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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Electrostatic droplets assisted in situ synthesis of superparamagnetic chitosan microparticles for magnetic-responsive controlled drug release and copper ion removal
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Electrostatic droplets assisted in situ synthesis of superparamagnetic chitosan microparticles for magnetic-responsive controlled drug release and copper ion removal

机译:静电液滴辅助原位合成超顺磁性壳聚糖微粒,从而实现磁响应控制药物释放和铜离子去除

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This paper demonstrates a facile approach for the in situ synthesis of size-controllable superparamagnetic chitosan micro-beads with a saturation magnetization value as high as ca. 35.3 emu g~1 at room temperature. The proposed process utilized the electrostatic droplets (ESD) technique, which is quite effective in producing uniform-sized polymer beads. A sodium hydroxide solution was employed for both the solidification of chitosan and the co-precipitation of ferro-gels containing both ferrous and ferric cations. The diameter of the beads was very uniform (each relative standard deviation was below 3.4%) and adjustable from 84 nm to ca. 555 urn by varying the electrostatic field. Cell viability tests indicated that the superparamagnetic chitosan particles were eco-friendly and had a high potential for biological applications. The results show that the superparamagnetic chitosan particles achieved superior results in magnetic-responsive drug release as well as heavy metal removal (e.g. copper ions). This study demonstrated that the appropriate magnetic field intensity for different release patterns is predictable, which allows for better application of microcapsules as a smart drug carrier. In addition, the proposed chitosan particles serve as an alternative material for the adsorption of heavy metal ions from contaminated industrial effluents, while their superparamagnetic properties are advantageous in that they make the chitosan particles guidable by an external magnetic field.
机译:本文证明了一种简便的原位合成尺寸可控的超顺磁性壳聚糖微珠的方法,其饱和磁化强度值高达ca。室温下为35.3 emu g〜1。所提出的方法利用了静电液滴(ESD)技术,该技术在生产均一尺寸的聚合物珠粒方面非常有效。氢氧化钠溶液既用于壳聚糖的固化,又用于同时包含亚铁和铁阳离子的铁凝胶的共沉淀。珠子的直径非常均匀(每个相对标准偏差均低于3.4%),并且可在84 nm至约1200 nm范围内调节。通过改变静电场555 n。细胞活力测试表明,超顺磁性壳聚糖颗粒具有生态友好性,在生物应用方面具有很高的潜力。结果表明,超顺磁性壳聚糖颗粒在磁响应药物释放以及重金属去除(例如铜离子)方面取得了优异的结果。这项研究表明,对于不同的释放模式,适当的磁场强度是可以预测的,从而可以更好地将微胶囊用作智能药物载体。另外,所提出的壳聚糖颗粒用作从污染的工业废水中吸附重金属离子的替代材料,而它们的超顺磁性质的优点在于它们使壳聚糖颗粒可被外部磁场引导。

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