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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Cytotoxicity of ZnO Nanoparticles Can Be Tailored by Modifying Their Surface Structure: A Green Chemistry Approach for Safer Nanomaterials
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Cytotoxicity of ZnO Nanoparticles Can Be Tailored by Modifying Their Surface Structure: A Green Chemistry Approach for Safer Nanomaterials

机译:可以通过修改ZnO纳米颗粒的表面结构来调整其细胞毒性:一种用于安全纳米材料的绿色化学方法

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ZnO nanoparticles (NP) are extensively used in numerous nanotechnology applications; however, they also happen to be one of the most toxic nanomaterials. This raises significant environmental and health concerns and calls for the need to develop new synthetic approaches to produce safer ZnO NP, while preserving their attractive optical, electronic, and structural properties. In this work, we demonstrate that the cytotoxicity of ZnO NP can be tailored by modifying their surface-bound chemical groups, while maintaining the core ZnO structure and related properties. Two equally sized (9.26 ± 0.11 nm) ZnO NP samples were synthesized from the same zinc acetate precursor using a forced hydrolysis process, and their surface chemical structures were modified by using different reaction solvents. X-ray diffraction and optical studies showed that the lattice parameters, optical properties, and band gap (3.44 eV) of the two ZnO NP samples were similar. However, FTIR spectroscopy showed significant differences in the surface structures and surface-bound chemical groups. This led to major differences in the zeta potential, hydrodynamic size, photocatalytic rate constant, and more importantly, their cytotoxic effects on Hut-78 cancer cells. The ZnO NP sample with the higher zeta potential and catalytic activity displayed a 1.5-fold stronger cytotoxic effect on cancer cells. These results suggest that by modifying the synthesis parameters/conditions and the surface chemical structures of the nanocrystals, their surface charge density, catalytic activity, and cytotoxicity can be tailored. This provides a green chemistry approach to produce safer ZnO NP.
机译:ZnO纳米颗粒(NP)被广泛用于许多纳米技术应用中。然而,它们也恰巧是毒性最高的纳米材料之一。这引起了对环境和健康的重大关注,并要求开发新的合成方法来生产更安全的ZnO NP,同时保留其有吸引力的光学,电子和结构特性。在这项工作中,我们证明了可以通过修饰ZnO NP的表面结合化学基团来调节ZnO NP的细胞毒性,同时保持ZnO核心结构和相关特性。使用强制水解方法从相同的乙酸锌前体合成了两个大小相等(9.26±0.11 nm)的ZnO NP样品,并通过使用不同的反应溶剂修饰了它们的表面化学结构。 X射线衍射和光学研究表明,两个ZnO NP样品的晶格参数,光学性质和带隙(3.44 eV)相似。但是,FTIR光谱显示表面结构和表面结合的化学基团存在显着差异。这导致了zeta电位,流体动力学大小,光催化速率常数的主要差异,更重要的是,它们对Hut-78癌细胞的细胞毒性作用。具有较高ζ电势和催化活性的ZnO NP样品对癌细胞的毒性作用强1.5倍。这些结果表明,通过改变合成参数/条件和纳米晶体的表面化学结构,可以调整其表面电荷密度,催化活性和细胞毒性。这提供了一种绿色化学方法来生产更安全的ZnO NP。

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