Lee So Jin, Park Kyeongsoon, Oh Yu-Kyoung, Kwon Seung-Hae, Her Songwook, Kim In-San, Choi Kuiwon, Lee Sung Jun, Kim Hoyoung, Lee Se Geun, Kim Kwangmeyung, Kwon Ick Chan
Biomedical Research Center, Korea Institute of Science and Technology, Seongbuk-gu, Seoul, South Korea.
Biomaterials. 2009 May;30(15):2929-39. doi: 10.1016/j.biomaterials.2009.01.058. Epub 2009 Feb 28.
We reported the development of new nanoscale drug carriers, chitosan-based nanoparticles (CNPs) that can be used for photodynamic therapy. These carriers could encapsulate a photosensitizer, protophorphyrin IX (PpIX), and deliver it to tumor tissue. We already reported that CNPs presented the enhanced tumor target specificity in cancer therapy and imbibed various water insoluble anticancer agents into the hydrophobic multicores of nanoscale particles. In this study, we prepared photosensitizer-encapsulated CNPs by self-assembling amphiphilic glycol chitosan-5beta-cholanic acid conjugates in an aqueous environment and then encapsulating the water-insoluble photosensitizer (PpIX), with high drug-loading efficiency (>90%) by using a dialysis method. Freshly prepared PpIX-encapsulated CNPs (PpIX-CNPs) had an average diameter of 290nm and were stable in aqueous solutions for 1 month. As nanoscale drug carriers, PpIX-CNPs exhibited a sustained release profile in vitro and were non-toxic to tumor cells in the dark. In a cell culture system, we observed rapid cellular uptake of the PpIX-CNPs and the released PpIX from CNPs became highly phototoxic upon visible irradiation. In SCC7 tumor-bearing mice, PpIX-CNPs exhibited enhanced tumor specificity and increased therapeutic efficacy compared to free PpIX. Taken together, our results indicate that PpIX-CNPs have potential as an effective drug delivery system for clinical photodynamic therapy.
我们报道了新型纳米级药物载体——壳聚糖基纳米颗粒(CNPs)的研发,其可用于光动力疗法。这些载体能够包裹一种光敏剂——原卟啉IX(PpIX),并将其递送至肿瘤组织。我们之前已经报道过,CNPs在癌症治疗中呈现出增强的肿瘤靶向特异性,并且能将各种水不溶性抗癌剂吸收到纳米级颗粒的疏水多核中。在本研究中,我们通过在水环境中自组装两亲性乙二醇壳聚糖 - 5β - 胆酸共轭物,然后使用透析法包裹水不溶性光敏剂(PpIX),制备出了载有光敏剂的CNPs,其药物负载效率高(>90%)。新制备的载有PpIX的CNPs(PpIX - CNPs)平均直径为290nm,在水溶液中稳定1个月。作为纳米级药物载体,PpIX - CNPs在体外呈现出缓释特性,并且在黑暗中对肿瘤细胞无毒。在细胞培养系统中,我们观察到PpIX - CNPs能被细胞快速摄取,并且从CNPs释放出的PpIX在可见光照射下具有高度光毒性。在荷SCC7肿瘤的小鼠中,与游离PpIX相比,PpIX - CNPs表现出增强的肿瘤特异性和更高的治疗效果。综上所述,我们的结果表明PpIX - CNPs有潜力作为临床光动力疗法的有效药物递送系统。