Zamora-Perez Paula, Tsoutsi Dionysia, Xu Ruixue, Rivera Gil Pilar
Integrative Biomedical Materials and Nanomedicine Lab, Department of Experimental and Health Sciences (DCEXS), Pompeu Fabra University (UPF), PRBB, Barcelona 08003, Spain.
Materials (Basel). 2018 Feb 6;11(2):243. doi: 10.3390/ma11020243.
We review how the hyperspectral dark field analysis gives us quantitative insights into the manner that different nanoscale materials interact with their environment and how this relationship is directly expressed in an optical readout. We engage classification tools to identify dominant spectral signatures within a scene or to qualitatively characterize nanoparticles individually or in populations based on their composition and morphology. Moreover, we follow up the morphological evolution of nanoparticles over time and in different biological environments to better understand and establish a link between the observed nanoparticles' changes and cellular behaviors.
我们回顾了高光谱暗场分析如何为我们提供定量的见解,以了解不同纳米级材料与其环境相互作用的方式,以及这种关系如何直接在光学读数中体现。我们运用分类工具来识别场景内的主要光谱特征,或根据纳米颗粒的组成和形态对单个或群体的纳米颗粒进行定性表征。此外,我们追踪纳米颗粒在不同时间和不同生物环境中的形态演变,以更好地理解并建立观察到的纳米颗粒变化与细胞行为之间的联系。