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Curcumin-loaded Chitosan-Agarose-Montmorillonite Hydrogel Nanocomposite for the Treatment of Breast Cancer

机译:用于治疗乳腺癌的姜黄素壳聚糖 - 琼脂糖蛋白水凝胶纳米复合材料

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Cancer has been one of the leading causes of death worldwide. Chemotherapy is a proposed therapeutic in recent years; however, its efficiency is restricted due to multiple drug resistance (MDR), toxicity on normal cells, and poor physicochemical properties. The use of natural compounds with less cytotoxicity on normal cells is a promising approach to cancer treatment. Curcumin (CUR) is a plant flavonol from the flavonoid group of polyphenols with anti-tumor activity. Nonetheless, low solubility, poor permeability, and short biological half-life hamper the use of curcumin as an anti-cancer drug. The principal aim of this study was to augment CUR loading as a hydrophobic drug and prolong the release time. Curcumin was loaded into a hydrogel nanocomposite of chitosan (CS)-agarose (AG)-montmorillonite (MMT) to attain this goal. The use of MMT nanoparticles in the CS-AG hydrogel improved the loading efficiency from 49% to 62%. The average diameter of the nanocomposite particles in the FESEM images was within the range of 30 nm. Zeta potential of the hydrogel nanocomposites was 47mV, which demonstrates the good stability of the hydrogel nanocomposites. The inclusion of all components in the nanocomposite was proved through the presence of all of the characteristic peaks of the components in the FTIR spectrum. The drug release profile showed the pH-responsive behavior of CS-AG-MMT hydrogel nanocomposites with extended-release over 96 h. The cytotoxicity of fabricated nanocomposites on the MCF-7 cell line was evaluated. Curcumin-loaded CS-AG-MMT showed significant cytotoxicity compared to the control group (p<; 0.001) and curcumin as a free drug (p<; 0.05). The developed nanostructure is a promising vehicle with the potential to enhance curcumin loading and achieve sustained release of curcumin with significant cytotoxicity on MCF-7 cells.
机译:癌症一直是全世界死亡原因之一。近年来化疗是一种拟议的治疗性;然而,由于多种耐药性(MDR),正常细胞的毒性和差的物理化学性质,其效率受到限制。在正常细胞上使用具有较小细胞毒性的天然化合物是癌症治疗的有希望的方法。姜黄素(CUR)是来自具有抗肿瘤活性的黄酮组的植物黄酮醇。尽管如此,低溶解度,渗透率差,生物半衰期短的悬浮液妨碍姜黄素作为抗癌药物。本研究的主要目的是增加Cur作为疏水药物,延长释放时间。将姜黄素装入壳聚糖(Cs) - 造果(Ag)-Montmorillonite(MMT)的水凝胶纳米复合物中以获得该目标。在CS-Ag水凝胶中使用MMT纳米粒子将加载效率从49%提高至62%。纳米复合颗粒在FESEM图像中的平均直径在30nm的范围内。水凝胶纳米复合材料的Zeta电位为47mV,表明水凝胶纳米复合材料的良好稳定性。通过在FTIR光谱中存在所有组分的特征峰来证明纳米复合材料中的所有组分。药物释放曲线显示CS-Ag-MMT水凝胶纳米复合材料的pH-响应性,延长释放超过96小时。评价了MCF-7细胞系上制造的纳米复合材料的细胞毒性。与对照组(P <0.001)和游离药物相比,姜黄素负载的CS-Ag-MMT显示出显着的细胞毒性(P <; 0.001)作为游离药物(P <; 0.05)。开发的纳米结构是一种有前途的载体,其具有增强姜黄素负载的潜力,并在MCF-7细胞上具有显着细胞毒性的悬蛋白持续释放。

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