌剂)的 pH 敏感型聚合物纳米粒,用于治疗结肠癌。目的是通过选择性靶向结肠来提高姜黄素的生物利用度,同时降低所需剂量。选择 Eudragit S100 来辅助靶向,因为该聚合物在结肠 pH 下溶解,导致包封药物在结肠中的选择性释放。采用溶剂乳化-蒸发技术来制备纳米粒。优化了各种工艺参数,对优化的配方进行了粒径分布和包封效率的评价,然后再进行冷冻干燥。对冷冻干燥产品进行了粒径、药物含量、DSC 研究、颗粒形态的表征。通过 HT-29 细胞系的 MTT 测定法来证明制剂的抗癌潜力。得到了纳米级、均匀、球形的颗粒,包封效率为 72%。冷冻干燥纳米粒具有负表面电荷、>99%的药物含量和无定形药物的存在,这可能导致吸收增强。MTT 测定法表明,与单独使用姜黄素相比,在测试浓度下,纳米粒对癌细胞的抑制作用几乎增加了一倍。增强作用可能归因于尺寸影响的改善细胞摄取,并且可能导致总体剂量需求的减少。结果表明,该制剂具有进行体内研究以确立临床应用的潜力。