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Synthesis, Characterization and Toxic Metal-Binding Ability of Poly(y-glutamic acid)-Coated Superparamagnetic Nanoparticles

机译:聚(Y-谷氨酸)涂层超顺磁性纳米粒子的合成,表征和有毒金属结合能力

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Poly(γ-glutamic acid)-coated superparamagnetic iron oxide nanoparticles (PGA-SPIONs) were synthesized by co-precipitation method, characterized and evaluated for toxic metal-binding ability in detoxification therapy. Characterization of bare- and PGA-SPIONs by FTIR, VSM and TGA revealed the coating of PGA on SPIONs and by XRD the magnetite nature, with the respective mean particle size by TEM being 11.8 and 14 nm and saturation magnetization value by VSM being 71.2 and 61.7 emu/g. In vitro binding of lead and cadmium by PGA-SPIONs was rapid attaining >90% binding within 1 min. A maximum binding occurred at pH 4-7, corresponding to gastrointestinal pH values except for the stomach (pH 1-2.5). Binding isotherms predicted by the Langmuir isotherm showed a maximum binding capacity of 98.70 mg/g for lead and 31.13 mg/g for cadmium. Incorporation of essential metals (K, Ca, Mg, Zn, Fe and Cu) did not show marked influence on lead binding, but significantly reduced the binding of cadmium.
机译:通过共沉淀法合成聚(γ-谷氨酸)涂覆的超顺磁性氧化铁纳米颗粒(PGA-栓),其特征在于解毒治疗中有毒金属结合能力。通过FTIR,VSM和TGA对裸露和PGA-栓塞的表征显示PGA在散氏上的PGA涂层和XRD磁铁矿性质,通过TEM的相应平均粒度为11.8和14nm和饱和磁化值,VSM为71.2和61.7 EMU / g。通过PGA-酱的铅和镉的体外结合是在1分钟内快速达到> 90%的结合。除了胃(pH 1-2.5)之外,对应于pH 4-7的最大结合。除了胃(pH1-2.5)。 Langmuir等温线预测的结合等温线显示出98.70mg / g的最大粘合能力,镉和31.13mg / g用于镉。掺入基本金属(K,Ca,Mg,Zn,Fe和Cu)没有显示出对铅结合的显着影响,但显着降低了镉的结合。

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