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A facile method to prepare superparamagnetic iron oxide and hydrophobic drug-encapsulated biodegradable polyurethane nanoparticles

机译:一种制备超顺磁性氧化铁和疏水性药物包裹的可生物降解聚氨酯纳米粒子的简便方法

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摘要

Superparamagnetic iron oxide nanoparticles (SPIO NPs) have a wide range of biomedical applications such as in magnetic resonance imaging, targeting, and hyperthermia therapy. Aggregation of SPIO NPs can occur because of the hydrophobic surface and high surface energy of SPIO NPs. Here, we developed a facile method to encapsulate SPIO NPs in amphiphilic biodegradable polymer. Anionic biodegradable polyurethane nanoparticles (PU NPs) with ~35 nm size and different chemistry were prepared by waterborne processes. SPIO NPs were synthesized by chemical co-precipitation. SPIO NPs were then added to the aqueous dispersion of PU NPs, followed by application of high-frequency (~20 kHz) ultrasonic vibration for 3 min. This method rendered SPIO-PU hybrid NPs (size ~110 nm) suspended in water. SPIO-PU hybrid NPs contained ~50–60 wt% SPIO and retained the superparamagnetic property (evaluated by a magnetometer) as well as high contrast in magnetic resonance imaging. SPIO-PU NPs also showed the ability to provide cell hyperthermic treatment. Using the same ultrasonic method, hydrophobic drug (Vitamin K3 [VK3]) or (9-(methylaminomethyl) anthracene [MAMA]) could also be encapsulated in PU NPs. The VK3-PU or MAMA-PU hybrid NPs had ~35 nm size and different release profiles for PUs with different chemistry. The encapsulation efficiency for VK3 and MAMA was high (~95%) without burst release. The encapsulation mechanism may be attributed to the low glass transition temperature (Tg) and good mechanical compliance of PU NPs. The new encapsulation method involving waterborne biodegradable PU NPs is simple, rapid, and effective to produce multimodular NP carriers.
机译:超顺磁性氧化铁纳米粒子(SPIO NP)具有广泛的生物医学应用,例如磁共振成像,靶向和热疗。 SPIO NP的疏水性表面和高表面能会导致SPIO NP的聚集。在这里,我们开发了一种简便的方法来将SPIO NPs封装在两亲生物可降解聚合物中。通过水性工艺制备了约35 nm大小和不同化学性质的阴离子可生物降解聚氨酯纳米颗粒(PU NPs)。 SPIO NPs通过化学共沉淀法合成。然后将SPIO NP添加到PU NP的水分散液中,然后施加高频(〜20 kHz)超声振动3分钟。此方法使SPIO-PU混合NP(尺寸约为110 nm)悬浮在水中。 SPIO-PU混合NP包含约50-60 wt%SPIO,并保留了超顺磁性能(通过磁力计评估)以及磁共振成像中的高对比度。 SPIO-PU NP也显示出提供细胞高温治疗的能力。使用相同的超声波方法,也可以将疏水性药物(Vitamin K3 [VK3])或(9-(甲基氨基甲基)蒽[MAMA])封装在PU NP中。 VK3-PU或MAMA-PU混合NP的尺寸约为35 nm,化学性质不同的PU的释放曲线也不同。 VK3和MAMA的封装效率很高(〜95%),而没有突发释放。封装机理可归因于低的玻璃化转变温度(Tg)和PU NP的良好机械柔韧性。涉及水性可生物降解PU NP的新封装方法简单,快速且有效地产生了多模块NP载体。

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