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Published on: January 29, 2019
[177Lu-DOTA(0),Tyr3] octreotate for somatostatin receptor-targeted radionuclide therapy
M de Jong1, W A Breeman, B F Bernard
1Department of Nuclear Medicine, University Hospital and Erasmus University Rotterdam, 3015 GD Rotterdam, The Netherlands. dejong@nuge.azr.nl
Abstract:
Receptor-targeted scintigraphy using radiolabeled somatostatin analogs such as octreotate is being used with great success to demonstrate the in vivo presence of somatostatin receptors on various tumors. A new and promising application for these analogs is radionuclide therapy. Radionuclides suitable for this application include the Auger electron-emitter (111)In and the beta-emitters (90)Y (high energy) and (177)Lu (low energy). We investigated [DOTA(0),Tyr(3)]octreotate, labeled with the lanthanide (177)Lu, in biodistribution and radionuclide therapy experiments using male Lewis rats bearing the somatostatin receptor-positive rat CA20948 pancreatic tumor. Biodistribution studies in Lewis rats showed the highest uptake in the rat pancreatic CA20948 tumor and sst(2)-positive organs, which include the adrenals, pituitary and pancreas, of [(177)Lu-DOTA(0),Tyr(3)]octreotate in comparison with (88)Y- and (111)In-labeled analogs. Kidney uptake of [(177)Lu-DOTA(0),Tyr(3)]octreotate could be reduced by approximately 40% by co-injection of 400 mg/kg D-lysine. In radionuclide therapy studies, a 100% cure rate was achieved in the groups of rats bearing small (< or =1 cm(2)) CA20948 tumors after 2 doses of 277.5 MBq or after a single dose of 555 MBq [(177)Lu-DOTA(0),Tyr(3)]octreotate. A cure rate of 75% was achieved after a single administration of 277.5 MBq. In rats bearing larger (> or =1 cm(2)) tumors, 40% and 50% cure rates were achieved in the groups that received 1 or 2 277.5 MBq injections of [(177)Lu-DOTA(0),Tyr(3)]octreotate, respectively. After therapy with [(177)Lu-DOTA(0),Tyr(3)]octreotide in rats bearing small tumors, these data were 40% cure after 1 injection with 277.5 MBq and 60% cure after 2 repeated injections. In conclusion, [(177)Lu-DOTA(0),Tyr(3)]octreotate has demonstrated excellent results in radionuclide therapy studies in rats, especially in animals bearing smaller tumors. This candidate molecule shows great promise for radionuclide therapy in patients with sst(2)-expressing tumors.
Insights
Lutetium-177 labeled octreotate ([177Lu-DOTA(0),Tyr(3)]octreotate) shows promise for radionuclide therapy, effectively treating small pancreatic tumors in rats. Kidney uptake was reduced by co-administering D-lysine.
Area of Science:
- Nuclear Medicine
- Oncology
- Radiopharmaceutical Therapy
Background:
- Somatostatin analogs like octreotate are used for imaging tumors expressing somatostatin receptors.
- Radionuclide therapy using radiolabeled analogs is a promising new application.
- Lutetium-177 (177Lu) is a suitable radionuclide for targeted radionuclide therapy.
Purpose of the Study:
- To evaluate [177Lu-DOTA(0),Tyr(3)]octreotate for biodistribution and radionuclide therapy in a rat pancreatic tumor model.
- To assess the efficacy of [177Lu-DOTA(0),Tyr(3)]octreotate in treating somatostatin receptor-positive tumors.
- To investigate methods for reducing kidney toxicity.
Main Methods:
- Biodistribution studies were performed in Lewis rats bearing CA20948 pancreatic tumors.
- Radionuclide therapy was administered using various doses and schedules of [177Lu-DOTA(0),Tyr(3)]octreotate.
- D-lysine was co-injected to assess its effect on kidney uptake.
Main Results:
- [177Lu-DOTA(0),Tyr(3)]octreotate showed highest tumor uptake and uptake in sst(2)-positive organs.
- Co-injection of D-lysine reduced kidney uptake by approximately 40%.
- High cure rates (up to 100%) were achieved in rats with small tumors, with lower rates in larger tumors.
Conclusions:
- [177Lu-DOTA(0),Tyr(3)]octreotate demonstrates significant potential for radionuclide therapy of sst(2)-expressing tumors.
- Therapeutic efficacy is particularly notable in smaller tumors.
- Further investigation for clinical application in patients is warranted.
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