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Facile preparation of multifunctional superparamagnetic PHBV microspheres containing SPIONs for biomedical applications

机译:容易制备含有spIONs的多功能超顺磁性pHBV微球,用于生物医学应用

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摘要

The promising potential of magnetic polymer microspheres in various biomedical applications has been frequently reported. However, the surface hydrophilicity of superparamagnetic iron oxide nanoparticles (SPIONs) usually leads to poor or even failed encapsulation of SPIONs in hydrophobic polymer microspheres using the emulsion method. In this study, the stability of SPIONs in poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) solution was significantly increased after surface modification with lauric acid. As a result, magnetic PHBV microspheres with high encapsulation efficiencies (71.0-87.4%) were prepared using emulsion-solvent extraction/evaporation method. Magnetic resonance imaging (MRI) showed significant contrast for the magnetic PHBV microspheres. The toxicity of these magnetic PHBV microspheres towards human T-lymphoma suspension cells and adherent colon carcinoma HT-29 cells was investigated using flow cytometry, and they were shown to be non-toxic in a broad concentration range. A model drug, tetracycline hydrochloride, was used to demonstrate the drug delivery capability and to investigate the drug release behavior of the magnetic PHBV microspheres. The drug was successfully loaded into the microspheres using lauric acid-coated SPIONs as drug carrier, and was released from the microspheres in a diffusion controlled manner. The developed magnetic PHBV microspheres are promising candidates for biomedical applications such as targeted drug delivery and MRI.
机译:磁性聚合物微球在各种生物医学应用中的有前途的潜力已被经常报道。但是,超顺磁性氧化铁纳米粒子(SPIONs)的表面亲水性通常会导致使用乳液法将SPIONs封装在疏水性聚合物微球中的不良或什至失败。在这项研究中,经月桂酸表面改性后,聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)溶液中SPIONs的稳定性显着提高。结果,使用乳液-溶剂萃取/蒸发法制备了具有高包封率(71.0-87.4%)的磁性PHBV微球。磁共振成像(MRI)显示了磁性PHBV微球的明显对比。使用流式细胞仪研究了这些磁性PHBV微球对人T淋巴瘤悬浮细胞和粘附结肠癌HT-29细胞的毒性,并显示出它们在较宽的浓度范围内均无毒。使用模型药物盐酸四环素来证明药物的递送能力并研究磁性PHBV微球的药物释放行为。使用月桂酸包被的SPION作为药物载体,药物成功地加载到微球中,并以扩散控制的方式从微球中释放出来。已开发的磁性PHBV微球是生物医学应用(如靶向药物输送和MRI)的有希望的候选者。

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