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Pre-clinical Orthotopic Murine Model of Human Prostate Cancer
Published on: August 29, 2016
Exploring the Therapeutic Potential of 177Lu-PSMA-617 in a Mouse Model of Prostate Cancer Bone Metastases
Cheng-Liang Peng1, Chun-Tang Chen1, I-Chung Tang1
1Department of Isotope Application Research, National Atomic Research Institute, Taoyuan 325207, Taiwan.
Abstract:
Prostate cancer is the second leading cause of cancer-related death in men, with metastatic castration-resistant prostate cancer (mCRPC) and bone metastases representing a critical clinical challenge. Although radium-223 (Ra-223) is approved for treating mCRPC with bone metastases, its efficacy remains limited, necessitating the development of more effective therapies. This study investigates the therapeutic potential of 177Lu-PSMA-617, a PSMA-targeted radiopharmaceutical, in a murine model of prostate cancer bone metastases. To our knowledge, this is the first study to systematically evaluate 177Lu-PSMA-617 in an orthotopic bone metastatic prostate cancer model, providing a clinically relevant preclinical platform to assess both imaging and therapeutic performance. We conducted comprehensive preclinical evaluations, including synthesis, stability analysis, cell binding assays, nuclear imaging, in vivo biodistribution, pharmacokinetics, and antitumor efficacy. The synthesis of 177Lu-PSMA-617 demonstrated high radiochemical yield (99.2%), molar activity (25.5 GBq/μmol), and purity (>98%), indicating high product quality. Stability studies confirmed minimal release of free Lutetium-177, maintaining the compound's integrity under physiological conditions. In vitro assays showed selective binding and internalization in PSMA-positive LNCaP prostate cancer cells, with negligible uptake in PSMA-negative PC-3 cells. In vivo biodistribution studies demonstrated efficient tumor targeting, with peak uptake in LNCaP tumors (23.31 ± 0.94 %IA/g) at 4 h post-injection. The radiopharmaceutical exhibited favorable pharmacokinetics, with high tumor-to-background ratios (tumor-to-blood, 434.4; tumor-to-muscle, 857.4). Therapeutic efficacy was confirmed by significant survival extension in treated mice (30.7% for 37 MBq and 53.8% for 111 MBq), with median survival times of 34 and 40 days, respectively, compared to 26 days in the control group. Radiation dosimetry analysis indicated a favorable safety profile with a calculated effective dose of 0.127 mSv/MBq. These findings highlight the novelty and translational relevance of using 177Lu-PSMA-617 in a clinically relevant bone metastasis model, reinforcing its potential as a dual-purpose agent for both targeted therapy and molecular imaging in advanced prostate cancer.
Insights
This study shows 177Lu-PSMA-617 effectively targets prostate cancer bone metastases in mice, improving survival. This PSMA-targeted radiopharmaceutical shows promise for advanced prostate cancer therapy and imaging.
Area of Science:
- Nuclear Medicine
- Oncology
- Radiopharmaceutical Therapy
Background:
- Prostate cancer, particularly metastatic castration-resistant prostate cancer (mCRPC), poses a significant clinical challenge.
- Current treatments like radium-223 (Ra-223) have limitations for mCRPC with bone metastases.
- There is a need for more effective therapeutic strategies for advanced prostate cancer.
Purpose of the Study:
- To evaluate the therapeutic potential of 177Lu-PSMA-617 in a preclinical model of prostate cancer bone metastases.
- To establish a clinically relevant platform for assessing the imaging and therapeutic performance of 177Lu-PSMA-617.
- To investigate the synthesis, stability, targeting, and efficacy of 177Lu-PSMA-617 in vivo.
Main Methods:
- Synthesis and quality assessment of 177Lu-PSMA-617.
- In vitro studies including cell binding and internalization assays.
- In vivo evaluations: biodistribution, pharmacokinetics, antitumor efficacy, and radiation dosimetry in a murine bone metastatic prostate cancer model.
Main Results:
- High-quality synthesis of 177Lu-PSMA-617 with excellent yield, molar activity, and purity.
- Selective binding and internalization in PSMA-positive prostate cancer cells, with minimal uptake in PSMA-negative cells.
- Demonstrated efficient tumor targeting, favorable pharmacokinetics, significant survival extension in treated mice, and a favorable safety profile.
Conclusions:
- 177Lu-PSMA-617 exhibits significant therapeutic efficacy and favorable biodistribution in a preclinical model of prostate cancer bone metastases.
- The study validates 177Lu-PSMA-617 as a promising dual-purpose agent for targeted therapy and molecular imaging in advanced prostate cancer.
- These findings support the translational relevance of 177Lu-PSMA-617 for clinical application in mCRPC.

