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Block copolymer cross-linked nanoassemblies improve particle stability and biocompatibility of superparamagnetic iron oxide nanoparticles

机译:嵌段共聚物交联的纳米组件改善了超顺磁性氧化铁纳米颗粒的颗粒稳定性和生物相容性

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Purpose: To develop cross-linked nanoassemblies (CNAs) as carriers for superparamagnetic iron oxide nanoparticles (IONPs). Methods: Ferric and ferrous ions were co-precipitated inside core-shell type nanoparticles prepared by cross-linking poly(ethylene glycol)-poly(aspartate) block copolymers to prepare CNAs entrapping Fe3O4 IONPs (CNA-IONPs). Particle stability and biocompatibility of CNA-IONPs were characterized in comparison to citrate-coated Fe3O4 IONPs (Citrate-IONPs). Results: CNA-IONPs, approximately 30 nm in diameter, showed no precipitation in water, PBS, or a cell culture medium after 3 or 30 h, at 22, 37, and 43 C, and 1, 2.5, and 5 mg/mL, whereas Citrate-IONPs agglomerated rapidly ( 400 nm) in all aqueous media tested. No cytotoxicity was observed in a mouse brain endothelial-derived cell line (bEnd.3) exposed to CNA-IONPs up to 10 mg/mL for 30 h. Citrate-IONPs ( 0.05 mg/mL) reduced cell viability after 3 h. CNA-IONPs retained the superparamagnetic properties of entrapped IONPs, enhancing T2-weighted magnetic resonance images (MRI) at 0.02 mg/mL, and generating heat at a mild hyperthermic level (40 ~ 42 C) with an alternating magnetic field (AMF). Conclusion: Compared to citric acid coating, CNAs with a cross-linked anionic core improved particle stability and biocompatibility of IONPs, which would be beneficial for future MRI and AMF-induced remote hyperthermia applications. ? 2012 Springer Science+Business Media New York.
机译:目的:开发用作超顺磁性氧化铁纳米粒子(IONPs)的载体的交联纳米组件(CNA)。方法:通过交联聚乙二醇-聚天冬氨酸嵌段共聚物制备的核-壳型纳米颗粒内共沉淀铁离子和亚铁离子,从而制备包埋Fe 3 O 4 IONPs(CNA-IONPs)的CNA。与柠檬酸盐包覆的Fe3O4 IONP(柠檬酸盐-IONPs)相比,CNA-IONPs的颗粒稳定性和生物相容性得到了表征。结果:直径约30 nm的CNA-IONP在22、37和43 C,1、2.5和5 mg / mL的3或30 h后在水,PBS或细胞培养基中均未显示沉淀,而柠檬酸盐-IONPs在所有测试的水性介质中迅速聚集(> 400 nm)。在暴露于浓度高达10 mg / mL的CNA-IONP的小鼠脑内皮细胞系(bEnd.3)中,未观察到细胞毒性30小时。柠檬酸盐-IONPs(> 0.05 mg / mL)在3小时后降低了细胞活力。 CNA-IONPs保留了包裹的IONPs的超顺磁特性,增强了0.02 mg / mL的T2加权磁共振图像(MRI),并在交变磁场(AMF)的温和高温下(40〜42 C)产生热量。结论:与柠檬酸涂层相比,具有交联阴离子核的CNA改善了IONP的颗粒稳定性和生物相容性,这将有利于MRI和AMF引起的远程热疗的未来应用。 ? 2012年Springer Science + Business Media纽约。

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