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Facile One-Pot Synthesis of Iron Oxide Nanoparticles Cross-linked Magnetic Poly(vinyl alcohol) Gel Beads for Drug Delivery

机译:氧化铁纳米粒子交联磁性聚乙烯醇凝胶珠的简便一锅法合成

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In this paper, a facile one-pot strategy for scalable synthesis of robust magnetic poly{vinyl alcohol) (mPVA) gel beads is developed. Through dropwise addition of mixed aqueous solution of iron salts and PVA solution into alkaline (e.g., ammonia, NaOH, and KOH) solution, mPVA gel beads with uniform size and excellent superparamagnetic property can be fabricated based on the simultaneous formation of magnetic iron oxide nanoparticles (MIONs) and cross-link of PVA chains. Moreover, this approach can be extended to prepare dual- or multiresponsive gel beads through simply adding functional fillers into PVA solution (e.g., mPVA-PNIPAM gel beads that possess both magnetic and temperature responsibihties can be readily prepared byadding temperature responsive poly(N-isopropylacrylamide) (PNIPAM) into PVA solution). It is found that that the obtained mPVA gel beads exhibit high drug loading level (e.g., above 70%) after the treatment of freezing-thawing. Drug release experiments reveal that the drug release rate and amount of the mPVA gel beads can be tuned by operating the external magnetic field and adjusting the concentration of iron oxide nanoparticles and temperature (for mPVA-PNIPAM gel beads). The present work is of interest for opening up enormous opportunities to make full use of magnetic gel beads in drug delivery and other applications, because of their facile availability, cost-effective productivity, and tunable drug release performance.
机译:在本文中,开发了一种简便的一锅法,用于鲁棒磁性聚(乙烯醇)(mPVA)凝胶珠的可扩展合成。通过将铁盐和PVA溶液的混合水溶液逐滴添加到碱性(例如氨水,NaOH和KOH)溶液中,可以基于磁性氧化铁纳米粒子的同时形成,制造尺寸均匀且具有超顺磁性的mPVA凝胶珠(MION)和PVA链的交联。此外,可以通过将功能性填充剂简单地添加到PVA溶液中来扩展该方法以制备双重或多响应凝胶珠(例如,具有磁性和温度响应性的mPVA-PNIPAM凝胶珠可以通过添加温度响应聚N-异丙基丙烯酰胺来容易地制备)(PNIPAM)转换成PVA解决方案)。发现在冷冻-解冻处理后,获得的mPVA凝胶珠表现出高的药物载量水平(例如,高于70%)。药物释放实验表明,可以通过操作外部磁场并调节氧化铁纳米颗粒的浓度和温度(对于mPVA-PNIPAM凝胶珠)来调节mPVA凝胶珠的释放速率和数量。由于磁性磁珠的易用性,具有成本效益的生产率和可调的药物释放性能,目前的工作是为在药物输送和其他应用中开辟充分利用磁性凝胶珠的巨大机会感兴趣。

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