logo

Omeprazole Enhances Olaparib-Associated Cytotoxicity in Gastric Cancer Cells: Metabolic and Transcriptional Responses

Authors
  • Negar Taghavi Pourianazar

    Medical Laboratory Techniques, Vocational School of Health Services, Istanbul Aydin University, Istanbul, Turkey
Keywords:
Gastric cancer, Olaparib, Omeprazole, PARP inhibition, Metabolic perturbation, Transcriptional response
Abstract

Gastric cancer remains a major therapeutic challenge, and the clinical activity of poly(ADP-ribose) polymerase inhibitors such as olaparib may be limited in tumors without established DNA-repair vulnerabilities. This study investigated the effects of combining olaparib with the proton-pump inhibitor omeprazole in AGS and MKN45 gastric cancer cells. Cell viability and cytotoxicity were evaluated using MTS and LDH assays. Oxidative DNA-damage-associated signal, gene expression, lactate production, intracellular ATP, glucose uptake, and Caspase-3 activity were assessed using ELISA-based, quantitative PCR, and colorimetric methods. Under the tested in-vitro conditions, omeprazole enhanced the olaparib-associated reduction in MTS signal and increased LDH release. Combination-index analysis indicated concentration- and cell-line-dependent interactions: all tested AGS combinations had CI values below 1, although the lowest AGS combination was close to additivity, whereas the lowest tested MKN45 combination was antagonistic and the remaining tested MKN45 combinations had CI values below 1. Combination treatment was associated with an increased 8-OHdG signal, reduced lactate production, decreased intracellular ATP levels and glucose uptake, and altered expression of BRCA1, RAD51, GLUT1/SLC2A1, HK2, LDHA, MCT4/SLC16A3, p21/CDKN1A, and p16/CDKN2A. Increased Caspase-3 activity was consistent with enhanced apoptosis-associated signaling. The observed changes in BRCA1 and RAD51 transcript levels suggest a potential modulation of DNA-repair-related responses, although their functional significance remains to be established. Overall, these findings support further investigation of the olaparib–omeprazole combination as a hypothesis-generating strategy in gastric cancer models, with future studies required to clarify its molecular basis and translational relevance.

Downloads
Download data is not yet available.
References

[1] Sung H, Ferlay J, Siegel RL, Laversanne M, Soerjomataram I, Jemal A, Bray F. Global Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 Countries. CA Cancer J Clin 2021; 71(3): 209-249.

https://doi.org/10.3322/caac.21660

[2] Smyth EC, Nilsson M, Grabsch HI, van Grieken NC, Lordick F. Gastric cancer. Lancet 2020; 396(10251): 635-648.

https://doi.org/10.1016/S0140-6736(20)31288-5

[3] Sitarz R, Skierucha M, Mielko J, Offerhaus GJA, Maciejewski R, Polkowski WP. Gastric cancer: epidemiology, prevention, classification, and treatment. Cancer Manag Res 2018; 10: 239-248.

https://doi.org/10.2147/CMAR.S149619

[4] Cancer Genome Atlas Research Network. Comprehensive molecular characterization of gastric adenocarcinoma. Nature 2014; 513(7517): 202-9.

https://doi.org/10.1038/nature13480

[5] Bryant HE, Schultz N, Thomas HD, Parker KM, Flower D, Lopez E, Kyle S, Meuth M, Curtin NJ, Helleday T. Specific killing of BRCA2-deficient tumours with inhibitors of poly(ADP-ribose) polymerase. Nature 2005; 434(7035): 913-7. doi: 10.1038/nature03443. Erratum in: Nature 2007; 447(7142): 346.

https://doi.org/10.1038/nature03443

[6] Farmer H, McCabe N, Lord CJ, Tutt AN, Johnson DA, Richardson TB, Santarosa M, Dillon KJ, Hickson I, Knights C, Martin NM, Jackson SP, Smith GC, Ashworth A. Targeting the DNA repair defect in BRCA mutant cells as a therapeutic strategy. Nature 2005; 434(7035): 917-21.

https://doi.org/10.1038/nature03445

[7] Lord CJ, Ashworth A. PARP inhibitors: Synthetic lethality in the clinic. Science 2017; 355(6330): 1152-1158.

https://doi.org/10.1126/science.aam7344

[8] Jackson SP, Bartek J. The DNA-damage response in human biology and disease. Nature 2009; 461(7267): 1071-8.

