Cre/lox-assisted non-invasive in vivo tracking of specific cell populations by positron emission tomography

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Abstract

Many pathophysiological processes are associated with proliferation, migration or death of distinct cell populations. Monitoring specific cell types and their progeny in a non-invasive, longitudinal and quantitative manner is still challenging. Here we show a novel cell-tracking system that combines Cre/lox-assisted cell fate mapping with a thymidine kinase (sr39tk) reporter gene for cell detection by positron emission tomography (PET). We generate Rosa26-mT/sr39tk PET reporter mice and induce sr39tk expression in platelets, T lymphocytes or cardiomyocytes. As proof of concept, we demonstrate that our mouse model permits longitudinal PET imaging and quantification of T-cell homing during inflammation and cardiomyocyte viability after myocardial infarction. Moreover, Rosa26-mT/sr39tk mice are useful for whole-body characterization of transgenic Cre mice and to detect previously unknown Cre activity. We anticipate that the Cre-switchable PET reporter mice will be broadly applicable for non-invasive long-term tracking of selected cell populations in vivo.

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Thunemann, M., Schörg, B. F., Feil, S., Lin, Y., Voelkl, J., Golla, M., … Feil, R. (2017). Cre/lox-assisted non-invasive in vivo tracking of specific cell populations by positron emission tomography. Nature Communications , 8(1). https://doi.org/10.1038/s41467-017-00482-y

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