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生物组织中纳米材料的亚器官分布的定量成像 激光烧蚀电感耦合等离子体质谱法。

Quantitative imaging of the sub-organ distributions of nanomaterials in biological tissues laser ablation inductively coupled plasma mass spectrometry.

机构信息

Department of Chemistry, University of Massachusetts, 710 North Pleasant Street, Amherst, MA 01002, USA.

出版信息

Analyst. 2023 Sep 11;148(18):4479-4488. doi: 10.1039/d3an00839h.

Abstract

Nanomaterials have been employed in many biomedical applications, and their distributions in biological systems can provide an understanding of their behavior . Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) can be used to determine the distributions of metal-based NMs in biological systems. However, LA-ICP-MS has not commonly been used to quantitatively measure the cell-specific or sub-organ distributions of nanomaterials in tissues. Here, we describe a new platform that uses spiked gelatin standards with control tissues on top to obtain an almost perfect tissue mimic for quantitative imaging purposes. In our approach, gelatin is spiked with both nanomaterial standards and an internal standard to improve quantitation and image quality. The value of the developed approach is illustrated by determining the sub-organ distributions of different metal-based and metal-tagged polymeric nanomaterials in mice organs. The LA-ICP-MS images reveal that the chemical and physical properties of the nanomaterials cause them to distribute in quantitatively different extents in spleens, kidneys, and tumors, providing new insight into the fate of nanomaterials . Furthermore, we demonstrate that this approach enables quantitative co-localization of nanomaterials and their cargo. We envision this method being a valuable tool in the development of nanomaterial drug delivery systems.

摘要

纳米材料已被应用于许多生物医学领域,其在生物系统中的分布可以帮助我们理解它们的行为。激光烧蚀电感耦合等离子体质谱(LA-ICP-MS)可用于测定生物系统中基于金属的纳米材料的分布。然而,LA-ICP-MS 通常不用于定量测量组织中纳米材料的细胞特异性或亚器官分布。在这里,我们描述了一个新的平台,该平台使用顶部带有对照组织的加标明胶标准品,以获得几乎完美的组织模拟物,用于定量成像目的。在我们的方法中,明胶中同时加入纳米材料标准品和内标品,以提高定量和图像质量。通过确定不同金属基和金属标记聚合物纳米材料在小鼠器官中的亚器官分布,说明了所开发方法的价值。LA-ICP-MS 图像显示,纳米材料的化学和物理性质导致它们在脾脏、肾脏和肿瘤中的分布程度存在定量差异,为纳米材料的命运提供了新的见解。此外,我们证明了这种方法能够实现纳米材料及其货物的定量共定位。我们设想这种方法将成为纳米药物输送系统开发的有用工具。

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