Nanomaterials and Toxicology Lab, Division of Biological and Life Sciences, School of Arts and Sciences, Central Campus, Ahmedabad University, Navrangpura, Ahmedabad 380009, Gujarat, India.
Inorg Chem. 2021 May 17;60(10):7475-7489. doi: 10.1021/acs.inorgchem.1c00766. Epub 2021 May 3.
The biological enzyme-mimetic activity of cerium oxide nanoparticles (CeNPs) is well known to scavenge the reactive oxygen and nitrogen species in cell culture and animal models, imparting protection from the deleterious effects of oxidative and nitrosative stress. The superoxide dismutase (SOD)- and catalase-mimicking activity of CeNPs is reported to be controlled by the oxidation state of the surface "Ce" ions, where a high ratio of Ce or Ce has been considered for the displayed SOD and catalase-like activity, respectively. However, the redox behavior of CeNPs can be controlled by certain ligands that could offer changes in their enzyme-mimetic properties. Therefore, in this work, we have studied the enzyme-mimetic activities of CeNPs under the influence of polyoxometalates [phosphomolybdic acid (PMA) and phosphotungstic acid (PTA)], which are electron-dense molecules displaying quick and reversible multielectron redox reactions. Results revealed that the interaction of PMA with CeNPs results in the inhibition of the SOD-like activity; however, it has no impact on the catalase-like activity. Contrary to this, the interaction of PTA with CeNPs improved the SOD as well as catalase-like activities of CeNPs (3+), which generally do not exhibit catalase activity in the bare form. Although CeNPs (3+) did not show any peroxidase-like activity, CeNPs (4+) showed excellent activity, which was enhanced after the interaction with polyoxometalates. Further, the autoregeneration ability of CeNPs was found to be intact even after PTA or PMA interaction; however, the full catalytic activity was observed in the case of PTA but partially with PMA.
氧化铈纳米粒子(CeNPs)的生物酶模拟活性众所周知,可清除细胞培养和动物模型中的活性氧和氮物种,从而防止氧化和硝化应激的有害影响。据报道,CeNPs 的超氧化物歧化酶(SOD)和过氧化氢酶模拟活性受表面“Ce”离子氧化态控制,其中高比例的 Ce 或 Ce 分别被认为具有显示的 SOD 和过氧化氢酶样活性。然而,CeNPs 的氧化还原行为可以通过某些配体来控制,这些配体可以改变其酶模拟特性。因此,在这项工作中,我们研究了多酸[磷钼酸(PMA)和磷钨酸(PTA)]对 CeNPs 酶模拟活性的影响,多酸是显示快速可逆多电子氧化还原反应的电子密集分子。结果表明,PMA 与 CeNPs 的相互作用导致 SOD 样活性受到抑制;然而,它对过氧化氢酶样活性没有影响。与此相反,PTA 与 CeNPs 的相互作用提高了 CeNPs(3+)的 SOD 和过氧化氢酶样活性(3+),通常在裸露形式下不表现出过氧化氢酶活性。虽然 CeNPs(3+)本身没有过氧化物酶样活性,但 CeNPs(4+)表现出优异的活性,并且在与多酸相互作用后进一步增强。此外,即使在 PTA 或 PMA 相互作用后,CeNPs 的自动再生能力也被发现完好无损;然而,在 PTA 的情况下观察到完全的催化活性,但在 PMA 的情况下部分观察到。