https://doi.org/10.1038/nature08467

[9] Mateo J, Lord CJ, Serra V, Tutt A, Balmaña J, Castroviejo-Bermejo M, Cruz C, Oaknin A, Kaye SB, de Bono JS. A decade of clinical development of PARP inhibitors in perspective. Ann Oncol 2019; 30(9): 1437-1447.

https://doi.org/10.1093/annonc/mdz192

[10] Bang YJ, Xu RH, Chin K, Lee KW, Park SH, Rha SY, Shen L, Qin S, Xu N, Im SA, Locker G, Rowe P, Shi X, Hodgson D, Liu YZ, Boku N. Olaparib in combination with paclitaxel in patients with advanced gastric cancer who have progressed following first-line therapy (GOLD): a double-blind, randomised, placebo-controlled, phase 3 trial. Lancet Oncol 2017; 18(12): 1637-1651.

https://doi.org/10.1016/S1470-2045(17)30682-4

[11] Golan T, Hammel P, Reni M, Van Cutsem E, Macarulla T, Hall MJ, Park JO, Hochhauser D, Arnold D, Oh DY, Reinacher-Schick A, Tortora G, Algül H, O'Reilly EM, McGuinness D, Cui KY, Schlienger K, Locker GY, Kindler HL. Maintenance Olaparib for Germline BRCA-Mutated Metastatic Pancreatic Cancer. N Engl J Med 2019; 381(4): 317-327.

https://doi.org/10.1056/NEJMoa1903387

[12] de Bono J, Mateo J, Fizazi K, Saad F, Shore N, Sandhu S, et al. Olaparib for metastatic castration-resistant prostate cancer. N Engl J Med 2020; 382: 2091-102.

https://doi.org/10.1056/NEJMoa1911440

[13] Mirza MR, Monk BJ, Herrstedt J, Oza AM, Mahner S, Redondo A, Fabbro M, Ledermann JA, Lorusso D, Vergote I, Ben-Baruch NE, Marth C, Mądry R, Christensen RD, Berek JS, Dørum A, Tinker AV, du Bois A, González-Martín A, Follana P, Benigno B, Rosenberg P, Gilbert L, Rimel BJ, Buscema J, Balser JP, Agarwal S, Matulonis UA; ENGOT-OV16/NOVA Investigators. Niraparib Maintenance Therapy in Platinum-Sensitive, Recurrent Ovarian Cancer. N Engl J Med 2016; 375(22): 2154-2164.

https://doi.org/10.1056/NEJMoa1611310

[14] Spugnini EP, Citro G, Fais S. Proton pump inhibitors as anti vacuolar-ATPases drugs: a novel anticancer strategy. J Exp Clin Cancer Res 2010; 29(1): 44.

https://doi.org/10.1186/1756-9966-29-44

[15] Ikemura K, Hiramatsu S, Okuda M. Drug Repositioning of Proton Pump Inhibitors for Enhanced Efficacy and Safety of Cancer Chemotherapy. Front Pharmacol 2017; 8: 911.

https://doi.org/10.3389/fphar.2017.00911

[16] Bridoux M, Simon N, Turpin A. Proton Pump Inhibitors and Cancer: Current State of Play. Front Pharmacol 2022; 13: 798272.

https://doi.org/10.3389/fphar.2022.798272

[17] Raoul JL, Hansten PD. Proton pump inhibitors and cancer treatments: Emerging evidence against coadministration. Cancer Treat Rev 2024; 129: 102794.

https://doi.org/10.1016/j.ctrv.2024.102794

[18] Vander Heiden MG, Cantley LC, Thompson CB. Understanding the Warburg effect: the metabolic requirements of cell proliferation. Science 2009; 324(5930): 1029-1033.

https://doi.org/10.1126/science.1160809

[19] Barba I, Carrillo-Bosch L, Seoane J. Targeting the Warburg Effect in Cancer: Where Do We Stand? Int J Mol Sci 2024; 25(6): 3142.

https://doi.org/10.3390/ijms25063142

[20] Liberti MV, Locasale JW. The Warburg Effect: How Does it Benefit Cancer Cells?. Trends Biochem Sci 2016; 41(3): 211-218.

https://doi.org/10.1016/j.tibs.2015.12.001

[21] Hay N. Reprogramming glucose metabolism in cancer: can it be exploited for cancer therapy? Nat Rev Cancer 2016; 16(10): 635-49.

