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Biodistribution and In Vivo Anticancer Effects of Taxol Loaded Magnetic Nanospheres

机译:紫杉醇负载磁性纳米球的生物分布和体内抗癌作用。

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Taxol (anticancer drug) loaded magnetic nanospheres were prepared and tested in vitro and in vivo in mice. Poly(D,L-lactide-co-glycolide) (PLGA) as polymer matrix for the encapsulation of the drug and magnetic $({rm Fe}_{3}{rm O}_{4})$ particles was used. Pluronic F68 served as a stabilising agent of the polymeric nanospheres. The cytotoxicity of taxol loaded magnetic NPs suspensions towards B16 melanoma cells was investigated. Growth inhibitions of around 90% were reached in three days of exposition. Biodistribution of taxol administered in Cremophor-based injection formula as well as taxol loaded nanosphere compositions was determined in the plasma, selected organs and target tissue. The drug-loaded magnetically labeled nanospheres caused a reduction in tumor weight. A better result was achieved using the composition with higher magnetite/drug weight ratio than in the sample with the smaller ratio which is due to fact that the samples with higher magnetite content were trapped more effectively in target site (tumor) by the external field.
机译:制备负载紫杉醇(抗癌药)的磁性纳米球,并在小鼠体内和体外进行测试。聚(D,L-丙交酯-乙交酯)(PLGA)作为聚合物基质,用于包裹药物和磁性<公式>使用了3} {rm O} _ {4})$ 粒子。 Pluronic F68用作聚合物纳米球的稳定剂。研究了紫杉醇负载磁性NPs悬浮液对B16黑色素瘤细胞的细胞毒性。暴露三天后达到了约90%的生长抑制。在血浆,选定的器官和靶组织中确定了基于Cremophor的注射配方中施用的紫杉醇的生物分布以及负载紫杉醇的纳米球组合物。载有药物的磁性标记纳米球可减轻肿瘤重量。与具有较小磁铁矿/药物重量比的组合物相比,使用具有较高磁铁矿/药物重量比的组合物可获得更好的结果,这是由于以下事实:具有较高磁铁矿含量的样品被外部场更有效地捕获在目标部位(肿瘤)中。

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