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Updated: May 15, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Dual Disruption of DNA Repair by a Novel CHK2 Inhibitor, ART-446, and Olaparib is a Promising Strategy for
Hong-Jun Kang1, Young-Woo Kang1, Ha-Young Lee1
1Arum therapeutics, Seoul 07793, Republic of Korea.
Abstract:
Triple-negative breast cancer (TNBC) is an aggressive cancer subtype lacking targeted therapies and is characterized by high recurrence rates and poor prognosis. Recent advances in targeting DNA damage response (DDR) pathways using poly (ADP‒ribose) polymerase (PARP) inhibitors offer promising therapeutic strategies, especially for TNBC patients with BRCA1/2 mutations. This study reports the development and characterization of ART-446, a novel and selective CHK2 inhibitor. ART-446 showed potent activity against TNBC, regardless of BRCA deficiency, and it also reversed PARP inhibitor resistance. ART-446 potently inhibited CHK2 (IC50: 9.06 nM) with high selectivity over other kinases; it synergized with the PARP inhibitor olaparib, enhancing DNA damage, inducing G2/M cell cycle arrest, and promoting apoptosis in both BRCA-mutant and wild-type TNBC cells. Mechanistic analyses revealed that ART-446 sensitized BRCA mutant and WT cells to PARP inhibitors by impairing DNA repair and increasing the accumulation of DNA damage. Importantly, ART-446 disrupted both homologous recombination and nonhomologous end-joining repair pathways, addressing a key limitation of PARP inhibitor monotherapy-resistance in BRCA-proficient cancers. In vivo, the combination of ART-446 and olaparib significantly reduced tumor growth in TNBC xenograft models without noticeable toxicity. The combined treatment increased DNA damage signaling, as evidenced by elevated γH2AX levels, and enhanced the sensitivity of BRCA2-deficient cells to ART-446. These findings underscore the potential of ART-446 to exploit DNA repair deficiencies and overcome resistance mechanisms associated with PARP inhibitors. By addressing the limitations of current treatments and expanding the utility of PARP inhibitors, ART-446 represents a promising candidate for DDR-targeted therapies, offering a novel approach to improve the outcomes of patients with TNBC.
Insights
A new drug, ART-446, a CHK2 inhibitor, shows promise for treating triple-negative breast cancer (TNBC) by enhancing DNA damage and overcoming resistance to PARP inhibitors, even in BRCA-proficient tumors.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Triple-negative breast cancer (TNBC) is aggressive with limited targeted therapies.
- Poly (ADP-ribose) polymerase (PARP) inhibitors show promise, particularly for BRCA-mutated TNBC.
- Resistance to PARP inhibitors is a significant clinical challenge.
Purpose of the Study:
- To develop and characterize ART-446, a novel selective CHK2 inhibitor.
- To evaluate ART-446's efficacy in TNBC, including its ability to overcome PARP inhibitor resistance.
- To investigate the mechanisms underlying ART-446's activity and synergy with PARP inhibitors.
Main Methods:
- Chemical synthesis and characterization of ART-446.
- In vitro assays to assess CHK2 inhibition, selectivity, and synergy with olaparib in TNBC cells.
- Mechanistic studies on DNA repair pathways (homologous recombination and nonhomologous end-joining).
- In vivo efficacy studies using TNBC xenograft models.
Main Results:
- ART-446 potently and selectively inhibits CHK2 (IC50: 9.06 nM).
- ART-446 synergizes with olaparib, enhancing DNA damage, cell cycle arrest, and apoptosis in TNBC cells (BRCA-mutant and wild-type).
- ART-446 impairs DNA repair, sensitizing cells to PARP inhibitors and overcoming resistance in BRCA-proficient cancers.
- Combination therapy significantly reduced tumor growth in vivo with no apparent toxicity.
Conclusions:
- ART-446 is a potent CHK2 inhibitor with significant anti-TNBC activity.
- ART-446 overcomes PARP inhibitor resistance by disrupting DNA repair pathways.
- ART-446 in combination with PARP inhibitors offers a promising therapeutic strategy for TNBC.
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