scholarly journals Comparison of Empiric Versus Whole-Body/-Blood Clearance Dosimetry–Based Approach to Radioactive Iodine Treatment in Patients with Metastases from Differentiated Thyroid Cancer

2016 ◽  
Vol 58 (5) ◽  
pp. 717-722 ◽  
Author(s):  
Désirée Deandreis ◽  
Carole Rubino ◽  
Hernan Tala ◽  
Sophie Leboulleux ◽  
Marie Terroir ◽  
...  
2021 ◽  
Vol 5 (Supplement_1) ◽  
pp. A876-A876
Author(s):  
Sophie Leboulleux ◽  
Christine Do Cao ◽  
Slimane Zerdoud ◽  
Marie Attard ◽  
Claire Bournaud ◽  
...  

Abstract Background: Two-thirds of patients with metastatic differentiated thyroid cancer (DTC) become refractory to radioactive iodine (RAIR). The inhibition of the MAP-kinase pathway that is activated in case of BRAFV600E mutation might increase RAI incorporation into metastatic foci and reverse the RAI refractoriness. MERAIODE is a prospective multicentric open-label phase II trial, using a one-stage Fleming design, evaluating the efficacy and tolerance of trametinib (a MEK inhibitor) and dabrafenib (a BRAF inhibitor) treatment followed by the administration of RAI in metastatic RAIR DTC patients. Methods: Patients with BRAFV600E mutated RAIR metastatic DTC with RECIST progression within 18 months prior to enrollment and no lesion > 3 cm were included. A baseline rhTSH-stimulated diagnostic whole body scan (dc WBS) was performed prior to treatment initiation. Patients were treated with dabrafenib (150 mg bid) and trametinib (2 mg per day) for 42 days. At day 28, a second rhTSH-stimulated dc WBS was performed. After 35 days, a therapeutic activity of RAI (5.5 GBq) was administered. Primary endpoint was objective response rate (ORR) at 6 months according to RECIST v1.1 (central review). Patients: Among the 24 patients (mean age 67 years, 15 females) with a BRAFV600E mutated RAI refractory papillary DTC included between March 2018 and January 2020 in 8 French centers from the TUTHYREF netwok, 24 patients were treated and 21 patients were evaluable for the principal outcome at 6 months. Results: Abnormal RAI uptake was present in only 1 of the 21 patients (5%; 95%CI 0-24%) on a RAI diagnostic whole body scan (dc-WBS) performed prior to treatment initiation, in 11 patients, 11/17 (65%; 95%CI 38-86) on a dc-WBS performed 4 weeks after dabrafenib-trametinib initiation and in 20/21 (95%; 95%CI 76-100) on the post-therapeutic WBS performed after 5.5 GBq of RAI. The RECIST 6-months tumor response (central review) was partial response (PR) in 38% (95%CI 18-61), stable disease (SD) in 52% (95% CI 30-74) and progressive disease (PD) in 10% (95% CI 1-30). The median change in the sum of target lesions was -22% (range: -79 to +46) at 6 months after baseline. The 6-month fluorodesoxyglucose metabolic PET response was PR in 11/17 (65% 95%CI 38-86), SD in 4/17 (23%) (95% CI 7-50) and PD in 2/17 (12%; 95% CI 1-36). Among the 15 patients without Tg antibodies, 7 (47%) patients had a decrease of serum thyroglobulin level on T4 treatment by more than 50%All patients experienced at least one grade 1-2 adverse event, mainly asthenia, nausea, fever, diarrhea and cutaneous eruption. Nine grade 3 toxicities occurred in 6 treated patients. No grade 4-5 adverse event occurred Conclusion: The association of dabrafenib and trametinib in BRAFV600E mutated patients is effective for restoring RAI uptake and is followed by a tumor control in 90% of patients and by tumor response in 38% with limited adverse events. (PHRC 2015, NCT 03244956)


2017 ◽  
Vol 141 (11) ◽  
pp. 2291-2295 ◽  
Author(s):  
Chelsea Anderson ◽  
Stephanie M. Engel ◽  
Mark A. Weaver ◽  
Jose P. Zevallos ◽  
Hazel B. Nichols

2021 ◽  
Vol 9 (6) ◽  
Author(s):  
Karin Wu ◽  
Uzoezi Ozomaro ◽  
Robert Flavell ◽  
Miguel Pampaloni ◽  
Chienying Liu

Abstract Purpose Radioactive iodine (RAI) whole-body scan is a sensitive imaging modality routinely used in patients with differentiated thyroid cancer to detect persistent and recurrent disease. However, there can be false-positive RAI uptake that can lead to misdiagnosis and misclassification of a patient’s cancer stage. Recognizing the causes of false positivity can avoid unnecessary testing and treatment as well as emotional stress. In this review, we discuss causes and summarize various mechanisms for false-positive uptake. Recent Findings We report a patient with differentiated thyroid cancer who was found to have Mycobacterium avium complex infection as the cause of false-positive RAI uptake in the lungs. Using this case example, we discuss and summarize findings from the literature on etiologies of false-positive RAI uptake. We also supplement additional original images illustrating other examples of false RAI uptake. Summary False-positive RAI uptake may arise from different causes and RAI scans need to be interpreted in the context of the patient’s history and corresponding cross-sectional imaging findings on workup. Understanding the potential pitfalls of the RAI scan and the mechanisms underlying false uptake are vital in the care of patients with differentiated thyroid cancer.


2018 ◽  
Vol 36 (18) ◽  
pp. 1887-1888 ◽  
Author(s):  
Mark Tulchinsky ◽  
Richard P. Baum ◽  
K.G. Bennet ◽  
Leonard M. Freeman ◽  
Ian Jong ◽  
...  

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