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Methylene Blue-Fortified Molybdenum Trioxide Nanoparticles: Harnessing Radical Scavenging Property

机译:二氧化亚甲基蓝强化二氧化钼纳米粒子:利用激进的清除性能

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摘要

A hybrid nanosystem with impeccable cellular imaging and antioxidant functionality is demonstrated. The microwave irradiation-derived molybdenum trioxide nanoparticles (MoO3 NPs) were surface-functionalized with the cationic dye molecule, methylene blue (MB), which enables superior UV-visible absorbance and fluorescence emission wavelengths potential for bioimaging. The radical scavenging property of the pristine MoO3 NPs and MoO3-MB NPs were studied in vivo using Caenorhabditis elegans as the model system. Heat shock-induced oxidative stress in C. elegans was significantly resolved by the MoO3-MB NPs, in agreement with the in vitro radical scavenging study by electron paramagnetic resonance spectroscopy. Hybrid nanostructures of MoO3-MB demonstrate synergistic benefits in intracellular imaging with intrinsic biocompatibility and antioxidant behavior, which can facilitate application as advanced healthcare materials toward bioimaging and clinical therapeutics.
机译:证明了一种具有无可挑剔的细胞成像和抗氧化功能的杂化纳米系统。 用阳离子染料分子,亚甲基蓝(MB)表面官能化微波辐射衍生的二氧化钼纳米颗粒(MOO3 NPS),其能够使UV可见光吸光度和荧光发射波长的生物分析能力。 使用Caenorhabditis elegans作为模型系统,在体内研究了原始MOO3 NPS和MOO3-MB NPS的自由基清除性能。 MOO3-MB NPS与电子顺磁共振光谱法的体外自由基清除研究一致,显着解决了C.杆状杆菌中的热休克诱导的氧化胁迫。 MOO3-MB的杂化纳米结构在细胞内成像中表现出具有内在生物相容性和抗氧化行为的协同效果,这可以促进应用于先进的医疗保健材料,以朝向生物体和临床治疗方法。

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