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A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
LX1 Dual Targets AR Variants and AKR1C3 in Advanced Prostate Cancer Therapy
Shu Ning1, Cameron M Armstrong1, Enming Xing2
1Department of Urologic Surgery, University of California Davis, Davis, California.
Abstract:
The development of resistance to current standard-of-care treatments, such as androgen receptor (AR) targeting therapies, remains a major challenge in the management of advanced prostate cancer. There is an urgent need for new therapeutic strategies targeting key resistant drivers, such as AR variants like AR-V7, and steroidogenic enzymes, such as aldo-keto reductase 1C3 (AKR1C3), to overcome drug resistance and improve outcomes for patients with advanced prostate cancer. Here, we have designed, synthesized, and characterized a novel class of LX compounds targeting both the AR/AR variants and AKR1C3 pathways. Molecular docking and in vitro studies demonstrated that LX compounds bind to the AKR1C3 active sites and inhibit AKR1C3 enzymatic activity. LX compounds were also shown to reduce AR/AR-V7 expression and to inhibit their target gene signaling. LX1 inhibited the conversion of androstenedione into testosterone in tumor-based ex vivo enzyme assays. In addition, LX1 inhibited the growth of cells resistant to antiandrogens including enzalutamide (Enza), abiraterone, apalutamide, and darolutamide in vitro. A synergistic effect was observed when LX1 was combined with antiandrogens and taxanes, indicating the potential for this combination in treating resistant prostate cancer. Treatment with LX1 significantly decreased tumor volume, serum PSA levels, as well as reduced intratumoral testosterone levels, without affecting mouse body weight. Furthermore, LX1 was found to overcome resistance to Enza treatment, and its combination with Enza further suppressed tumor growth in both the CWR22Rv1 xenograft and LuCaP35CR patient-derived xenograft models. Collectively, the dual effect of LX1 in reducing AR signaling and intratumoral testosterone, along with its synergy with standard therapies in resistant models, underscores its potential as a valuable treatment option for advanced prostate cancer. Significance: LX1 simultaneously targets androgen receptor variants and the steroidogenic enzyme AKR1C3, offering a promising approach to combat drug resistance and enhancing therapeutic efficacy in conjunction with standard treatments for advanced prostate cancer.
Insights
A new compound, LX1, targets both androgen receptor variants and AKR1C3 to overcome resistance in advanced prostate cancer. It shows promise in combination therapies, reducing tumor growth and improving patient outcomes.
Area of Science:
- Oncology
- Medicinal Chemistry
- Molecular Biology
Background:
- Advanced prostate cancer often develops resistance to standard androgen receptor (AR) targeting therapies.
- Key drivers of resistance include AR variants like AR-V7 and steroidogenic enzymes such as AKR1C3.
Purpose of the Study:
- To design and synthesize novel compounds (LX compounds) targeting both AR/AR variants and AKR1C3 pathways.
- To evaluate the efficacy of these compounds in preclinical models of resistant prostate cancer.
Main Methods:
- Molecular docking and in vitro studies to assess binding and inhibition of AKR1C3.
- Assessment of AR/AR-V7 expression and signaling.
- Ex vivo enzyme assays and in vitro cell growth inhibition assays.
- In vivo studies using xenograft models of prostate cancer.
Main Results:
- LX compounds inhibit AKR1C3 enzymatic activity and reduce AR/AR-V7 expression.
- LX1 demonstrated efficacy against cells resistant to multiple antiandrogens and inhibited testosterone conversion.
- LX1 showed synergistic effects with antiandrogens and taxanes, significantly reducing tumor volume and PSA levels in vivo.
- LX1 overcame resistance to enzalutamide and suppressed tumor growth in combination with enzalutamide in xenograft models.
Conclusions:
- LX1 exhibits a dual mechanism of action, targeting both AR signaling and intratumoral testosterone production.
- LX1 demonstrates potential as a valuable therapeutic agent for advanced prostate cancer, particularly in overcoming drug resistance.
- Combination therapy with LX1 and standard treatments offers enhanced efficacy for resistant prostate cancer.
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