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Develop a novel superparamagnetic nano-carrier for drug delivery to brain glioma

机译:开发一种新型超顺磁性纳米载体,用于将药物输送到脑胶质瘤

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Magnetic drug carrier has been employed in drug delivery for over 30 years. Modern nanotechnology has improved its efficiency dramatically by decreasing its diameter into nano-scale. It may help chemotherapeutic agents penetrate BBB and raise local drug concentration in brain, which is the ideal model for glioma treatment. In our study, magnetic carrier was fabricated with octadecyl quaternized caroxymethyl chitosan (OQCMC), hydrophobic Fe3O4 ferrofluid and cholesterol, which showed a uniform diameter of 20?nm under transmission electronic microscopy and superparamagnetic character in vibration sample magnetical measurement system. To investigate the efficacy of drug delivery, paclitaxel was used as loaded drug and analyzed by the HPLC. Results showed that magnetic carrier released drugs for more than 20?d in vitro and maintain the drug concentration above 0.4?μg/g for 16?h in rat brain after magnetic targeting. Drug concentration increased by 1–3 folds when delivered by carrier without magnetic targeting, and by 3–15 folds after magnetic targeting. Cellular study revealed that the magnetic carrier was clearly localized in the targeted cortex neural cells and U251-MG cell lines. These results showed that this magnetic carrier is capable of maintaining high drug concentration in magnetically targeted area and carrying drugs or genes into cells, which is potentially promising for local chemotherapy to brain tumors.
机译:磁性药物载体已经用于药物递送超过30年。现代纳米技术通过将其直径缩小到纳米级,极大地提高了效率。它可能有助于化学治疗剂渗透BBB并提高大脑中的局部药物浓度,这是治疗神经胶质瘤的理想模型。在我们的研究中,磁性载体是由十八烷基季铵化的羧甲基甲基壳聚糖(OQCMC),疏水性Fe 3 O 4 铁磁流体和胆固醇制成的,在20纳米下均匀直径为20?nm。透射电子显微镜和振动样品磁测量系统中的超顺磁特性。为了研究药物递送的功效,紫杉醇用作负载药物并通过HPLC进行分析。结果表明,磁性靶向后,磁性载体在体外释放药物的时间超过20 d,并在大鼠脑中将药物浓度保持在0.4μg/ g以上的水平达16 h。当不进行磁性靶向的载体递送时,药物浓度增加了1-3倍,而磁性靶向后的药物浓度增加了3-15倍。细胞研究表明,磁性载体明显位于靶皮层神经细胞和U251-MG细胞系中。这些结果表明,这种磁性载体能够在磁性靶向区域中维持较高的药物浓度,并将药物或基因携带到细胞中,这有望对脑肿瘤进行局部化疗。

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