Nanoparticles and Pop-off Technique for Electron Microscopy

Author:

Lehmbecker Annika123,Rittinghausen Susanne1,Rohn Kerstin2,Baumgärtner Wolfgang23,Schaudien Dirk1

Affiliation:

1. Fraunhofer Institute for Toxicology and Experimental Medicine, Hannover, Germany

2. Department of Pathology, University of Veterinary Medicine, Hannover, Germany

3. Center for Systems Neuroscience, Hannover, Germany

Abstract

Because of the size of the nanoparticles, their detection and exact anatomical localization in tissue samples are very difficult. Consequently, suitable methods are needed to prove their presence, especially co-localized to histological lesions. Therefore, the aim of this study was to investigate whether nanoparticles were detectable in specimens after reprocessing samples from glass slides using the pop-off technique. Tissue slides containing agglomerates of titanium dioxide nanoparticles already visible on a light microscopic level and amorphous silicium dioxide (SiO2) particles not observable in tissue slides were reprocessed. Furthermore, cytospots of bronchoalveolar lavage acquired from rats that previously inhaled carbon nanotubes were used. After reprocessing the samples, they were investigated using transmission electron microscopy. In all the reprocessed samples, the respective nanoparticles were detectable. Even the light microscopically invisible amorphous SiO2 particles were observed as electron dense structures. Titanium and silicium were additionally confirmed in the respective nanoparticles by energy-dispersive X-ray spectroscopy (EDX). In summary, the pop-off technique represents a fast and easy way to detect nanoparticles in histological sections. This enables further characterization of these particles by additional techniques such as EDX, and their direct correlation with light microscopic lesions at exactly the same location is investigated.

Publisher

SAGE Publications

Subject

Cell Biology,Toxicology,Molecular Biology,Pathology and Forensic Medicine

Reference24 articles.

1. Respiratory effects of manufactured nanoparticles

2. “Pop-off” Technic. The Ultrastructure of Paraffinembedded Sections

3. Environmental Protection Agency (EPA). (2004). Air Quality Criteria for Particulate Matter, Vol. III, 600/P–95-001cF. Washington, DC: Office of Research and development.

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