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LP-184, a Novel Acylfulvene Molecule, Exhibits Anticancer Activity against Diverse Solid Tumors with Homologous
Aditya Kulkarni1, Jianli Zhou1, Neha Biyani1
1Lantern Pharma Inc., Dallas, Texas.
Abstract:
Homologous recombination (HR)-related gene alterations are present in a significant subset of prostate, breast, ovarian, pancreatic, lung, and colon cancers rendering these tumors as potential responders to specific DNA damaging agents. A small molecule acylfulvene prodrug, LP-184, metabolizes to an active compound by the oxidoreductase activity of enzyme prostaglandin reductase 1 (PTGR1), which is frequently elevated in multiple solid tumor types. Prior work demonstrated that cancer cell lines deficient in a spectrum of DNA damage repair (DDR) pathway genes show increased susceptibility to LP-184. Here, we investigated the potential of LP-184 in targeting multiple tumors with impaired HR function and its mechanism of action as a DNA damaging agent. LP-184 induced elevated DNA double-strand breaks in HR deficient (HRD) cancer cells. Depletion of key HR components BRCA2 or ataxia telangiectasia mutated (ATM) in cancer cells conferred up to 12-fold increased sensitivity to the LP-184. LP-184 showed nanomolar potency in a diverse range of HRD cancer models, including prostate cancer organoids, leiomyosarcoma cell lines, and patient-derived tumor graft models of lung, pancreatic, and prostate cancers. LP-184 demonstrated complete, durable tumor regression in 10 patient-derived xenograft (PDX) models of HRD triple-negative breast cancer (TNBC) including those resistant to PARP inhibitors (PARPi). LP-184 further displayed strong synergy with PARPi in ovarian and prostate cancer cell lines as well as in TNBC PDX models. These preclinical findings illustrate the potential of LP-184 as a pan-HRD cancer therapeutic. Taken together, our results support continued clinical evaluation of LP-184 in a large subset of HRD solid tumors.
Significance:
New agents with activity against DDR-deficient solid tumors refractory to standard-of-care therapies are needed. We report multiple findings supporting the potential for LP-184, a novel alkylating agent with three FDA orphan drug designations, to fill this void clinically: strong nanomolar potency; sustained, durable regression of solid tumor xenografts; synthetic lethality with HR defects. LP-184 adult phase IA trial to assess safety in advanced solid tumors is ongoing.
Insights
LP-184, a novel DNA damaging agent, shows significant promise in treating various cancers with homologous recombination deficiency (HRD). This drug demonstrated potent anti-tumor activity and synergy with existing therapies in preclinical models, supporting its clinical evaluation.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Homologous recombination (HR)-related gene alterations are common in several solid tumors, including prostate, breast, ovarian, lung, and colon cancers.
- These alterations suggest potential sensitivity to DNA damaging agents.
- The small molecule acylfulvene prodrug LP-184 is activated by prostaglandin reductase 1 (PTGR1), an enzyme often elevated in solid tumors.
Purpose of the Study:
- To investigate the efficacy of LP-184 in targeting tumors with impaired HR function.
- To elucidate the mechanism of action of LP-184 as a DNA damaging agent.
- To evaluate LP-184's potential as a pan-HRD cancer therapeutic.
Main Methods:
- Assessed LP-184's ability to induce DNA double-strand breaks in HR-deficient (HRD) cancer cells.
- Determined sensitivity to LP-184 upon depletion of key HR components BRCA2 and ATM.
- Evaluated LP-184's potency in various HRD cancer models, including organoids and patient-derived xenografts (PDXs).
- Investigated synergy between LP-184 and PARP inhibitors (PARPi).
Main Results:
- LP-184 induced elevated DNA double-strand breaks in HRD cancer cells.
- Depletion of BRCA2 or ATM increased sensitivity to LP-184 by up to 12-fold.
- LP-184 exhibited nanomolar potency across diverse HRD cancer models.
- Complete and durable tumor regression was observed in HRD triple-negative breast cancer (TNBC) PDX models, including those resistant to PARPi.
- LP-184 showed strong synergy with PARPi in ovarian and prostate cancer cell lines and TNBC PDX models.
Conclusions:
- LP-184 demonstrates significant potential as a therapeutic agent for a broad range of HRD solid tumors.
- Preclinical findings support the continued clinical evaluation of LP-184 in patients with HRD cancers.
- LP-184 represents a promising novel agent for treating DDR-deficient solid tumors refractory to current therapies.
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