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载铈生物活性碳复合材料兼具抗氧化、抗淀粉样变和辐射防护效能。

Bioactive Carbon@CeO Composites as Efficient Antioxidants with Antiamyloid and Radioprotective Potentials.

机构信息

V. I. Vernadsky Institute of General & Inorganic Chemistry of the NAS of Ukraine, 32/34 Palladina Avenue, Kyiv 03142, Ukraine.

Institute of Experimental Physics, Slovak Academy of Science, Watsonova 47, Kosice 040 01, Slovakia.

出版信息

ACS Appl Bio Mater. 2024 Oct 21;7(10):6749-6767. doi: 10.1021/acsabm.4c00912. Epub 2024 Sep 25.

Abstract

Blending carbon particles (CPs) and nanoscale bioactive cerium dioxide is a promising approach for designing composites for biomedical applications, combining the sorption and antioxidant potentials of each individual component. To address this issue, it is crucial to assess the correlation between the components' ratio, physicochemical parameters, and biofunctionality of the composites. Thus, the current research was aimed at fabricating C@CeO composites with different molar ratios and the examination of how the parameters of the composites affect their bioactivity. XRD, X-ray photoelectron spectroscopy, and electron microscopy data verified the formation of C@CeO composites. CeO nanoparticles (NPs) of 4-6 nm are highly dispersed on the surfaces of amorphous CPs. The presence of CeO NPs on the carbon surface decreased its adsorption potential in a dose-dependent manner. Besides, the coexistence of carbon and CeO in a single composite promotes some redox interactions between O-functionalities and Ce/Ce species, resulting in changes in the chemical state of the surface of the composites. These observations suggest the strong connection between these parameters and the biofunctionality of the composites. The presence of CeO NPs on the surface of carbon led to a significant increase in the stability of the prepared composites in their aqueous suspensions. The enhancement of bioactivity of the newly prepared C@CeO compared to bare carbon and CeO was validated by testing their pseudomimetic (catalase/peroxidase-like and superoxide dismutase-like), antiamyloid, and radioprotective activities.

摘要

将碳颗粒 (CPs) 和纳米级生物活性二氧化铈混合是设计用于生物医学应用的复合材料的一种很有前途的方法,将每个单独成分的吸附和抗氧化潜力结合在一起。为了解决这个问题,评估各成分的比例、物理化学参数和复合材料的生物功能之间的相关性至关重要。因此,目前的研究旨在制备不同摩尔比的 C@CeO 复合材料,并研究复合材料的参数如何影响其生物活性。XRD、X 射线光电子能谱和电子显微镜数据验证了 C@CeO 复合材料的形成。4-6nm 的 CeO 纳米颗粒 (NPs) 高度分散在无定形 CPs 的表面上。CeO NPs 在碳表面的存在以剂量依赖的方式降低了其吸附潜力。此外,碳和 CeO 在单个复合材料中共存促进了 O 官能团和 Ce/Ce 物种之间的一些氧化还原相互作用,导致复合材料表面的化学状态发生变化。这些观察结果表明这些参数与复合材料的生物功能之间存在很强的联系。CeO NPs 存在于碳表面导致制备的复合材料在其水悬浮液中的稳定性显著提高。通过测试其拟酶(过氧化氢酶/过氧化物酶样和超氧化物歧化酶样)、抗淀粉样、和放射保护活性,验证了新制备的 C@CeO 与纯碳和 CeO 相比具有更高的生物活性。

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