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Stability of gum arabic-gold nanoparticles in physiological simulated pHs and their selective effect on cell lines

机译:生理模拟PHS中牙龈阿拉伯金纳米粒子的稳定性及其对细胞系的选择性作用

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For the safe use of nanoparticles, especially in the biomedical field, their stability in different environments and the prevention of binding to the component organisms, which could lead to nanoparticle aggregation, is indispensable. Herein, we present a simple, efficient and biologically based method to obtain small gum arabic (GA)-stabilized gold nanoparticles (GA-AuNPs) with remarkable stability in physiological pHs. The in vitro stability tests in intestinal (pH 6.8) and gastric (pH 1.2) simulated pHs revealed that GA-AuNPs exhibit a surprisingly high stability even near the zero zeta potential. When subjected to GA-AuNPs, changes in the viability, proliferation and morphology were selectively induced in the B16-F10 melanoma cell line, whereas no alterations in the macrophage cell line, RAW 264.7, or in the fibroblast cell line, BALB/3T3, were observed at the same concentrations. Therefore, considering the remarkable stability and selective effect on cell lines, we show that GA-AuNPs exhibit properties that could provide a future alternative for melanoma treatment.
机译:为了安全使用纳米颗粒,特别是在生物医学领域,它们在不同环境中的稳定性和预防与组分生物的结合,这可能导致纳米颗粒聚集是必不可少的。在此,我们介绍了一种简单,有效和生物学基于的方法,以获得小胶阿拉伯(GA)-Stabilized的金纳米颗粒(Ga-AuNP),具有显着稳定性的生理pH。肠道(pH6.8)和胃(pH1.2)的体外稳定性试验模拟pHS显示Ga-AUNP甚至在零Zeta电位附近表现出令人惊讶的高稳定性。当受到GA-AUNPS时,在B16-F10黑色素瘤细胞系中选择性地诱导活力,增殖和形态的变化,而巨噬细胞系,RAW 264.7或成纤维细胞系,BALB / 3T3中没有任何改变。以相同的浓度观察到。因此,考虑到对细胞系的显着稳定性和选择性效果,我们表明GA-AUNPS表现出可提供对黑色素瘤治疗的未来替代品的性质。

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