Incidental Diagnosis of Parathyroid Lesions by Preoperative Use of Next-Generation Molecular Testing

World journal of surgery(2018)

Cited 2|Views12
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Abstract
Background Parathyroid glands can mimic thyroid follicular lesions on fine-needle aspiration (FNA) cytology and can lead to unnecessary or incorrect surgery. Newer molecular panel tests using next-generation sequencing (NGS) include analysis of cell type-specific gene expression profiles such as parathyroid. The study aim is to determine the frequency and clinical implications of parathyroid tissue identification by molecular testing in cytologically indeterminate “thyroid” lesions. Methods Molecular analysis of indeterminate thyroid FNA specimens is obtained routinely and relies on amplification-based NGS inclusive of PTH-specific expression profiles. For this study, we retrospectively examined the clinical data and management of patients with molecular results positive for PTH expression from May 2014 until May 2016. Results Among 4765 consecutive patients with indeterminate cytology for a presumed thyroid nodule, NGS instead indicated a parathyroid lesion in 20 patients (0.42%). The clinical data of 15 patients were available, and the subsequent clinical management was altered in 93% (14/15 patients), including five (33%) eucalcemic patients who could avoid unnecessary surgery. Primary hyperparathyroidism was not suspected in seven patients until the molecular analysis results, and primary hyperparathyroidism was diagnosed in one (14%). During parathyroid exploration, most patients (6/8, 75%) required concurrent thyroidectomy or lobectomy, but thyroid preservation was still possible in two patients. A parathyroid gland was histologically confirmed in 89%. Conclusions In 0.42% of patients with indeterminate cytology results, next-generation molecular results will indicate the presence of a parathyroid lesion. When this occurs, it is accurate and can robustly impact clinical management (93%).
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Key words
parathyroid lesions,incidental diagnosis,next-generation
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