https://doi.org/10.1038/nrc.2016.77

[22] Torgovnick A, Schumacher B. DNA repair mechanisms in cancer development and therapy. Front Genet 2015; 6: 157.

https://doi.org/10.3389/fgene.2015.00157

[23] Feng T, Xie F, Lee LMY, et al. Cellular senescence in cancer: from mechanism paradoxes to precision therapeutics. Mol Cancer 2025; 24(1): 213.

https://doi.org/10.1186/s12943-025-02419-2

[24] Chou TC. Drug combination studies and their synergy quantification using the Chou–Talalay method. Cancer Res 2010; 70: 440-446.

https://doi.org/10.1158/0008-5472.CAN-09-1947

[25] Adhireksan Z, Palermo G, Riedel T, Ma Z, Muhammad R, Rothlisberger U, Davey CA. Allosteric cross-talk in chromatin can mediate drug–drug synergy. Nat. Commun 2017; 8: 14860.

https://doi.org/10.1038/ncomms14860

[26] Chen H, Hu Y, Zhuang Z, Wang D, Ye Z, Jing J, Cheng X. Advancements and Obstacles of PARP Inhibitors in Gastric Cancer. Cancers (Basel) 2023; 15(21): 5114.

https://doi.org/10.3390/cancers15215114

[27] Shi J, Zhang X, Li J, Huang W, Wang Y, Wang Y, Qin J. MTA2 sensitizes gastric cancer cells to PARP inhibition by induction of DNA replication stress. Transl Oncol 2021; 14(10): 101167.

https://doi.org/10.1016/j.tranon.2021.101167

[28] Lim SH, Sa JK, Lee DW, Kim J, Kim ST, Park SH, Ku B, Park JO, Park YS, Lim H, Kang WK, Nam DH, Lee J. Systematic Evaluation of Gastric Tumor Cell Index and Two-Drug Combination Therapy via 3-Dimensional High-Throughput Drug Screening. Front Oncol 2019; 9: 1327.

https://doi.org/10.3389/fonc.2019.01327

[29] Cecchini M, Cleary JM, Shyr Y, Chao J, Uboha N, Cho M, Shields A, Pant S, Goff L, Spencer K, Kim E, Stein S, Kortmansky JS, Canosa S, Sklar J, Swisher EM, Radke M, Ivy P, Boerner S, Durecki DE, Hsu CY, LoRusso P, Lacy J. NCI10066: a Phase 1/2 study of olaparib in combination with ramucirumab in previously treated metastatic gastric and gastroesophageal junction adenocarcinoma. Br J Cancer 2024; 130(3): 476-482.

https://doi.org/10.1038/s41416-023-02534-1

[30] Golan T, Hammel P, Reni M, Van Cutsem E, Macarulla T, Hall MJ, Park JO, Hochhauser D, Arnold D, Oh DY, Reinacher-Schick A, Tortora G, Algül H, O'Reilly EM, McGuinness D, Cui KY, Schlienger K, Locker GY, Kindler HL. Maintenance Olaparib for Germline BRCA-Mutated Metastatic Pancreatic Cancer. N Engl J Med 2019; 381(4): 317-327.

https://doi.org/10.1056/NEJMoa1903387

[31] Luciani F, Spada M, De Milito A, Molinari A, Rivoltini L, Montinaro A, Marra M, Lugini L, Logozzi M, Lozupone F, Federici C, Iessi E, Parmiani G, Arancia G, Belardelli F, Fais S. Effect of proton pump inhibitor pretreatment on resistance of solid tumors to cytotoxic drugs. J Natl Cancer Inst 2004; 96(22): 1702-13.

https://doi.org/10.1093/jnci/djh305

[32] Feng S, Qiu G, Yang L, et al. Omeprazole improves chemosensitivity of gastric cancer cells by m6A demethylase FTO-mediated activation of mTORC1 and DDIT3 up-regulation. Biosci Rep 2021; 41(1): BSR20200842.

https://doi.org/10.1042/BSR20200842

[33] Wang X, Liu C, Wang J, Fan Y, Wang Z, Wang Y. Proton pump inhibitors increase the chemosensitivity of patients with advanced colorectal cancer. Oncotarget 2017; 8(35): 58801-58808.

https://doi.org/10.18632/oncotarget.18522

[34] Lee YY, Jeon HK, Hong JE, Cho YJ, Ryu JY, Choi JJ, Lee SH, Yoon G, Kim WY, Do IG, Kim MK, Kim TJ, Choi CH, Lee JW, Bae DS, Kim BG. Proton pump inhibitors enhance the effects of cytotoxic agents in chemoresistant epithelial ovarian carcinoma. Oncotarget 2015; 6(33): 35040-50.

