Systemic hypoxia suppresses solid tumor growth
Midha, A. D.; Chew, B. T. L.; Choi, B. M. H.; Suh, J. M.; Carpenter, C.; Baik, A. H.; Joshi, T.; Blume, S. Y.; Haribowo, A. G.; Ruivo, P.; Flanigan, W. R.; Garg, A.; Zhang, D. D.; Subramanyam, V.; Shuere, R.; Seo, Y.; VanBrocklin, H.; Goodarzi, H.; Jain, I. H.
Show abstract
Local hypoxia is a hallmark of solid tumors and a negative prognostic factor in the progression and treatment of cancer. Here, we showed that systemic hypoxia, in contrast to localized tumor hypoxia, decreases tumor growth in vivo across multiple cancer types and preclinical models. The reduced tumor growth in systemic hypoxia was not explained by hypoglycemia, hypoinsulinemia, or HIF activation. Instead, metabolite profiling in tumors and tumor interstitial fluid revealed extensive perturbations in purine-related metabolites. Stable isotope tracing demonstrated that systemic hypoxia caused tumors to suppress de novo purine synthesis. Furthermore, tumors did not develop resistance to systemic hypoxia therapy, and when used in combination with chemotherapy or immunotherapy, systemic hypoxia dramatically suppressed tumor growth. Finally, we showed that systemic hypoxia can be achieved pharmacologically with the small molecule HypoxyStat. These findings challenge the long-held paradigm of hypoxia as a negative prognostic factor in cancer progression, and they suggest a potential therapeutic role for systemic hypoxia in suppressing solid tumor growth.
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