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Doxorubicin-modified magnetic nanoparticles as a drug delivery system for magnetic resonance imaging-monitoring magnet-enhancing tumor chemotherapy

机译:阿霉素修饰的磁性纳米粒子作为磁共振成像监测磁性增强肿瘤化学治疗的药物递送系统

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摘要

[[abstract]]In this study, we developed functionalized superparamagnetic iron oxide (SPIO) nanoparticles consisting of a magnetic Fe3 O4 core and a shell of aqueous stable polyethylene glycol (PEG) conjugated with doxorubicin (Dox) (SPIO-PEG-D) for tumor magnetic resonance imaging (MRI) enhancement and chemotherapy. The size of SPIO nanoparticles was ~10 nm, which was visualized by transmission electron microscope. The hysteresis curve, generated with vibrating-sample magnetometer, showed that SPIO-PEG-D was superparamagnetic with an insignificant hysteresis. The transverse relaxivity (r2) for SPIO-PEG-D was significantly higher than the longitudinal relaxivity (r1) (r2/r1.10). The half-life of Dox in blood circulation was prolonged by conjugating Dox on the surface of SPIO with PEG to reduce its degradation. The in vitro experiment showed that SPIO-PEG-D could cause DNA crosslink more serious, resulting in a lower DNA expression and a higher cell apoptosis for HT-29 cancer cells. The Prussian blue staining study showed that the tumors treated with SPIO-PEG-D under a magnetic field had a much higher intratumoral iron density than the tumors treated with SPIO-PEG-D alone. The in vivo MRI study showed that the T2 -weighted signal enhancement was stronger for the group under a magnetic field, indicating that it had a better accumulation of SPIO-PEG-D in tumor tissues. In the anticancer efficiency study for SPIO-PEG-D, the results showed that there was a significantly smaller tumor size for the group with a magnetic field than the group without. The in vivo experiments also showed that this drug delivery system combined with a local magnetic field could reduce the side effects of cardiotoxicity and hepatotoxicity. The results showed that the developed SPIO-PEG-D nanoparticles own a great potential for MRI-monitoring magnet-enhancing tumor chemotherapy.
机译:[[摘要]]在这项研究中,我们开发了功能化的超顺磁性氧化铁(SPIO)纳米颗粒,该颗粒由磁性Fe3 O4核和与阿霉素(Dox)缀合的水性稳定聚乙二醇(PEG)的壳(SPIO-PEG-D)组成用于肿瘤磁共振成像(MRI)增强和化学疗法。 SPIO纳米粒子的大小约为10 nm,可通过透射电子显微镜观察。用振动样品磁力计产生的磁滞曲线表明,SPIO-PEG-D是超顺磁性的,磁滞微不足道。 SPIO-PEG-D的横向弛豫率(r2)明显高于纵向弛豫率(r1)(r2 / r1.10)。通过在SPI的表面上将Dox与PEG结合以减少其降解,可以延长Dox在血液循环中的半衰期。体外实验表明,SPIO-PEG-D可能导致DNA交联更为严重,从而导致HT-29癌细胞的DNA表达降低和细胞凋亡更高。普鲁士蓝染色研究表明,在磁场下用SPIO-PEG-D处理的肿瘤比单独用SPIO-PEG-D处理的肿瘤具有更高的瘤内铁密度。体内MRI研究表明,磁场下该组的T2加权信号增强更强,表明它在肿瘤组织中具有更好的SPIO-PEG-D积累。在针对SPIO-PEG-D的抗癌效率研究中,结果显示,有磁场的组的肿瘤大小明显小于无磁场的组。体内实验还表明,该药物递送系统与局部磁场结合可以减少心脏毒性和肝毒性的副作用。结果表明,所开发的SPIO-PEG-D纳米颗粒具有用于MRI监测磁体增强肿瘤化学疗法的巨大潜力。

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    Liang, PC;

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