Elci S Gokhan, Yan Bo, Kim Sung Tae, Saha Krishnendu, Jiang Ying, Klemmer Gunnar A, Moyano Daniel F, Tonga Gulen Yesilbag, Rotello Vincent M, Vachet Richard W
Deparment of Chemistry, University of Massachusetts, 710 North Pleasant Street, Amherst, MA 01002, USA.
Analyst. 2016 Apr 21;141(8):2418-25. doi: 10.1039/c6an00123h. Epub 2016 Mar 16.
Functionalized gold nanoparticles (AuNPs) have unique properties that make them important biomedical materials. Optimal use of these materials, though, requires an understanding of their fate in vivo. Here we describe the use of laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) to image the biodistributions of AuNPs in tissues from mice intravenously injected with AuNPs. We demonstrate for the first time that the distributions of very small (∼2 nm core) monolayer-protected AuNPs can be imaged in animal tissues at concentrations in the low parts-per-billion range. Moreover, the LA-ICP-MS images reveal that the monolayer coatings on the injected AuNPs influence their distributions, suggesting that the AuNPs remain intact in vivo and their surface chemistry influences how they interact with different organs. We also demonstrate that quantitative images of the AuNPs can be generated when the appropriate tissue homogenates are chosen for matrix matching. Overall, these results demonstrate the utility of LA-ICP-MS for tracking the fate of biomedically-relevant AuNPs in vivo, facilitating the design of improved AuNP-based therapeutics.
功能化金纳米颗粒(AuNPs)具有独特的性质,使其成为重要的生物医学材料。然而,要最佳地利用这些材料,需要了解它们在体内的命运。在此,我们描述了使用激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)对静脉注射AuNPs的小鼠组织中AuNPs的生物分布进行成像。我们首次证明,非常小(约2纳米核心)的单层保护AuNPs在动物组织中的分布可以在十亿分之几的低浓度范围内成像。此外,LA-ICP-MS图像显示,注射的AuNPs上的单层涂层会影响它们的分布,这表明AuNPs在体内保持完整,并且它们的表面化学性质会影响它们与不同器官的相互作用方式。我们还证明,当选择合适的组织匀浆进行基质匹配时,可以生成AuNPs的定量图像。总体而言,这些结果证明了LA-ICP-MS在追踪生物医学相关AuNPs在体内的命运方面的实用性,有助于设计改进的基于AuNP的疗法。