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5-Fluorouracil Encapsulated Chitosan-Cellulose Fiber Bionanocomposites: Synthesis Characterization and In Vitro Analysis towards Colorectal Cancer Cells

机译:5-氟尿嘧啶包封壳聚糖 - 纤维素纤维脱硫复合材料:对结直肠癌细胞的合成表征和体外分析

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摘要

Cellulose and chitosan with remarkable biocompatibility and sophisticated physiochemical characteristics can be a new dawn to the advanced drug nano-carriers in cancer treatment. This study aims to synthesize layer-by-layer bionanocomposites from chitosan and rice straw cellulose encapsulated 5-Fluorouracil (CS-CF/5FU BNCs) using the ionic gelation method and the sodium tripolyphosphate (TPP) cross-linker. Data from X-ray and Fourier-transform infrared spectroscopy showed successful preparation of CS-CF/5FU BNCs. Based on images of scanning electron microscopy, 48.73 ± 1.52 nm was estimated for an average size of the bionanocomposites as spherical chitosan nanoparticles mostly coated rod-shaped cellulose reinforcement. 5-Fluorouracil indicated an increase in thermal stability after its encapsulation in the bionanocomposites. The drug encapsulation efficiency was found to be 86 ± 2.75%. CS-CF/5FU BNCs triggered higher drug release in a media simulating the colorectal fluid with pH 7.4 (76.82 ± 1.29%) than the gastric fluid with pH 1.2 (42.37 ± 0.43%). In in vitro cytotoxicity assays, cellulose fibers, chitosan nanoparticles and the bionanocomposites indicated biocompatibility towards CCD112 normal cells. Most promisingly, CS-CF/5FU BNCs at 250 µg/mL concentration eliminated 56.42 ± 0.41% of HCT116 cancer cells and only 8.16 ± 2.11% of CCD112 normal cells. Therefore, this study demonstrates that CS-CF/5FU BNCs can be considered as an eco-friendly and innovative nanodrug candidate for potential colorectal cancer treatment.
机译:纤维素和壳聚糖具有显着的生物相容性和复杂的生理化学特征可以是癌症治疗晚期药物纳米载体的新曙光。该研究旨在使用离子凝胶化方法和三聚磷酸钠(TPP)交联剂来合成从壳聚糖和稻草纤维素包封的5-氟尿嘧啶(CS-CF / 5FU BNC)的层逐层脱硫复合物。来自X射线和傅立叶变换红外光谱的数据显示CS-CF / 5FU BNC的成功制备。基于扫描电子显微镜的图像,估计了48.73±1.52nm的BionAnoC复合物的平均尺寸,如球形壳聚糖纳米颗粒大多涂层纤维素增强。 5-氟尿嘧啶表明其在脱硫复合材料中封装后的热稳定性增加。发现药物包封效率为86±2.75%。 CS-CF / 5FU BNC在模拟与pH 1.2的胃液(42.37±0.43%)的胃液模拟培养基中的培养基中的培养基中的培养基更高的药物释放(42.37±0.43%)。在体外细胞毒性测定中,纤维素纤维,壳聚糖纳米粒子和脱硫复合材料表明朝向CCD112正常细胞的生物相容性。最有为地,在250微克/毫升浓度CS-CF / 5FU的BNC消除HCT116癌细胞56.42±0.41%和8.16只有±2.11%CCD112正常细胞。因此,本研究表明,CS-CF / 5FU BNC可以被认为是一种环保和创新的纳米树脂候选者,用于潜在结直肠癌治疗。

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