https://doi.org/10.18632/oncotarget.5319

[35] Joo MK, Park JJ, Chun HJ. Proton pump inhibitor: The dual role in gastric cancer. World J Gastroenterol 2019; 25(17): 2058-2070.

https://doi.org/10.3748/wjg.v25.i17.2058

[36] Ikemura K, Hiramatsu S, Okuda M. Drug Repositioning of Proton Pump Inhibitors for Enhanced Efficacy and Safety of Cancer Chemotherapy. Front Pharmacol 2017; 8: 911.

https://doi.org/10.3389/fphar.2017.00911

[37] Bridoux M, Simon N, Turpin A. Proton Pump Inhibitors and Cancer: Current State of Play. Front Pharmacol 2022; 13: 798272.

https://doi.org/10.3389/fphar.2022.798272

[38] Ma J, Motsinger-Reif A. Current Methods for Quantifying Drug Synergism. Proteom Bioinform 2019; 1(2): 43-48.

[39] Roell KR, Reif DM. Motsinger-Reif AA/ An Introduction to Terminology and Methodology of Chemical Synergy—Perspectives from Across Disciplines. Front. Pharmacol 2017; 8: 158.

https://doi.org/10.3389/fphar.2017.00158

[40] Riss TL, Moravec RA, Niles AL, Duellman S, Benink HA, Worzella TJ, Minor L. Cell Viability Assays 2013 May 1 [updated 2016 Jul 1]. In: Markossian S, Grossman A, Baskir H, Arkin M, Auld D, Austin C, Baell J, Brimacombe K, Chung TDY, Coussens NP, Dahlin JL, Devanarayan V, Foley TL, Glicksman M, Gorshkov K, Grotegut S, Hall MD, Hoare S, Inglese J, Iversen PW, Lal-Nag M, Li Z, Manro JR, McGee J, Norvil A, Pearson M, Riss T, Saradjian P, Sittampalam GS, Tarselli MA, Trask OJ Jr, Weidner JR, Wildey MJ, Wilson K, Xia M, Xu X, editors. Assay Guidance Manual [Internet]. Bethesda (MD): Eli Lilly & Company and the National Center for Advancing Translational Sciences 2004.

[41] Chan GK, Kleinheinz TL, Peterson D, Moffat JG. A simple high-content cell cycle assay reveals frequent discrepancies between cell number and ATP and MTS proliferation assays. PLoS One 2013; 8(5): e63583.

https://doi.org/10.1371/journal.pone.0063583

[42] Coyle JP, Johnson C, Jensen J, Farcas M, Derk R, Stueckle TA, Kornberg TG, Rojanasakul Y, Rojanasakul LW. Variation in pentose phosphate pathway-associated metabolism dictates cytotoxicity outcomes determined by tetrazolium reduction assays. Sci Rep 2023; 13(1): 8220.

https://doi.org/10.1038/s41598-023-35310-5

[43] TeSlaa T, Teitell MA. Techniques to monitor glycolysis. Methods Enzymol 2014; 542: 91-114.

https://doi.org/10.1016/B978-0-12-416618-9.00005-4

[44] Valavanidis A, Vlachogianni T, Fiotakis C. 8-hydroxy-2′-deoxyguanosine (8-OHdG ): a critical biomarker of oxidative stress-induced carcinogenesis. Journal of Environmental Science and Health, Part C 2009; 27: 120-139.

https://doi.org/10.1080/10590500902885684

[45] Chiorcea-Paquim AM. 8-Oxoguanine and 8-oxodeoxyguanosine biomarkers of oxidative DNA damage: a review on HPLC–ECD determination. Molecules 2022; 27: 1620.

https://doi.org/10.3390/molecules27051620

Downloads
Published
30-09-2026
Section
Articles
License

Copyright (c) 2026 Negar Taghavi Pourianazar

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

How to Cite

Omeprazole Enhances Olaparib-Associated Cytotoxicity in Gastric Cancer Cells: Metabolic and Transcriptional Responses. (2026). Journal of Cancer Research Updates, 15(3), 314-327. https://doi.org/10.30683/1929-2279.2026.15.28

Similar Articles

111-120 of 224

You may also start an advanced similarity search for this article.