Gene expression detection in developing mouse tissue using in situ hybridization and µCT imaging

Author:

Väänänen Vilma1ORCID,Christensen Mona M.1ORCID,Suhonen Heikki2,Jernvall Jukka13ORCID

Affiliation:

1. Institute of Biotechnology, University of Helsinki, Helsinki FI-00014, Finland

2. Department of Physics, University of Helsinki, Helsinki FI-00014, Finland

3. Department of Geosciences and Geography, University of Helsinki, Helsinki FI-00014, Finland

Abstract

High resolution and noninvasiveness have made soft-tissue X-ray microtomography (µCT) a widely applicable three-dimensional (3D) imaging method in studies of morphology and development. However, scarcity of molecular probes to visualize gene activity with µCT has remained a challenge. Here, we apply horseradish peroxidase–assisted reduction of silver and catalytic gold enhancement of the silver deposit to in situ hybridization in order to detect gene expression in developing tissues with µCT (here called GECT, gene expression CT). We show that GECT detects expression patterns of collagen type II alpha 1 and sonic hedgehog in developing mouse tissues comparably with an alkaline phosphatase–based detection method. After detection, expression patterns are visualized with laboratory µCT, demonstrating that GECT is compatible with varying levels of gene expression and varying sizes of expression regions. Additionally, we show that the method is compatible with prior phosphotungstic acid staining, a conventional contrast staining approach in µCT imaging of soft tissues. Overall, GECT is a method that can be integrated with existing laboratory routines to obtain spatially accurate 3D detection of gene expression.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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