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Preparation and Evaluation of 99mTc-labeled Tridentate Chelates for Pre-targeting Using Bioorthogonal Chemistry
Published on: February 4, 2017
(99m)Tc-labeled-rhTSH analogue (TR1401) for imaging poorly differentiated metastatic thyroid cancer
Filippo Galli1, Isabella Manni, Giulia Piaggio
11 Nuclear Medicine Unit, Department of Medical-Surgical Sciences and of Translational Medicine, Faculty of Medicine and Psychology, "Sapienza" University of Rome , Rome, Italy .
Background:
Differentiated thyroid carcinomas originating from thyroid follicular cells are frequent tumors of the thyroid with relatively good prognosis due to improved surgical techniques and follow-up procedures. Poorly differentiated thyroid cancers, which lose iodine uptake ability, in most cases still express thyrotropin (TSH) receptors (TSHR). Therefore, the aim of this study was to radiolabel a superagonist recombinant human TSH (rhTSH) analogue for imaging poorly differentiated thyroid cancer.
Methods:
The TSHR superagonist, TR1401, was labeled with (99m)Tc using an indirect method via succinimidyl-6-hydrazinonicotinate hydrochloride conjugation. In vitro quality controls included SDS-PAGE, cysteine challenge, and cell-binding assay on TSHR positive cell lines (JP09 and ML-1). In vivo studies included tumor targeting experiments in athymic nude CD-1 mice xenografted with several different TSHR positive cells (JP09, K1, and ML-1) and TSHR negative cells (JP02) as control.
Results:
The superagonist rhTSH analogue TR1401 was labeled with high labeling efficiency (>95%) and high specific activity (9250 MBq/mg). The labeled molecule retained its biologic activity and structural integrity. In tumor targeting experiments, a focal uptake of radiolabeled TR1401 was observed in TSHR positive cells but not in TSHR negative cells. The same observation was made in a dog with spontaneous intraglandular thyroid cancer.
Conclusions:
We were able to radiolabel the rhTSH superagonist analogue TR1401 with (99m)Tc efficiently with retention of in vitro and in vivo binding capacity to TSHR. The relative role of such novel radiopharmaceutical versus (131)I scanning of thyroid cancer will require future histopathologic and clinical studies, but it may open new perspectives for presurgical staging of thyroid cancer, and diagnosis of radioiodine negative local relapses and/or distant metastases.
Insights
Researchers successfully radiolabeled a TSHR superagonist analogue, TR1401, with high efficiency. This new radiopharmaceutical shows promise for imaging poorly differentiated thyroid cancer, especially radioiodine-negative cases.
Area of Science:
- Nuclear Medicine
- Oncology
- Radiopharmaceutical Development
Background:
- Differentiated thyroid carcinomas are common, but poorly differentiated types often lose iodine uptake ability.
- Thyroid-stimulating hormone receptors (TSHR) are frequently expressed in poorly differentiated thyroid cancers.
- Targeting TSHR presents a potential strategy for imaging these challenging cancers.
Purpose of the Study:
- To radiolabel a superagonist recombinant human TSH (rhTSH) analogue, TR1401, for imaging poorly differentiated thyroid cancer.
- To evaluate the in vitro and in vivo characteristics of the radiolabeled analogue.
Main Methods:
- TR1401 was labeled with technetium-99m ((99m)Tc) using indirect conjugation.
- In vitro assessments included SDS-PAGE, cysteine challenge, and cell-binding assays.
- In vivo studies involved tumor targeting in mice xenografted with TSHR-positive and negative cells, and a dog model.
Main Results:
- High labeling efficiency (>95%) and specific activity were achieved for (99m)Tc-TR1401.
- The radiolabeled analogue retained biological activity and structural integrity.
- Specific uptake was observed in TSHR-positive tumors in mice and in a canine thyroid cancer model.
Conclusions:
- Efficient radiolabeling of the rhTSH superagonist TR1401 with (99m)Tc was successful, maintaining TSHR binding capacity.
- This novel radiopharmaceutical offers potential for presurgical staging and diagnosis of radioiodine-negative thyroid cancer relapses/metastases.
- Further clinical studies are needed to compare its role with (131)I scanning.
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