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Published on: April 24, 2020
Preclinical Investigation of [212Pb]Pb-DOTAM-GRPR1 for Peptide Receptor Radionuclide Therapy in a Prostate Tumor
Amal Saidi1, Tania A Stallons2, Amy G Wong2
1Orano Med SAS, Paris, France; and amal.saidi@oranomed.com.
Abstract:
The role of gastrin-releasing peptide receptor (GRPR) in various diseases, including cancer, has been extensively studied and has emerged as a promising therapeutic target. In this study, we successfully achieved the use of [212Pb]Pb-DOTAM-GRPR1, comprising the α-particle generator, 212Pb, combined with a GRPR-targeting peptide, GRPR1, in a prostate cancer model. Methods: Pharmacokinetics, toxicity, radiation dosimetry, and efficacy were assessed in GRPR-positive prostate tumor-bearing mice after intravenous administration of [212Pb]Pb-DOTAM-GRPR1 (where DOTAM is 1,4,7,10-tetrakis(carbamoylmethyl)-1,4,7,10-tetraazacyclododecane). Results: Preclinical studies have shown tumor targeting of up to 5 percent injected dose per gram over 24 h, and optimization of the drug formulation and quantity has led to minimized oxidation and off-target binding, respectively. Particularly, an increase in peptide amount from 28 to 280 ng was shown to reduce off-target uptake, especially at the level of the pancreas, by about 30%. Furthermore, dosimetry studies confirmed the kidney as the dose-limiting organ, and toxicity studies revealed that a nontoxic dose of up to 1,665 kBq could be injected into mice. Efficacy studies indicated a median survival time of 9 wk in the control group, which received only a buffer solution, compared with 19 wk in the group that received 4 injections of 370 kBq at 3-wk intervals. Conclusion: Taken together, these combined data demonstrate the safety, tolerability, and efficacy of [212Pb]Pb-DOTAM-GRPR1, thus warranting further exploration in clinical trials.
Insights
This study shows [212Pb]Pb-DOTAM-GRPR1 is safe and effective for prostate cancer. The targeted therapy significantly increased survival time in mice, warranting clinical trials.
Area of Science:
- Nuclear Medicine
- Oncology
- Radiopharmaceutical Therapy
Background:
- Gastrin-releasing peptide receptor (GRPR) is a key target in various cancers.
- Targeted alpha therapy offers a promising approach for cancer treatment.
- 212Pb is an alpha-particle generator suitable for targeted therapy.
Purpose of the Study:
- To evaluate the safety, tolerability, and efficacy of [212Pb]Pb-DOTAM-GRPR1 in a prostate cancer model.
- To assess the pharmacokinetic, toxicity, and radiation dosimetry of the novel radiopharmaceutical.
Main Methods:
- Intravenous administration of [212Pb]Pb-DOTAM-GRPR1 to GRPR-positive prostate tumor-bearing mice.
- Assessment of pharmacokinetics, toxicity, radiation dosimetry, and therapeutic efficacy.
- Optimization of peptide amount to minimize off-target binding and oxidation.
Main Results:
- Achieved tumor targeting up to 5% injected dose per gram within 24 hours.
- Increased peptide amount reduced off-target uptake in the pancreas by approximately 30%.
- Median survival increased from 9 weeks (control) to 19 weeks with therapy.
- Kidney identified as the dose-limiting organ; a non-toxic dose of up to 1,665 kBq was determined.
Conclusions:
- Demonstrated the safety, tolerability, and efficacy of [212Pb]Pb-DOTAM-GRPR1.
- The radiopharmaceutical shows significant potential for treating prostate cancer.
- Further clinical trials are warranted based on these preclinical findings.
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