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Publication : Circadian rhythms of macrophages are altered by the acidic tumor microenvironment.

First Author  Knudsen-Clark AM Year  2024
Journal  EMBO Rep Volume  25
Issue  11 Pages  5080-5112
PubMed ID  39415049 Mgi Jnum  J:359983
Mgi Id  MGI:7781292 Doi  10.1038/s44319-024-00288-2
Citation  Knudsen-Clark AM, et al. (2024) Circadian rhythms of macrophages are altered by the acidic tumor microenvironment. EMBO Rep 25(11):5080-5112
abstractText  Tumor-associated macrophages (TAMs) are prime therapeutic targets due to their pro-tumorigenic functions, but varying efficacy of macrophage-targeting therapies highlights our incomplete understanding of how macrophages are regulated within the tumor microenvironment (TME). The circadian clock is a key regulator of macrophage function, but how circadian rhythms of macrophages are influenced by the TME remains unknown. Here, we show that conditions associated with the TME such as polarizing stimuli, acidic pH, and lactate can alter circadian rhythms in macrophages. While cyclic AMP (cAMP) has been reported to play a role in macrophage response to acidic pH, our results indicate pH-driven changes in circadian rhythms are not mediated solely by cAMP signaling. Remarkably, circadian disorder of TAMs was revealed by clock correlation distance analysis. Our data suggest that heterogeneity in circadian rhythms within the TAM population level may underlie this circadian disorder. Finally, we report that circadian regulation of macrophages suppresses tumor growth in a murine model of pancreatic cancer. Our work demonstrates a novel mechanism by which the TME influences macrophage biology through modulation of circadian rhythms.
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