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October 24, 2019Nature Communications291 citationsOpen Access

Fate-mapping post-hypoxic tumor cells reveals a ROS-resistant phenotype that promotes metastasis

IGInês GodetMemorial Sloan Kettering Cancer CenterYSYu Jung ShinJohns Hopkins UniversityJJJulia A. JuUniversity of Maryland, Baltimore

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Abstract

gradients as well as to quantify their contribution to metastatic spread. We demonstrate the ability of the system to fate-map hypoxic cells in 2D, and in 3D spheroids and organoids. We identify distinct gene expression patterns in cells that experienced intratumoral hypoxia in vivo compared to cells exposed to hypoxia in vitro. The intratumoral hypoxia gene-signature is a better prognostic indicator for distant metastasis-free survival. Post-hypoxic tumor cells have an ROS-resistant phenotype that provides a survival advantage in the bloodstream and promotes their ability to establish overt metastasis. Post-hypoxic cells retain an increase in the expression of a subset of hypoxia-inducible genes at the metastatic site, suggesting the possibility of a 'hypoxic memory.'

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Godet et al. (2019) studied this question.

synapsesocial.com/papers/69fdaf3cf8347cff7f5d209fhttps://doi.org/10.1038/s41467-019-12412-1
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