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首页> 外文期刊>Journal of biomaterials and nanobiotechnology. >Influence of Alternating and Static Magnetic Fields on Drug Release from Hybrid Hydrogels Containing Magnetic Nanoparticles
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Influence of Alternating and Static Magnetic Fields on Drug Release from Hybrid Hydrogels Containing Magnetic Nanoparticles

机译:交变磁场和静磁场对含有磁性纳米粒子的混合水凝胶药物释放的影响

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Hybrid hydrogels of carboxymethylcellulose (CMC), containing two different amounts of CoFe2O4 magnetic nanoparticles (50% and 70% in relation to the quantity of the polymer) as crosslinkers, were prepared. The hybrid hydrogels were chemically and morphologically characterized and their viscoelastic properties and swelling degrees were analyzed. The hydrogels were tested as controlled drug delivery systems by applying one static and two different alternating magnetic fields. The application of the two alternating magnetic fields (AMF) to the hybrid hydrogels induced a higher release of methylene blue (MB), used as a model drug, than without the application of any magnetic field, especially at low frequency (4 Hz) and high magnetic intensity (0.5 T). In contrast, when the hybrid hydrogels were exposed to a static magnetic field (SMF) the release of MB was slowed down. Furthermore the two different amounts of magnetic nanoparticles induce different responses to the magnetic field. The greater number of nanoparticles in the CMC-NP-70 hydrogel leads to the formation of some NPs clusters limiting the drug release; conversely, the CMC-NP-50 hydrogel, containing a lower amount of nanoparticles, shows a higher release of MB vs. time. In conclusion, we were able to get a potential system for modulation of the drug delivery: the release behaviour of hybrid hydrogels can be modulated by applying alternating and static magnetic fields cyclically. A possible explanation for the release mechanism is about the structural modification of the polymeric chains that occurs when the hybrid hydrogels are exposed to the magnetic fields.
机译:制备了包含两种不同量的CoFe2O4磁性纳米粒子(相对于聚合物的量为50%和70%)作为交联剂的羧甲基纤维素(CMC)杂化水凝胶。对杂化水凝胶进行了化学和形态学表征,并分析了它们的粘弹性和溶胀度。通过施加一个静态和两个不同的交变磁场,将水凝胶作为药物控制系统进行了测试。与不施加任何磁场相比,向混合水凝胶施加两个交变磁场(AMF)会引起更高的亚甲基蓝(MB)释放,尤其是在低频(4 Hz)和高磁场强度(0.5 T)。相反,当杂化水凝胶暴露于静磁场(SMF)时,MB的释放变慢。此外,两种不同量的磁性纳米颗粒引起对磁场的不同响应。 CMC-NP-70水凝胶中大量的纳米颗粒会导致一些NP簇的形成,从而限制药物的释放。相反,含有较少量纳米粒子的CMC-NP-50水凝胶显示MB随时间的释放量更高。总之,我们能够获得一个潜在的调节药物输送的系统:可以通过周期性施加交变磁场和静磁场来调节杂化水凝胶的释放行为。对于释放机理的可能解释是关于当杂化水凝胶暴露于磁场时发生的聚合物链的结构修饰。

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