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氧化铈纳米材料具有双重抗氧化清除能力:合成与表征。

Cerium oxide nanomaterial with dual antioxidative scavenging potential: Synthesis and characterization.

机构信息

University of Central Florida, Advanced Materials Processing and Analysis Center, Orlando, FL, USA.

Amity University Chhattisgarh, Amity Institute of Biotechnology, Raipur, C.G, India.

出版信息

J Biomater Appl. 2021 Nov;36(5):834-842. doi: 10.1177/08853282211013451. Epub 2021 Apr 28.

Abstract

Many studies have linked reactive oxygen species (ROS) to various diseases. Biomedical research has therefore sought a way to control and regulate ROS produced in biological systems. In recent years, cerium oxide nanoparticles (nanoceria, CNPs) have been pursued due to their ability to act as regenerative ROS scavengers. In particular, they are shown to have either superoxide dismutase (SOD) or catalase mimetic (CAT) potential depending on the ratio of Ce/Ce valence states. Moreover, it has been demonstrated that SOD mimetic activity can be diminished by the presence of phosphate, which can be a problem given that many biological systems operate in a phosphate-rich environment. Herein, we report a CNP formulation with both SOD and catalase mimetic activity that is preserved in a phosphate-rich media. Characterization demonstrated a highly dispersed, stable solution of uniform-sized, spherical-elliptical shaped CNP of 12 ± 2 nm, as determined through dynamic light scattering, zeta potential, and transmission electron microscopy. Mixed valence states of Ce ions were observed via UV/Visible spectroscopy and XPS (Ce/Ce > 1) (Ce∼ 62%). X-ray diffraction and XPS confirmed the presence of oxygen-deficient cerium oxide (CeO) particles. Finally, the CNP demonstrated very good biocompatibility and efficient reduction of hydrogen peroxide under conditions.

摘要

许多研究已经将活性氧物种 (ROS) 与各种疾病联系起来。因此,生物医学研究一直在寻找一种方法来控制和调节生物系统中产生的 ROS。近年来,由于氧化铈纳米粒子 (CNP) 具有作为再生 ROS 清除剂的能力,因此受到了关注。特别是,根据 Ce/Ce 价态比,它们显示出具有超氧化物歧化酶 (SOD) 或过氧化氢酶模拟物 (CAT) 的潜力。此外,已经证明 SOD 模拟活性可以被磷酸盐所减弱,这在许多生物系统在富含磷酸盐的环境中运行的情况下可能是一个问题。在此,我们报告了一种具有 SOD 和 CAT 模拟活性的 CNP 制剂,它在富含磷酸盐的介质中得以保留。通过动态光散射、Zeta 电位和透射电子显微镜,对其进行了表征,结果表明该制剂为具有均一尺寸、球形-椭圆形的 CNP 的高度分散、稳定的溶液,粒径为 12 ± 2nm。通过紫外/可见光谱和 X 射线光电子能谱 (XPS) 观察到 Ce 离子的混合价态 (Ce/Ce>1) (Ce∼62%)。X 射线衍射和 XPS 证实了存在氧缺陷氧化铈 (CeO) 颗粒。最后,该 CNP 在条件下表现出非常好的生物相容性和对过氧化氢的有效还原。

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