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The Journal of Clinical Endocrinology & Metabolism Vol. 92, No. 8 2866-2867
Copyright © 2007 by The Endocrine Society


IMAGE IN ENDOCRINOLOGY

Langherans Cell Histiocytosis of the Thyroid Gland Detected by 18FDG-PET/CT

Luca Giovanella, Luca Ceriani, Stefano Crippa and Luca Mazzucchelli

Department of Nuclear Medicine and PET-CT Center (L.G., L.C.), Oncology Institute of Southern Switzerland, CH-6500 Bellinzona, Switzerland; and Department of Clinical Pathology (S.C., L.M.), Cantonal Institute of Pathology, CH-6900 Locarno, Switzerland

Address all correspondence and requests for reprints to: Luca Giovanella, M.D., Department of Nuclear Medicine, Oncology Institute of Southern Switzerland, Via Ospedale 12, CH-6500 Bellinzona, Switzerland. E-mail: luca.giovanella{at}eoc.ch.

Focal accumulation of fluorodeoxyglucose (FDG) into the thyroid is detected in 4% of patients examined for nonthyroid tumors by positron emission tomography (PET) imaging. Up to 40% of these patients have malignant tumors, mainly arising from follicular cells (1). Benign nodules (i.e. follicular adenomas) may accumulate FDG also, but FDG-negative nodules are very unlikely to be malignant (2, 3). Langherans cell histiocytosis (LCH) is a rare monoclonal disease of histiocytes with an overall 3% mortality in adults, rarely involving the thyroid gland alone or as part of multisystemic disease (4). We observed a 43-yr-old female affected by breast carcinoma with an incidentally discovered thyroid enlargement. Clinical examination revealed a 20-mm hard nodule in the left thyroid lobe. Serum TSH was normal and ultrasound-guided fine-needle aspiration biopsy was directly performed by a dedicated cytopathologist (21-gauge needle, three passes). The cytological examination showed few thyrocytes without malignant findings, some lymphocytes and macrophages, and was classified as nondiagnostic (thy1) according to the British Thyroid Association 2002 recommendations. The role of fine-needle aspiration biopsy repetition in these cases is debated and, based on its high negative predictive value for both thyroid and breast carcinomas, an 18FDG-PET/computed tomography scan was performed (5, 6). A focal FDG uptake was shown in the left thyroid nodule (SUVmax 8.45) (Fig. 1Go) without other pathological FDG-positive areas. Left lobectomy was then performed, and thyroid LCH was demonstrated by histological examination and immunostaining against S-100 protein. Thyroid involvement by LCH is rare, and the diagnosis may often be extremely difficult (7). Neither ultrasound nor scintigraphy provides specific findings for LCH, and the final diagnosis is generally reached through cytological or histological examination (8). The high FDG uptake found in the present case reflected the enhanced metabolic rate of LCH cells. Clearly, FDG uptake is not specific for LCH; however, according to recently reported data, malignant disease should be excluded in FDG-positive thyroid nodules (9). To our knowledge, we first reported here the FDG uptake by LCH; this is of interest for nuclear medicine physicians involved in PET imaging and, additionally, may suggest further evaluations of FDG imaging in LCH assessment.


Figure 1
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FIG. 1. Left, Whole body coronal and thyroid axial FDG PET-CT tomograms. Left thyroid nodule with high FDG uptake is indicated (arrows). Right, Histological finding of proliferating histiocytes, eosinophil granulocytes, and eosinophil microabscesses (A) and positive immunostaining against S-100 protein (B).

 


    Footnotes
 
The authors have nothing to disclose.

Abbreviations: FDG, Fluorodeoxyglucose; LCH, Langherans cell histiocytosis; PET, positron emission tomography.

Received February 14, 2007.

Accepted April 3, 2007.


    References
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 References
 

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  2. Kim JM, Ryu JS, Kim TY, Kim WB, Kwon GY, Gong G, Moon DH, Kim SC, Hong SJ, Shong YK 2007 18F-Fluorodeoxyglucose positron emission tomography does not predict malignancy in thyroid nodules cytologically diagnosed as follicular neoplasm. J Clin Endocrinol Metab 92:1630–1634[Abstract/Free Full Text]
  3. Choi JY, Lee KS, Shim YM, Kwon OJ, Park K, Baek CH, Chung JH Lee KH, Kim BT 2006 Focal thyroid lesions incidentally identified by integrated 18F-FDG PET/CT: clinical significance and improved chracterisation. J Nucl Med 47:609–615[Abstract/Free Full Text]
  4. Nicholson HS, Egeler RM, Nesbit ME 1998 The epidemiology of Langherans cell histiocytosis. Hematol Oncol Clin North Am 12:379–384[CrossRef][Medline]
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  6. Kim TY, Kim WB, Gong G, Hong SJ, Shong YK 2005 Metastasis to the thyroid diagnosed by fine-needle aspiration biopsy. Clin Endocrinol (Oxf) 62:236–241[CrossRef][Medline]
  7. Kitahama S, Iitaka M, Shimizu T, Serizawa N, Fukasawa N, Miura S, Kawasaki S, Yamanaka K, Kawakami Y, Murakami S, Ishii J, Katayama S 1996 Thyroid involvement by malignant histiocytosis of Langherans’ cell type. Clin Endocrinol (Oxf) 45:357–359[CrossRef][Medline]
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