Laboratory-Based Correlative Soft X-ray and Fluorescence Microscopy in an Integrated Setup

Author:

Reinhard Julius12ORCID,Kaleta Sophia1ORCID,Abel Johann Jakob1,Wiesner Felix1ORCID,Wünsche Martin12ORCID,Seemann Eric3ORCID,Westermann Martin4ORCID,Weber Thomas1,Nathanael Jan12ORCID,Iliou Alexander5ORCID,Fiedorowicz Henryk6ORCID,Hillmann Falk57ORCID,Eggeling Christian89ORCID,Paulus Gerhard G12ORCID,Fuchs Silvio1210ORCID

Affiliation:

1. Institute of Optics and Quantum Electronics, Friedrich Schiller University Jena , Max-Wien-Platz 1 07743 Jena, Germany

2. Helmholtz Institute Jena, GSI Helmholtzzentrum für Schwerionenforschung GmbH , Fraunhofer Str. 8 , 07743 Jena, Germany

3. Institute of Biochemistry I, Jena University Hospital , Nonnenplan 2 , 07743 Jena, Germany

4. Electron Microscopy Center, Jena University Hospital , Ziegelmühlenweg 1 , 07743 Jena, Germany

5. Leibniz Institute for Natural Product Research and Infection Biology, Hans Knöll Institute (Leibniz- HKI) , Adolf-Reichwein-Str. 23 , 07745 Jena, Germany

6. Institute of Optoelectronics, Military University of Technology , Kaliskiego 2 , 00-908 Warsaw, Poland

7. Biochemistry/Biotechnology, Faculty of Engineering, Hochschule Wismar University of Applied Sciences Technology, Business and Design , Philipp-Müller-Str. 14 , 23966 Wismar, Germany

8. Leibniz Institute of Photonic Technology e.V. , Albert-Einstein Strasse 9 , 07745 Jena, Germany

9. Institute of Applied Optics and Biophysics, Friedrich Schiller University Jena , Max-Wien-Platz 1 , 07743 Jena, Germany

10. Laserinstitut Hochschule Mittweida, University of Applied Science Mittweida , Technikumplatz 17 , 09648 Mittweida, Germany

Abstract

Abstract Correlative microscopy is a powerful technique that combines the advantages of multiple imaging modalities to achieve a comprehensive understanding of investigated samples. For example, fluorescence microscopy provides unique functional contrast by imaging only specifically labeled components, especially in biological samples. However, the achievable structural information on the sample in its full complexity is limited. Here, the intrinsic label-free carbon contrast of water window soft X-ray microscopy can complement fluorescence images in a correlative approach ultimately combining nanoscale structural resolution with functional contrast. However, soft X-ray microscopes are complex and elaborate, and are usually installed on large-scale synchrotron radiation sources due to the demanding photon flux requirements. Yet, with modern high-power lasers it has become possible to generate sufficient photon flux from laser-produced plasmas, thus enabling laboratory-based setups. Here, we present a compact table-top soft X-ray microscope with an integrated epifluorescence modality for “in situ” correlative imaging. Samples remain in place when switching between modalities, ensuring identical measurement conditions and avoiding sample alteration or destruction. We demonstrate our new method by multimodal images of several exemplary samples ranging from nanoparticles to various multicolor labeled cell types. A structural resolution of down to 50 nm was reached.

Funder

Deutsche Forschungsgemeinschaft

NCN

Laserlab Europe

Publisher

Oxford University Press (OUP)

Subject

Instrumentation

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