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Preparation and characterization of chondroitin-sulfate-A-coated magnetite nanoparticles for biomedical applications

机译:硫酸软骨素A涂层磁铁矿纳米粒子的生物医学制备与表征

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摘要

Polysaccharides are promising candidates for manufacturing biocompatible core-shell nanoparticles with potential in vivo use. Superparamagnetic magnetite nanoparticles (MNPs) have prospective application in both diagnosis and therapy, and so developing a novel polysaccharide shell on MNP core is of great challenge. MNPs were prepared by co-precipitation, then the surface of purified MNPs was coated with chondroitin-sulfate-A (CSA) to obtain core-shell structured magnetite nanoparticles (CSA@MNP). The effect of the added amount of CSA on the surface charging and the aggregation state of MNPs at various pHs and 10 mM NaCl was measured by electrophoresis and dynamic light scattering. The am-photeric behavior of MNPs was fundamentally modified by adsorption of CSA polyanions. A very low CSA-loading induces the aggregation of MNPs, while four times more stabilizes the dispersions over the whole pH-range studied. The coagulation kinetics experiments measured at pH=6.3 ±0.3 showed that salt tolerance of CSA@MNPs rises up to ~ 150 mM NaCl.
机译:多糖是制造具有潜在体内用途的生物相容性核壳纳米粒子的有希望的候选者。超顺磁性磁铁矿纳米颗粒(MNPs)在诊断和治疗方面都有前瞻性应用,因此在MNP核上开发新型多糖壳具有很大的挑战。通过共沉淀制备MNP,然后用硫酸软骨素-A(CSA)涂覆纯化的MNP表面,以获得核-壳结构磁铁矿纳米颗粒(CSA @ MNP)。通过电泳和动态光散射测量了CSA的添加量对各种pH和10 mM NaCl下MNPs的表面电荷和聚集状态的影响。通过吸附CSA聚阴离子从根本上改变了MNPs的两性行为。极低的CSA负载量会引起MNP的聚集,而四倍的CSA量会在整个研究的pH范围内稳定分散液。在pH = 6.3±0.3的条件下进行的混凝动力学实验表明,CSA @ MNPs的耐盐性提高到〜150 mM NaCl。

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