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April 21, 2026Experimental Hematology and Oncology3 citationsOpen Access

Metabolic drivers of genome instability in cancer: mechanisms and therapeutic opportunities

YWYu-Shun WangLQLi-Heng QianCLCuicui Liu

Key Points

  • The research aims to explore how specific metabolic changes contribute to genome instability in cancer and potential therapeutic avenues.
  • Synthesis of emerging studies linking metabolic reprogramming with genome instability.
  • Overview of metabolic pathways that induce DNA damage and replication stress.
  • Proposed framework for targeting metabolism-induced genome instability in therapeutic designs.
  • Identified metabolites as active regulators of genome instability rather than passive by-products.
  • Highlighted the interplay between specific metabolic pathways and DNA damage response.
  • Proposed that manipulating metabolic pathways could enhance the effectiveness of standard cancer therapies.

Abstract

Metabolic reprogramming and genome instability represent two fundamental hallmarks of cancer. Emerging studies now demonstrate that specific metabolic alterations directly fuel replication stress, DNA damage, and compromised DNA damage response. This underscores that metabolites are not merely passive by-products but active biochemical regulators of genome instability. Perturbation of specific metabolic pathways can preferentially unmask these vulnerabilities for therapeutic targeting. In this review, we propose an integrated framework highlighting metabolism-induced genome instability as a potential therapeutic target. By delineating the metabolic targets that induce genome instability, we provide a comprehensive overview of the complex interplay between metabolic pathways and genome stability. We further highlight that metabolism-induced genome instability can be strategically exploited to potentiate standard-of-care therapies. Collectively, these insights redefine metabolism-induced genome instability as a targetable vulnerability of cancer. This systematic synthesis provides a mechanistic rationale for next-generation therapeutic designs in which metabolic interventions are leveraged to convert genome instability into actionable clinical vulnerabilities.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69e7138bcb99343efc98cff1https://doi.org/10.1186/s40164-026-00775-3
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