首页> 外文期刊>Biomaterials Science >Development of a controlled-release drug delivery system by encapsulating oxaliplatin into SPIO/MWNT nanoparticles for effective colon cancer therapy and magnetic resonance imaging
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Development of a controlled-release drug delivery system by encapsulating oxaliplatin into SPIO/MWNT nanoparticles for effective colon cancer therapy and magnetic resonance imaging

机译:通过将奥沙利铂封装到SPIO / MWNT纳米粒子中来开发控释药物递送系统,以进行有效的结肠癌治疗和磁共振成像

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The development of a controlled-release drug delivery system has been an important objective for cancer therapy. To achieve the goal of sustained drug release for preventing the biotoxicity of platinum drugs, oxaliplatin was encapsulated into PEGylated multiwalled carbon nanotubes (MWNTs) decorated with superparamagnetic iron oxide (SPIO) for magnetic resonance imaging (MRI). The superparamagnetic properties and purification of SPIO/MWNT composites were achieved by annealing treatment during the fabrication process; the better hydrophilicity and biocompatibility were also accomplished subsequently after modification with polyethylene glycol (PEG). Oxa/MagMWNT-PEG 7 presented the ability of sustained release, as only 36.25% of loaded oxaliplatin leaked within 12 h and 55.48% lasted over 144 h. An in vitro study revealed that compared with free oxaliplatin and Oxa/MagMWNT 8, Oxa/MagMWNT-PEG 7 showed a slightly decreased cytotoxic effect when the cell viability was assessed at 12 and 24 h; however, a drastic enhancement in cytotoxicity was observed at 96 h. Platinum-DNA quantification on HCT116 cells showed that the internalization of oxaliplatin lasted up to 96 h, which was due to the sustained release of nanomedicine. An in vivo study showed that the nanomedicine-treated group exhibited effective antitumor efficacy similar to the free drug-treated group, but without inducing death in mice. After intravenous administration, the T-2-weighted MRI signal revealed that Oxa/MagMWNT-PEG7 had an excellent MRI enhancement in the tumor region. This SPIO-decorated MWNT composite encapsulated with antitumor drugs could potentially be useful for treatments, such as cancer therapy and MRI.
机译:控释药物递送系统的开发已成为癌症治疗的重要目标。为了达到持续释放药物的目的,以防止铂类药物的生物毒性,将奥沙利铂包封在装饰有超顺磁性氧化铁(SPIO)的聚乙二醇化多壁碳纳米管(MWNT)中,以进行磁共振成像(MRI)。 SPIO / MWNT复合材料的超顺磁性能和纯化是在制造过程中通过退火处理实现的。聚乙二醇(PEG)修饰后,亲水性和生物相容性也更好。 Oxa / MagMWNT-PEG 7具有持续释放的能力,因为负载的奥沙利铂仅36.25%在12小时内泄漏,而55.48%持续144小时。一项体外研究表明,与游离奥沙利铂和Oxa / MagMWNT 8相比,Oxa / MagMWNT-PEG 7在12和24 h评估细胞生存力时,显示出略微降低的细胞毒性作用。然而,在96小时时观察到细胞毒性的急剧增强。 HCT116细胞上的铂DNA定量显示,奥沙利铂的内在化持续了96小时,这是由于纳米药物的持续释放所致。体内研究表明,纳米药物治疗组表现出与游离药物治疗组相似的有效抗肿瘤功效,但没有引起小鼠死亡。静脉内给药后,T-2加权MRI信号显示Oxa / MagMWNT-PEG7在肿瘤区域具有出色的MRI增强作用。这种用SPIO装饰的抗肿瘤药物包裹的MWNT复合材料可能可用于治疗,例如癌症治疗和MRI。

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