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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Itaconic acid grafted carboxymethyl chitosan and its nanoparticles: Preparation, characterization and evaluation
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Itaconic acid grafted carboxymethyl chitosan and its nanoparticles: Preparation, characterization and evaluation

机译:衣康酸接枝羧甲基壳聚糖及其纳米粒子:制备,表征和评估

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摘要

This work aims to synthesize a novel itaconic acid (IA) grafted carboxymethyl chitosan (PICMCS), and further fabricate its nanoparticles for potential biomedical applications. First, PICMCS was prepared via free-radical polymerization of IA monomer, in the presence of ammonium persulfate as an initiator and nitrogen as a protector. Its chemical structure was confirmed by FTIR and H-1 NMR. The IA substitution degree calculated by elemental analysis data was 1.85, implying that IA was successfully grafted to carboxymethyl chitosan (CMCS). XRD and TGA patterns illustrated its well-defined crystallinity and thermostability. Second, PICMCS nanoparticles were fabricated by electrostatic attraction between carboxyl and amino groups in the absence of any additional agent, which were of obvious core-shell structures with an average particle size of 144 nm and a polydispersity index of 0.11. PICMCS nanoparticles exhibited excellent physical stability after storage at 25 degrees C for 30 days, without any aggregation. PICMCS nanoparticles with high negative surface charge also indicated the good stability, especially in neutral or alkaline media. Additionally, the cytotoxicity experiments showed that either PICMCS or its nanoparticles had better cytocompatibility toward L929 cells than CMCS. These findings above suggested that PICMCS was a kind of promising material for preparing nanoparticles used in biomedical field. (C) 2017 Elsevier B.V. All rights reserved.
机译:该工作旨在合成新型衣康酸(IA)接枝羧甲基壳聚糖(PICMC),并进一步制造其纳米颗粒以进行潜在的生物医学应用。首先,通过Ia单体的自由基聚合制备PICMC,在过硫酸铵存在下作为引发剂和氮作为保护剂。其化学结构通过FTIR和H-1 NMR确认。通过元素分析数据计算的IA替代度为1.85,暗示IA被成功接枝到羧甲基壳聚糖(CMC)。 XRD和TGA图案示出了其定义明确的结晶度和热稳定性。其次,通过任何另外的试剂在没有任何另外的试剂的情况下通过羧基和氨基之间的静电吸引来制造PICMCS纳米颗粒,其具有明显的核 - 壳结构,其平均粒度为144nm和0.11的多分散指数。 PICMCS纳米颗粒在25℃下储存30天后表现出优异的物理稳定性,没有任何聚集。 PICMCS纳米颗粒具有高阴性表面电荷,也表明稳定性良好,特别是中性或碱性介质。另外,细胞毒性实验表明,PICMC或其纳米颗粒比CMCs对L929细胞具有更好的细胞相容性。上面的这些发现表明PICMC是一种用于制备用于生物医学领域的纳米颗粒的有希望的材料。 (c)2017年Elsevier B.V.保留所有权利。

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