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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Doxorubicin synergism and resistance reversal in human neuroblastoma BE(2)C cell lines: An in vitro study with dextran-catechin nanohybrids
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Doxorubicin synergism and resistance reversal in human neuroblastoma BE(2)C cell lines: An in vitro study with dextran-catechin nanohybrids

机译:人类神经母细胞瘤的多柔比星协同作用和抗性逆转(2)C细胞系:用葡聚糖-CaCeChin纳米冬次冬次进行体外研究

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Graphical abstract Display Omitted Abstract Hybrid nanocarrier consisting in nanographene oxide coated by a dextran-catechin conjugate was proposed in the efforts to find more efficient Neuroblastoma treatment with Doxorubicin chemotherapy. The dextran-catechin conjugate was prepared by immobilized laccase catalysis and its peculiar reducing ability exploited for the synthesis of the hybrid carrier. Raman spectra and DSC thermograms were recorded to check the physicochemical properties of the nanohybrid, while DLS measurements, SEM, TEM, and AFM microscopy allowed the determination of its morphological and dimensional features. A pH dependent Doxorubicin release was observed, with 30 and 75% doxorubicin released at pH 7.4 and 5.0, respectively. Viability assays on parental BE(2)C and resistant BE(2)C/ADR cell lines proved that the high anticancer activity of dextran-catechin conjugate (IC 50 19.9?±?0.6 and 18.4?±?0.7?μg?mL ?1 ) was retained upon formation of the nanohybrids (IC 50 24.8?±?0.7 and 22.9?±?1?μg?mL ?1 ). Combination therapy showed a synergistic activity between doxorubicin and either bioconjugate or nanocarrier on BE(2)C. More interestingly, on BE(2)C/ADR we recorded both the reversion of doxorubicin resistance mechanism as a consequence of decreased P-gp expression (Western Blot analysis) and a synergistic effect on cell viability, confirming the proposed nanohybrid as a very promising starting point for further research in neuroblastoma treatment.
机译:建议在努力寻找更有效的神经母细胞瘤治疗,省略了由葡聚糖 - 儿茶素缀合物组成的纳米氧化物氧化物组成的纳米氧化物氧化物组成的抽象杂交纳米载波。通过固定的漆酶催化制备葡聚糖-CaCechin缀合物及其特殊的降低能力,用于合成杂化载体。记录拉曼光谱和DSC热分析图以检查纳米冬小麦的物理化学性质,而DLS测量,SEM,TEM和AFM显微镜允许确定其形态和尺寸特征。观察到pH依赖性多柔比星释放,分别在pH7.4和5.0处释放30和75%的多柔比星。父母的生存能测定是(2)C和抗性的(2)C / ADR细胞系证明了葡聚糖-Cocechin缀合物的高抗癌活性(IC 50 19.9?±0.6和18.4?±0.7ΩΩ×ml? 1)在形成纳米冬小时(IC 50 24.8α±0.7和22.9?±1Ω·μg≤ml≤1)。联合治疗在DOXORUBICIN和BE(2)C上的生物缀合物或纳米载体之间表现出协同活性。更有趣的是,在BE(2)C / ADR上,我们记录了多柔比蛋白抗性机制的逆转,因为P-GP表达(Western印迹分析)和对细胞活力的协同效应,确认提出的纳米冬小时为非常有前途神经母细胞瘤治疗进一步研究的起点。

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