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首页> 外文期刊>Drug development and industrial pharmacy >Cytocompatible chitosan-graft-mPEG-based 5-fluorouracil-loaded polymeric nanoparticles for tumor-targeted drug delivery
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Cytocompatible chitosan-graft-mPEG-based 5-fluorouracil-loaded polymeric nanoparticles for tumor-targeted drug delivery

机译:基于细胞偶联的壳聚糖 - 移植物-MPEG的5-氟尿嘧啶加载的聚合物纳米颗粒,用于肿瘤靶向药物递送

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摘要

Biodegradable materials like chitosan (CH) and methoxy polyethylene glycol (mPEG) are widely being used as drug delivery carriers for various therapeutic applications. In this study, copolymer (CH-g-mPEG) of CH and carboxylic acid terminated mPEG was synthesized by carbodiimide-mediated acid amine reaction. The resultant hydrophilic copolymer was characterized by Fourier transform infrared spectroscopy and 1H NMR studies, revealing its relevant functional bands and proton peaks, respectively. Blank polymeric nanoparticles (B-PNPs) and 5-fluorouracil loaded polymeric nanoparticles (5-FU-PNPs) were formulated by ionic gelation method. Furthermore, folic acid functionalized FA-PNPs and FA-5-FU-PNPs were prepared for folate receptor-targeted drug delivery. FA-5-FU-PNPs were characterized by particle size, zeta potential, and in vitro drug release studies, resulting in 197.7 nm, +29.9 mv, and sustained drug release of 88% in 24 h, respectively. Cytotoxicity studies were performed for FA-PNPs and FA-5-FU-PNPs in MCF-7 cell line, which exhibited a cell viability of 80 and 41%, respectively. In vitro internalization studies were carried out for 5-FU-PNPs and FA-5-FU-PNPs which demonstrated increased cellular uptake of FA-5-FU-PNPs by receptor-mediated transport. Significant (p .01) reduction (1.5-fold) of reactive oxygen species (ROS) accumulation was observed in lipopolysaccharides-stimulated RAW264.7 macrophages, revealing its potent antioxidant property. From the obtained results, it is concluded that folic acid functionalization of 5-FU-PNPs is an ideal approach for sustained and targeted drug delivery, thereby influencing better therapeutic effect.
机译:壳聚糖(CH)和甲氧基聚乙二醇(MPEG)等可生物降解的材料广泛用于各种治疗应用的药物递送载体。在该研究中,通过碳二亚胺介导的酸胺反应合成CH和羧酸封端的MPEG的共聚物(CH-G-MPEG)。所得亲水性共聚物的特征在于傅里叶变换红外光谱和1H NMR研究,分别揭示其相关的功能条带和质子峰。空白聚合物纳米颗粒(B-PNPS)和5-氟尿嘧啶负载的聚合物纳米颗粒(5-FU-PNPS)被离子凝胶化方法配制。此外,为叶酸受体靶向药物递送制备叶酸官能化FA-PNP和FA-5-FU-PNP。通过粒度,ζ电位和体外药物释放研究表征FA-5-FU-PNP的特征,导致197.7nm,+ 29.9mV,24小时的持续药物释放88%。在MCF-7细胞系中对FA-PNP和FA-5-FU-PNP进行细胞毒性研究,其分别表现出80和41%的细胞活力。对5-FU-PNPS和FA-5-FU-PNP进行体外内化研究,该研究表明,通过受体介导的运输表明了FA-5-FU-PNP的细胞摄取增加。在脂多糖刺激的Raw264.7巨噬细胞中观察到显着的(p <.01)的反应性氧物质(ROS)积累的显着(1.5倍)。从获得的结果中,得出结论,5-FU-PNPS的叶酸官能化是持续和靶向药物递送的理想方法,从而影响更好的治疗效果。

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