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Development and Evaluation of Multifunctional Poly(Lactic-co-glycolic acid) Nanoparticles Embedded in Carboxymethyl β-Glucan Porous Microcapsules as a Novel Drug Delivery System for Gefitinib

机译:嵌入羧甲基β-葡聚糖多孔微胶囊的多功能聚乳酸-乙醇酸纳米颗粒的开发和评价作为吉非替尼的新型药物递送系统

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摘要

In this study, a new kind of folic acid (FA)-conjugated and chitosan (CS)-coated poloxamer 407 (P407)/poly(lactic-co-glycolic acid) (PLGA) nanoparticles (NPs), FCPP NPs, were prepared, and further micro-encapsulated by carboxymethyl β-glucan microcapsules (MCs) to produce a multifunctional system of NPs embedded in MCs (NEMs) for potential lung tumor-targeted delivery of gefitinib. The prepared gefitinib-loaded FCPP (GFB/FCPP) NPs showed a hydrodynamic diameter of 255.4 ± 14.5 nm and existed in an amorphous state. After encapsulation in carboxymethyl β-glucan MCs, the GFB/FCPP-based NEMs (GFB/FCPP-NEMs) also exhibited a spherical morphology with a median diameter (d50) of around 2.2 μm. After hydration, GFB/FCPP- NEMs can quickly dissociate into its primary particles, GFB/FCPP NPs. Our in vitro drug release study revealed that these GFB/FCPP-NEMs exhibited a pH-responsive prolonged release property. In addition, the cellular uptake study demonstrated that FCPP-NEMs serve as an efficient carrier to enhance the delivery of the entrapped drug into the target lung tumor cells. Moreover, the GFB/FCPP-NEMs induced a superior cytotoxic effect compared with free gefitinib. The inhibitory concentration to achieve 50% cell death (IC50) of GFB/FCPP-NEMs in A549 cells was 3.82-fold lower than that of free gefitinib. According to these results, FCPP-NEMs hold a great potential as a multifunctional and high-performance biomaterial for lung tumor targeting delivery, pH-responsive sustained release, facilitated cellular uptake, and enhanced antitumor effect of antitumor drugs, like gefitinib.
机译:在这项研究中,制备了一种新型的叶酸(FA)共轭和壳聚糖(CS)涂层的泊洛沙姆407(P407)/聚乳酸-乙醇酸(PLGA)纳米颗粒(NPs),FCPP NPs ,并进一步用羧甲基β-葡聚糖微胶囊(MCs)微囊化,以生产嵌入在MCs(NEMs)中的多功能NPs系统,以潜在地靶向吉非替尼治疗肺部肿瘤。制备的吉非替尼负载的FCPP(GFB / FCPP)NPs的流体动力学直径为255.4±14.5 nm,并且以非晶态存在。封装在羧甲基β-葡聚糖MC中后,基于GFB / FCPP的NEM(GFB / FCPP-NEM)也显示出球形形态,中值直径(d50)约为2.2μm。水合后,GFB / FCPP-NEM可以迅速分解成其主要颗粒GFB / FCPP NP。我们的体外药物释放研究表明,这些GFB / FCPP-NEM表现出pH响应的延长释放特性。此外,细胞摄取研究表明,FCPP-NEMs可作为有效载体,增强包埋的药物向靶肺肿瘤细胞的递送。此外,与游离吉非替尼相比,GFB / FCPP-NEMs诱导了优异的细胞毒性作用。实现A549细胞中GFB / FCPP-NEM 50%细胞死亡(IC50)的抑制浓度比游离吉非替尼低3.82倍。根据这些结果,FCPP-NEMs作为用于肺癌靶向递送,pH响应缓释,促进细胞摄取以及增强抗肿瘤药物(如吉非替尼)的多功能的高性能生物材料,具有巨大的潜力。

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