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Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method

机译:使用两级因子设计方法优化寡聚负载的叶酸偶联的壳聚糖纳米粒的制备工艺,以肿瘤靶向药物递送系统

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摘要

Oligomycin-A (Oli-A), an anticancer drug, was loaded to the folate (FA)-conjugated chitosan as a tumor-targeted drug delivery system for the purpose of overcoming the nonspecific targeting characteristics and the hydrophobicity of the compound. The two-level factorial design (2-LFD) was applied to modeling the preparation process, which was composed of five independent variables, namely FA-conjugated chitosan (FA-CS) concentration, Oli-A concentration, sodium tripolyphosphate (TPP) concentration, the mass ratio of FA-CS to TPP, and crosslinking time. The mean particle size (MPS) and the drug loading rate (DLR) of the resulting Oli-loaded FA-CS nanoparticles (FA-Oli-CSNPs) were used as response variables. The interactive effects of the five independent variables on the response variables were studied. The characteristics of the nanoparticles, such as amount of FA conjugation, drug entrapment rate (DER), DLR, surface morphology, and release kinetics properties in vitro were investigated. The FA-Oli-CSNPs with MPS of 182.6 nm, DER of 17.3%, DLR of 58.5%, and zeta potential (ZP) of 24.6 mV were obtained under optimum conditions. The amount of FA conjugation was 45.9 mg/g chitosan. The FA-Oli-CSNPs showed sustained-release characteristics for 576 hours in vitro. The results indicated that FA-Oli-CSNPs obtained as a targeted drug delivery system could be effective in the therapy of leukemia in the future.
机译:为了克服非特异性靶向特性和化合物的疏水性,将抗癌药物寡霉素-A(Oli-A)作为肿瘤靶向的药物递送系统加载到叶酸(FA)偶联的壳聚糖上。采用二级因子设计(2-LFD)对制备过程进行建模,该过程由五个独立变量组成,即FA共轭壳聚糖(FA-CS)浓度,Oli-A浓度,三聚磷酸钠(TPP)浓度,FA-CS与TPP的质量比以及交联时间。所得的载有Oli的FA-CS纳米颗粒(FA-Oli-CSNPs)的平均粒径(MPS)和载药率(DLR)用作响应变量。研究了五个独立变量对响应变量的交互作用。研究了纳米粒子的特征,如FA共轭量,药物包封率(DER),DLR,表面形态和体外释放动力学性质。在最佳条件下,获得了MPS为182.6 nm,DER为17.3%,DLR为58.5%和zeta电位(ZP)为24.6 mV的FA-Oli-CSNP。 FA结合量为45.9 mg / g壳聚糖。 FA-Oli-CSNPs在体外显示了576小时的持续释放特性。结果表明,FA-Oli-CSNPs作为靶向药物递送系统可能在将来的白血病治疗中有效。

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