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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Novel PNIPAm-based electrospun nanofibres used directly as a drug carrier for 'on-off' switchable drug release
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Novel PNIPAm-based electrospun nanofibres used directly as a drug carrier for 'on-off' switchable drug release

机译:基于新的肺磷酸电纺纳米纤维直接用作药物载体,用于“开关”可切换药物释放

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Stimuli-responsive smart polymers have been studied extensively. In this work, thermoresponsive poly (N-isopropylacrylamide-N-methylolacrylamide-acrylamide) (PNIPAm-NMA-Am) was successfully synthesised via radical polymerisation, as confirmed by proton nuclear magnetic resonance and fourier transform infrared spectroscopy. PNIPAm-NMA-Am was electrospun into nanofibres, allowing its use as a drug carrier after simple thermal treatment. Thermogravimetric analysis, scanning electron microscopy, and atomic force microscopy results also revealed that the as-prepared PNIPAm-NMA-Am nanofibres have a uniform small diameter, good thermal stability and excellent integrity in aqueous environments. Additionally, the properties of this PNIPAm-NMA-Am nanofibres were tunable with temperature changes below and above the lower critical solution temperature of 48 degrees C. The drug release properties of PNIPAm-NMA-Am10 nanofibres as a drug carrier were studied via ultraviolet-visible spectroscopy and the results showed that 80% of the drug was released from the nanofibres after six heating and cooling (60-10 degrees C) cycles within 60 min. Only a small amount of the drug was released during the cooling process, which directly demonstrates "on-off" functionality of PNIPAm-NMA-Am nanofibres for controlled drug release. Finally, cell culture studies indicated that the PNIPAm-NMA-Am nanofibres have not cytotoxicity. Thus, the novel PNIPAm-NMA-Am nanofibres show great potential in the biomedical field as drug carriers.
机译:已经广泛研究了刺激响应智能聚合物。在这项工作中,通过自由基聚合成功地合成了热响应性聚(N-异丙基丙烯酰胺-N-甲基丙烯酰胺 - 丙烯酰胺)(PNIPAM-NMA-AM),通过质子核磁共振和傅里叶变换红外光谱证实。将泊普菊-NMA-AM电纺成纳米纤维,在简单的热处理后允许其用作药物载体。热重分析,扫描电子显微镜和原子力显微镜的结果也表明,如制备的泊地-NMA-AM纳米纤维具有均匀的小直径,良好的热稳定性和在水性环境中优异的完整性。另外,通过低于48℃的温度变化和高于48℃的低临界溶液温度的温度变化进行可调谐该PNIPAM-NMA-AM纳米纤维的性质。通过紫外线研究了作为药物载体的PNIPAM-NMA-AM10纳米纤维的药物释放性能。可见光谱学和结果表明,在60分钟内六次加热和冷却(60-10℃)循环后,将80%的药物从纳米纤维中释放。在冷却过程中仅释放少量药物,这直接显示了用于受控药物释放的PNIPAM-NMA-AM纳米纤维的“OFF”功能。最后,细胞培养研究表明,肺蛋白-NMA-AM纳米纤维没有细胞毒性。因此,新型肺蛋白-NMA-AM纳米纤维在生物医学领域中显示出巨大的潜力作为药物载体。

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