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January 25, 2026International Journal of Molecular Sciences2 citationsOpen Access

Targeting ATR-CHK1 and ATM-CHK2 Axes in Pancreatic Cancer—A Comprehensive Review of Literature

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MKMateusz KciukKWKerstin WankeBMBeata Marciniak

Key Points

  • The aim is to review the effectiveness of targeting ATR-CHK1 and ATM-CHK2 pathways in treating pancreatic cancer.
  • Conducted a comprehensive literature review on ATR-CHK1 and ATM-CHK2 axes in pancreatic cancer.
  • Summarized preclinical findings on the effects of ATR and ATM inhibition.
  • Analyzed early-phase clinical trials of ATR inhibitors.
  • Evaluated the potential of biomarker-driven precision oncology strategies.
  • ATR inhibition disrupts replication stress tolerance and enhances cytotoxicity from standard therapies.
  • Synergistic effects seen when combining ATR inhibitors with other DDR-targeted therapies.
  • Genomic contexts refine therapeutic sensitivity, supporting tailored treatment approaches.
  • Early-phase clinical trials show promising safety and efficacy for ATR inhibitors in pancreatic cancer.

Abstract

Pancreatic cancer (PC) remains a highly lethal malignancy with limited treatment options and poor survival. Targeting DNA damage response (DDR) pathways has emerged as a promising therapeutic strategy, particularly the ATR-CHK1 and ATM-CHK2 axes. Preclinical studies demonstrate that ATR inhibition disrupts replication stress tolerance, impairs homologous recombination, and disables checkpoint control, enhancing cytotoxicity from standard therapies including gemcitabine, FOLFIRINOX, fluoropyrimidines, and radiotherapy. Synergistic effects have also been observed with other DDR-targeted agents, such as PARP and WEE1 inhibitors. Genomic contexts, including ATM deficiency, ARID1A alterations, and oncogene-driven replication stress, refine therapeutic sensitivity, supporting precision patient stratification. Early-phase clinical trials of ATR inhibitors (ART0380, AZD6738, BBI-355) alone or in combination show promising safety, tolerability, and preliminary efficacy. In this review, we summarize current literature on targeting the ATM-CHK2 and ATR-CHK1 pathways in PC, highlighting preclinical evidence, clinical developments, and strategies for biomarker-driven, precision oncology approaches.

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Cite This Study

Kciuk et al. (2026) studied this question.

synapsesocial.com/papers/6975b2c8feba4585c2d6e4ddhttps://doi.org/10.3390/ijms27031152
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