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The DNA repair pathway as a therapeutic target to synergize with trastuzumab deruxtecan in HER2-targeted antibody-drug conjugate-resistant HER2-overexpressing breast cancer.
Lee, Jangsoon; Kida, Kumiko; Koh, Jiwon; Liu, Huey; Manyam, Ganiraju C; Gi, Young Jin; Rampa, Dileep R; Multani, Asha S; Wang, Jing; Jayachandran, Gitanjali; Lee, Dae-Won; Reuben, James M; Sahin, Aysegul; Huo, Lei; Tripathy, Debu; Im, Seock-Ah; Ueno, Naoto T.
Affiliation
  • Lee J; Section of Translational Breast Cancer Research and Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA. jlee@cc.hawaii.edu.
  • Kida K; Cancer Biology and Therapeutics, University of Hawai'I Cancer Center, 701 Ilalo Street, Room 622, Honolulu, HI, 96813, USA. jlee@cc.hawaii.edu.
  • Koh J; Present address: Cancer Biology Program, University of Hawai'I Cancer Center, 701 Ilalo Street, Honolulu, HI, 96813, USA. jlee@cc.hawaii.edu.
  • Liu H; Section of Translational Breast Cancer Research and Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
  • Manyam GC; Present address: Department of Breast Surgical Oncology, St. Luke's International Hospital, 9-1, Akashicho, Chuouku, Tokyo, 104-8560, Japan.
  • Gi YJ; Cancer Research Institute, Seoul National University, Seoul, Republic of Korea.
  • Rampa DR; Department of Pathology, Seoul National University Hospital, Seoul National University College of Medicine, Seoul, Republic of Korea.
  • Multani AS; Section of Translational Breast Cancer Research and Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
  • Wang J; Department of Bioinformatics and Computational Biology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
  • Jayachandran G; Section of Translational Breast Cancer Research and Department of Breast Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
  • Lee DW; Cancer Biology and Therapeutics, University of Hawai'I Cancer Center, 701 Ilalo Street, Room 622, Honolulu, HI, 96813, USA.
  • Reuben JM; Cancer Biology and Therapeutics, University of Hawai'I Cancer Center, 701 Ilalo Street, Room 622, Honolulu, HI, 96813, USA.
  • Sahin A; Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
  • Huo L; Department of Genetics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
  • Tripathy D; Department of Hematopathology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
  • Im SA; Cancer Research Institute, Seoul National University, Seoul, Republic of Korea.
  • Ueno NT; Department of Internal Medicine, Seoul National University Hospital, Seoul National University College of Medicine, 101 Daehak-Ro Jongro-Gu, Seoul, 03080, Republic of Korea.
J Exp Clin Cancer Res ; 43(1): 236, 2024 Aug 21.
Article in En | MEDLINE | ID: mdl-39164784
ABSTRACT

BACKGROUND:

Anti-HER2 therapies, including the HER2 antibody-drug conjugates (ADCs) trastuzumab emtansine (T-DM1) and trastuzumab deruxtecan (T-DXd), have led to improved survival outcomes in patients with HER2-overexpressing (HER2+) metastatic breast cancer. However, intrinsic or acquired resistance to anti-HER2-based therapies remains a clinical challenge in these patients, as there is no standard of care following disease progression. The purpose of this study was to elucidate the mechanisms of resistance to T-DM1 and T-DXd in HER2+ BC patients and preclinical models and identify targets whose inhibition enhances the antitumor activity of T-DXd in HER2-directed ADC-resistant HER2+ breast cancer in vitro and in vivo.

METHODS:

Targeted DNA and whole transcriptome sequencing were performed in breast cancer patient tissue samples to investigate genetic aberrations that arose after anti-HER2 therapy. We generated T-DM1 and T-DXd-resistant HER2+ breast cancer cell lines. To elucidate their resistance mechanisms and to identify potential synergistic kinase targets for enhancing the efficacy of T-DXd, we used fluorescence in situ hybridization, droplet digital PCR, Western blotting, whole-genome sequencing, cDNA microarray, and synthetic lethal kinome RNA interference screening. In addition, cell viability, colony formation, and xenograft assays were used to determine the synergistic antitumor effect of T-DXd combinations.

RESULTS:

We found reduced HER2 expression in patients and amplified DNA repair-related genes in patients after anti-HER2 therapy. Reduced ERBB2 gene amplification in HER2-directed ADC-resistant HER2+ breast cancer cell lines was through DNA damage and epigenetic mechanisms. In HER2-directed ADC-resistant HER2+ breast cancer cell lines, our non-biased RNA interference screening identified the DNA repair pathway as a potential target within the canonical pathways to enhance the efficacy of T-DXd. We validated that the combination of T-DXd with ataxia telangiectasia and Rad3-related inhibitor, elimusertib, led to significant breast cancer cell death in vitro (P < 0.01) and in vivo (P < 0.01) compared to single agents.

CONCLUSIONS:

The DNA repair pathways contribute to HER2-directed ADC resistance. Our data justify exploring the combination treatment of T-DXd with DNA repair-targeting drugs to treat HER2-directed ADC-resistant HER2+ breast cancer in clinical trials.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Breast Neoplasms / Receptor, ErbB-2 / Immunoconjugates / Drug Resistance, Neoplasm / DNA Repair / Trastuzumab Limits: Animals / Female / Humans Language: En Journal: J Exp Clin Cancer Res Year: 2024 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Breast Neoplasms / Receptor, ErbB-2 / Immunoconjugates / Drug Resistance, Neoplasm / DNA Repair / Trastuzumab Limits: Animals / Female / Humans Language: En Journal: J Exp Clin Cancer Res Year: 2024 Document type: Article Affiliation country: