化学合成磁铁矿生物聚合物包衣用于持续给药

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摘要

纳米颗粒给药具有靶向给药、副作用小、药物缓释时间长等优点,引起了研究人员的广泛关注。本研究以FeSO4和FeCl3溶液的混合物为铁源,采用化学方法合成了磁铁矿。对合成的磁铁矿进行了FeSEM、XRD和VSM等分析,表征其粒径为40 ~ 60nm,具有顺磁性活性。将含有抗生素利福平的磁铁矿纳米颗粒包被四种不同的生物聚合物,即壳聚糖、淀粉、酪蛋白和PHB。PHB包覆的纳米颗粒尺寸为80 ~ 90nm,是所有纳米颗粒中最小的。采用孔扩散法对生物聚合物包被的纳米颗粒进行抑菌实验,发现PHA包被的纳米颗粒对利福平的保存效果最好。不同生物聚合物包被的纳米颗粒也进行了生物膜抑制实验和基于MTT的细胞毒性实验。磁铁矿的LC50值为60µg/ml。
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Biopolymer Coating of Chemically Synthesized Magnetite for Sustained Drug Delivery
Drug delivery using nanoparticles is attracting the attention of most researchers as it has got its targeted delivery, reduced side effects, and controlled release of drugs for a prolonged period of time is possible. In this study, magnetite was synthesized by a chemical method using the mixture of solutions of FeSO4 and FeCl3 as the iron source. The synthesized magnetite was subjected to analysis by FeSEM, XRD and VSM and hence characterized to have a size of 40-60nm and with a paraferromagnetic activity. The magnetite nanoparticle with the antibiotic rifampicin was coated with four different biopolymers, namely chitosan, starch, casein, and PHB. PHB coated nanoparticles were 80-90 nm-sized, which is the smallest size of all. The biopolymer coated nanoparticles were subjected to antimicrobial assay against E.coli by well diffusion method of which the PHA coated particles was found to be the best for holding rifampicin. The different biopolymer coated nanoparticles were also subjected to biofilm inhibition assay and MTT based cytotoxicity assay. Magnetite was found to have a LC50 at 60 µg/ml.
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