Yang Kuikun, Gao Tingting, Bao Zixian, Su Jing, Chen Xiguang
College of Marine Life Science, Ocean University of China, 5# Yushan Road, Qingdao, China.
J Mater Chem B. 2013 Dec 14;1(46):6442-6448. doi: 10.1039/c3tb20772b. Epub 2013 Oct 25.
In the present research, a novel thermal sensitive amphiphilic polymer was synthesized by modification of chitosan with hydrophilic hydroxybutyl groups and hydrophobic deoxycholic acid moieties. By finetuning the hydrophobic/hydrophilic balance of deoxycholic acid decorated hydroxybutyl chitosan (DAHBC), the lower critical solution temperature (LCST) of this novel polymer could be adjusted to 38.2 °C, which is an appropriate temperature in hyperthermia therapy. The polymer could self-assemble into approximately spherical nanoparticles in aqueous solutions with an average diameter of 399.6 nm and a zeta potential value of -33.8 mV. The controlled release properties of the thermosensitive drug delivery system were evaluated by using doxorubicin (DOX) as a model drug. Compared with the drug release behavior at a temperature below the LCST, the release of doxorubicin was significantly accelerated when the nanoparticles were in an environmental temperature above the LCST of the polymer. According to the results of MTT assays, blank DAHBC nanoparticles showed no significant toxicity on mouse embryo fibroblasts at a concentration as high as 1 mg ml, and DOX-loaded nanocarriers exhibited an improved drug uptake by MCF-7 cells with the incubation temperature rising from 37 °C to 43 °C, which indicated that thermoresponsive and biocompatible DAHBC nanoparticles might have practical applications as drug carriers in combined hyperthermia and chemotherapy.
在本研究中,通过用亲水性羟丁基和疏水性脱氧胆酸部分修饰壳聚糖,合成了一种新型热敏两亲聚合物。通过微调脱氧胆酸修饰的羟丁基壳聚糖(DAHBC)的疏水/亲水平衡,可将这种新型聚合物的低临界溶液温度(LCST)调节至38.2℃,这是热疗中的适宜温度。该聚合物在水溶液中可自组装成近似球形的纳米颗粒,平均直径为399.6nm,zeta电位值为-33.8mV。以阿霉素(DOX)为模型药物评估了热敏药物递送系统的控释性能。与低于LCST温度时的药物释放行为相比,当纳米颗粒处于高于聚合物LCST的环境温度时,阿霉素的释放显著加速。根据MTT试验结果,空白DAHBC纳米颗粒在浓度高达1mg/ml时对小鼠胚胎成纤维细胞无明显毒性,并且随着孵育温度从37℃升高到43℃,载DOX的纳米载体对MCF-7细胞的药物摄取有所改善,这表明具有热响应性和生物相容性的DAHBC纳米颗粒可能作为热疗与化疗联合应用中的药物载体具有实际应用价值。