Misleading localization by 18F-fluorocholine PET/CT in familial hypocalciuric hypercalcemia type-3: a case report
Noha N Mukhtar1, Mohei El-Din M Abouzied2, Mohammed H Alqahtani3
1Department of Medicine , King Faisal Specialist Hospital and Research Center, Riyadh, Saudi Arabia.
Insights
Familial hypocalciuric hypercalcemia type-3 (FHH-3) can be misdiagnosed. Fluorocholine PET/CT imaging may mislead clinicians, resulting in unnecessary parathyroidectomy. Early genetic testing is recommended for FHH-3 diagnosis.
Area of Science:
- Endocrinology
- Medical Imaging
- Genetics
Background:
- Familial hypocalciuric hypercalcemia (FHH) is a calcium hemostasis disorder that can mimic mild primary hyperparathyroidism.
- FHH type-3 is a rare form caused by loss-of-function mutations in AP2S1.
- 18F-fluorocholine PET/CT (FCH-PET/CT) shows promise in localizing parathyroid adenomas.
Purpose of the Study:
- To report a case of FHH type-3 with misleading FCH-PET/CT findings.
- To highlight the potential for misdiagnosis and unnecessary surgery in FHH type-3.
- To emphasize the importance of genetic testing in FHH diagnosis.
Main Methods:
- A case presentation of a 29-year-old woman with persistent PTH-dependent hypercalcemia.
- Utilized biochemical tests, ultrasound, 99mtechnetium-scintigraphy, and FCH-PET/CT.
- Performed whole exome sequencing to identify the genetic mutation.
Main Results:
- The patient presented with chronic hypercalcemia and elevated PTH levels.
- FCH-PET/CT showed uptake in the left inferior thyroid region, leading to parathyroidectomy.
- Post-surgery, hypercalcemia persisted, and genetic testing revealed an Arg15Cys mutation in AP2S1, confirming FHH type-3.
- FCH-PET/CT incorrectly localized to a lymph node instead of hyperplastic parathyroid glands.
Conclusions:
- FCH-PET/CT can provide misleading results in FHH type-3, potentially leading to unnecessary parathyroidectomy.
- Increased urinary calcium after vitamin D supplementation was observed.
- Genetic testing for FHH should be considered early in patients with mild PTH-dependent hypercalcemia to avoid misdiagnosis and costly interventions.
Background:
Familial hypocalciuric hypercalcemia (FHH) is a heterogeneous autosomal-dominant disorder of calcium hemostasis that may be difficult to distinguish clinically from mild primary hyperparathyroidism. Loss-of-function mutations mainly involving Arg15 residue of the adaptor-related protein complex 2, sigma subunit 1 (AP2S1) cause a rarer, more recently recognized form of FHH, FFH type-3. Recently, 18F-fluorocholine positron emission tomography/computed tomography (FCH-PET/CT) showed superior sensitivity to conventional imaging in localizing parathyroid adenomas. We report a new FFH type-3 patient who underwent unnecessary parathyroidectomy in association with misleading FCH-PET/CT imaging.
Case Presentation:
A 29-year old woman was initially evaluated for parathyroid hormone (PTH)-dependent hypercalcemia in 2013. Medical history was positive only for chronic constipation and malaise with no personal or family history of hypercalcemia, kidney stones, or neck surgery. Over seven years, serum calcium level was 2.51-2.89 mmol/L with concomitant PTH level of 58.7-94.8 mmol/L. Serum phosphate levels were in the low/low normal range. Serum creatinine and magnesium levels were normal. 25-hydroxy vitamin D level was 13 nmol/L. 24-hour urine calcium level was 1.92 mmol/day but increased to 6.99 mmol/day after treatment with cholecalciferol 1000 IU daily. Bone mineral density and renal ultrasound were normal. Parathyroid ultrasound showed two hypoechoic nodules inferior to the left and right thyroid lobes; however, 99mtechnitium-sestamibi scans (2013, 2016, 2018) were negative. FCH-PET/CT (2019) showed focal uptake co-localizing with the nodule inferior to the left thyroid lobe. The patient underwent left inferior parathyroidectomy and pathology was consistent with parathyroid hyperplasia. However, postoperatively, serum calcium and PTH levels remained elevated and FCH-PET/CT and ultrasound showed persistence of the uptake/nodule. Whole exome sequencing showed Arg15Cys mutation in the AP2S1 gene characteristic of FHH type-3.
Conclusions:
In this new case of FHH type-3, FCH-PET/CT failed to localize to the hyperplastic parathyroid glands and localized instead to apparently a lymph node. This, together with increased urinary calcium after vitamin D supplementation, led to unnecessary parathyroidectomy. Given the increasingly lower cost of genetic testing and the cost of follow up and unnecessary surgery, it may prudent to include genetic testing for FHH early on in patients with mild PTH-dependent hypercalcemia.
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