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Inhibition of WEE1 Potentiates Sensitivity to PARP Inhibitor in Biliary Tract Cancer

Cited 11 time in Web of Science Cited 12 time in Scopus
Authors

Seo, Hye-Rim; Nam, Ah-Rong; Bang, Ju-Hee; Oh, Kyoung-Seok; Kim, Jae-Min; Yoon, Jeesun; Kim, Tae-Yong; Oh, Do-Youn

Issue Date
2022-04
Publisher
대한암학회
Citation
Cancer Research and Treatment, Vol.54 No.2, pp.541-553
Abstract
Purpose Up to 20% of patients with biliary tract cancer (BTC) have alterations in DNA damage response (DDR) genes, including homologous recombination (HR) genes. Therefore, the DDR pathway could be a promising target for new drug development in BTC. We aim to investigate the anti-tumor effects using poly(ADP-ribose) polymerase (PARP) and WEE1 inhibitors in BTC. Materials and Methods We used 10 BTC cell lines to evaluate an anti-tumor effect of olaparib (a PARP inhibitor) and AZD1775 (a WEE1 inhibitor) in in vitro. Additionally, we established SNU869 xenograft model for in vivo experiments. Results In this study, we observed a modest anti-proliferative effect of olaparib. DNA double-strand break (DSB) and apoptosis were increased by olaparib in BTC cells. However, olaparib-induced DNA DSB was repaired through the HR pathway, and G2 arrest was induced to secure the time for repair. As AZD1775 typically regulates the G2/M checkpoint, we combined olaparib with AZD1775 to abrogate G2 arrest. We observed that AZD1775 downregulated p-CDK1, a G2/M cell cycle checkpoint protein, and induced early mitotic entry. AZD1775 also decreased CtIP and RAD51 expression and disrupted HR repair. In xenograft model, olaparib plus AZD1775 treatment reduced tumor growth more potently than did monotherapy with either drug. Conclusion This is the first study to suggest that olaparib combined with AZD1775 can induce synergistic anti-tumor effects against BTC. Combination therapy that blocks dual PARP and WEE1 has the potential to be further clinically developed for BTC patients.
ISSN
1598-2998
URI
https://hdl.handle.net/10371/212746
DOI
https://doi.org/10.4143/crt.2021.473
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  • College of Medicine
  • Department of Medicine
Research Area DNA 손상 반응 타겟 물질의 면역조절 효과, Effect of DNA damage response target substances on immunomodulatory action, Efficacy and biomarker validation studies of targeted therapeutics, Resistance mechanisms according to targeted therapeutics, 표적 항암제 내성 기전 연구, 표적 항암제의 효과 검증 및 바이오마커 규명

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