Abstract 5827
Background
Immunotherapies are considered the most promising therapeutic approach for cancer and the immunosuppressive activity of ARG1 has been recognized as an important mechanism of the tumor immune evasion. This prompted the development of arginase inhibitors, which in preclinical models, enhanced antitumor immunity as a monotherapy and in combination with other immune checkpoint inhibitors. On the other hand, ARG2, but not ARG1, is highly expressed in neoplastic cells in many tumors and its expression is correlated with malignant phenotype. Preclinical studies confirmed that ARG2 promotes the proliferation of cancer cells and the growth of tumor xenografts independently of its immunosuppressive activity. Generation of polyamines to facilitate the growth of hypoxic and nutrient-deprived tumors, as well as specific metabolic adaptations including increased reliance on protein catabolism are the major mechanisms underlying the tumorigenic activity of ARG2. Hence, the tumor cell intrinsic activity of ARG2 represents an attractive intracellular target for novel therapies with arginase inhibitors.
Methods
The compound activity was determined using human ARG1 and ARG2, and in CHO-K cells expressing ARG1 and ARG2. ARG1 and ARG2 expression in cancer cell lines and dissected tumors was assessed by WB and qPCR. CellTiter-Glo was used to assess the antiproliferative activity of the compound. In vivo antitumor activity was evaluated in murine CT26 (syngeneic) and human K562 (xenograft) subcutaneous mouse models.
Results
The expression of the endogenous ARG2 was confirmed in multiple human cancer cell lines and xenografts. We developed a highly potent dual ARG1 and ARG2 inhibitor, OATD-02, with a good cellular activity. We demonstrated that OATD-02 inhibited proliferation of multiple human cancer cell lines expressing ARG2 and suppressed the growth of human xenografts. OATD-02 also strongly inhibited the growth of the syngeneic CT26 tumors.
Conclusions
OATD-02, a potent ARG1 and ARG2 inhibitor, exerts its antitumor efficacy not only by the reactivation of the immune response but also by directly suppressing the ARG2-dependent proliferation of cancerous cells. Thus, OATD-02 is a very promising compound for the treatment of hypoxic tumors which are particularly resistant to therapies.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
OncoArendi Therapeutics SA.
Funding
National Centre for Research and Development in Poland.
Disclosure
M.M. Grzybowski: Full / Part-time employment: OncoArendi Therapeutics SA. J. Pęczkowicz-Szyszka: Full / Part-time employment: OncoArendi Therapeutics SA. P. Wolska: Full / Part-time employment: OncoArendi Therapeutics SA. P.S. Stańczak: Full / Part-time employment: OncoArendi Therapeutics SA. M. Welzer: Full / Part-time employment: OncoArendi Therapeutics SA. E. Nikolaev: Full / Part-time employment: OncoArendi Therapeutics SA. A.M. Siwińska: Full / Part-time employment: OncoArendi Therapeutics SA. R. Błaszczyk: Full / Part-time employment: OncoArendi Therapeutics SA. B. Borek: Full / Part-time employment: OncoArendi Therapeutics SA. M. Dzięgielewski: Full / Part-time employment: OncoArendi Therapeutics SA. A. Gzik: Full / Part-time employment: OncoArendi Therapeutics SA. J. Nowicka: Full / Part-time employment: OncoArendi Therapeutics SA. J. Brzezińska: Full / Part-time employment: OncoArendi Therapeutics SA. K. Jędrzejczak: Full / Part-time employment: OncoArendi Therapeutics SA. J. Chrzanowski: Full / Part-time employment: OncoArendi Therapeutics SA. A. Gołębiowski: Leadership role, Full / Part-time employment: OncoArendi Therapeutics SA. J. Olczak: Leadership role, Full / Part-time employment: OncoArendi Therapeutics SA. P. Dobrzański: Leadership role, Full / Part-time employment: OncoArendi Therapeutics SA. All other authors have declared no conflicts of interest.
Resources from the same session
2316 - A 3D co-culture platform of breast cancer and patient derived immune cells to analyse the response to chemotherapy and immunotherapies
Presenter: Diana Saraiva
Session: Poster Display session 3
Resources:
Abstract
4290 - Characterization of the mechanism of action and efficacy of MEN1611 (PA799), a novel PI3K inhibitor, in breast cancer preclinical models.
Presenter: Alessio Fiascarelli
Session: Poster Display session 3
Resources:
Abstract
2167 - Neat-1: culprit lnRNA tying PIG-C, MSLN, CD80 in TNBC
Presenter: Nada Hussein
Session: Poster Display session 3
Resources:
Abstract
1829 - A novel RAF/MEK inhibitor CH5126766 in phase 1 clinical trial has an effectiveness in the combination with eribulin for the treatment of triple negative breast cancer
Presenter: Hisako Ono
Session: Poster Display session 3
Resources:
Abstract
4357 - Identification of a stemness-related gene panel associated with BET inhibition in triple negative breast cancer
Presenter: Eva Galan-Moya
Session: Poster Display session 3
Resources:
Abstract
5163 - Preclinical Evaluation targeting both IGF1R and IR in Triple Negative Breast Cancer
Presenter: Alex Eustace
Session: Poster Display session 3
Resources:
Abstract
832 - Monospecific antibody targeting of CDH11 inhibits epithelial-to-mesenchymal transition and represses cancer stem cell-like phenotype by up-regulating miR-335 in metastatic breast cancer, in vitro and in vivo.
Presenter: Jia-Hong Chen
Session: Poster Display session 3
Resources:
Abstract
3781 - Pharmacological screening with Chk1 inhibitors identify synergistic agents to overcome resistance to platinums in basal breast and ovarian cancer
Presenter: Ana Lucia Sanabria
Session: Poster Display session 3
Resources:
Abstract
3275 - Comparison of 11 circulating miRNAs and CA125 kinetics in ovarian cancer during first line treatment: data from the randomized CHIVA trial (a GINECO-GCIG study)
Presenter: Patrick Robelin
Session: Poster Display session 3
Resources:
Abstract
3391 - Inhibiting Ehmt2 and Ezh2 histone methyltransferases alters the immune microenvironment in a Trp53-/- murine ovarian cancer model
Presenter: Pavlina Spiliopoulou
Session: Poster Display session 3
Resources:
Abstract