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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Effect of sonication on particle dispersion, administered dose and metal release of non-functionalized, non-inert metal nanoparticles
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Effect of sonication on particle dispersion, administered dose and metal release of non-functionalized, non-inert metal nanoparticles

机译:超声处理对非功能化,非惰性金属纳米粒子的颗粒分散,给药剂量和金属释放的影响

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摘要

In this study, we elucidate the effect of different sonication techniques to efficiently prepare particle dispersions from selected non-functionalized NPs (Cu, Al, Mn, ZnO), and corresponding consequences on the particle dose, surface charge and release of metals. Probe sonication was shown to be the preferred method for dispersing non-inert, non-functionalized metal NPs (Cu, Mn, Al). However, rapid sedimentation during sonication resulted in differences between the real and the administered doses in the order of 30-80 % when sonicating in 1 and 2.56 g/L NP stock solutions. After sonication, extensive agglomeration of the metal NPs resulted in rapid sedimentation of all particles. DLVO calculations supported these findings, showing the strong van der Waals forces of the metal NPs to result in significant NP agglomeration. Metal release from the metal NPs was slightly increased by increased sonication. The addition of a stabilizing agent (bovine serum albumin) had an accelerating effect on the release of metals in sonicated solutions. For Cu and Mn NPs, the extent of particle dissolution increased from <1.6 to similar to 5 % after sonication for 15 min. A prolonged sonication time (3-15 min) had negligible effects on the zeta potential of the studied NPs. In all, it is shown that it is of utmost importance to carefully investigate how sonication influences the physicochemical properties of dispersed metal NPs. This should be considered in nanotoxicology investigations of metal NPs.
机译:在这项研究中,我们阐明了不同超声处理技术从选定的非功能化NP(Cu,Al,Mn,ZnO)有效制备颗粒分散体的效果,以及对颗粒剂量,表面电荷和金属释放的相应影响。探针超声处理是分散非惰性,非功能化金属NP(Cu,Mn,Al)的首选方法。但是,在1和2.56 g / L NP储备液中进行超声处理时,超声处理过程中的快速沉降导致实际剂量与给药剂量之间的差异约为30-80%。超声处理后,金属NP的大量团聚导致所有颗粒快速沉降。 DLVO计算结果支持了这些发现,表明金属NP的强大范德华力导致大量NP团聚。通过增加超声处理,金属NP中的金属释放量略有增加。添加稳定剂(牛血清白蛋白)对超声处理溶液中金属的释放具有促进作用。对于铜和锰纳米颗粒,超声处理15分钟后,颗粒溶解程度从<1.6增加到大约5%。延长的超声处理时间(3-15分钟)对所研究NP的Zeta电位影响可忽略不计。总而言之,最重要的是仔细研究超声处理如何影响分散的金属NP的物理化学性质。在金属NP的纳米毒理学研究中应考虑到这一点。

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