ATR inhibition promotes synergistic antitumor effect in platinum-resistant pancreatic cancer

Jung Won Chun1, Hye Won Shon2, Jeong Eun Gong2

  • 1Center for Liver and Pancreatobiliary Cancer, National Cancer Center, 323 Ilsan-ro, Ilsandong-gu, Goyang-si, Gyeonggi-do 10408, Republic of Korea; Research Institute, National Cancer Center, 323 Ilsan-ro, Ilsandong-gu, Goyang-si, Gyeonggi-do 10408, Republic of Korea; Cancer Biomedical Science, National Cancer Center Graduate School of Cancer Science and Policy, National Cancer Center, 323 Ilsan-ro, Ilsandong-gu, Goyang-si, Gyeonggi-do 10408, Republic of Korea.

Abstract

Insights

Combining ATR inhibitor BAY 1895344 with oxaliplatin shows promise for overcoming oxaliplatin resistance in pancreatic cancer (PC). This approach enhances DNA damage and cell death, reducing tumor growth in preclinical models.

Area of Science:

  • Oncology
  • Cancer Therapeutics
  • Drug Resistance Mechanisms

Background:

  • Pancreatic cancer (PC) treatment faces challenges due to drug resistance, particularly to platinum-based chemotherapy like oxaliplatin.
  • Targeting DNA damage repair pathways is a key strategy to overcome platinum resistance in PC.
  • The ATR inhibitor BAY 1895344 is explored for its potential to re-sensitize oxaliplatin-resistant PC.

Purpose of the Study:

  • To investigate the efficacy of combining the ATR inhibitor BAY 1895344 with oxaliplatin in overcoming oxaliplatin resistance in pancreatic cancer.
  • To evaluate the impact of this combination on DNA damage response (DDR) signaling, apoptosis, and tumor growth in preclinical models.

Main Methods:

  • Oxaliplatin-resistant pancreatic cancer cell lines (CFPAC-1, Capan-2) were treated with oxaliplatin, BAY 1895344, or both, in vitro and in vivo.
  • Assessed effects on DNA damage response (DDR) pathway, apoptosis, and DNA damage extent.
  • Utilized organoid models to predict patient response.

Main Results:

  • Combination therapy demonstrated synergistic effects on both PC cell lines, notably enhancing efficacy in Capan-2.
  • The combination significantly suppressed phospho-Chk1, a key DDR and cell cycle regulator.
  • ATR inhibition potentiated oxaliplatin-induced DNA damage, leading to mitotic catastrophe and cell death, and reduced tumor growth in xenograft models.

Conclusions:

  • ATR inhibition potentiates the anticancer activity of oxaliplatin.
  • This combination strategy holds potential for overcoming platinum resistance in pancreatic cancer.
  • Findings were validated in patient-derived organoids resistant to oxaliplatin.

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