Objective: In order to quantify the risk of malignancy of clinical and ultrasonographic features of thyroid nodules (TNs), we did a systematic review and meta-analysis of published studies. Methods: We did a literature search in MEDLINE for studies published from 1st January 1989 until 31st December 2012. Studies were considered eligible if they investigated the association between at least one clinical/ultrasonographic feature and the risk of malignancy, did not have exclusion criteria for the detected nodules, had histologically confirmed the diagnoses of malignancy, and had a univariable analysis available. Two reviewers independently extracted data on study characteristics and outcomes. Results: The meta-analysis included 41 studies, for a total of 29 678 TN. A higher risk of malignancy expressed in odds ratio (OR) was found for the following: nodule height greater than width (OR: 10.15), absent halo sign (OR: 7.14), microcalcifications (OR: 6.76), irregular margins (OR: 6.12), hypoechogenicity (OR: 5.07), solid nodule structure (OR: 4.69), intranodular vascularization (OR: 3.76), family history of thyroid carcinoma (OR: 2.29), nodule size R4 cm (OR: 1.63), single nodule (OR: 1.43), history of head/neck irradiation (OR: 1.29), and male gender (OR: 1.22). Interestingly, meta-regression analysis showed a higher risk of malignancy for hypoechoic nodules in iodine-sufficient than in iodine-deficient geographical areas. Conclusions: The current meta-analysis verified and weighed out each suspicious clinical and ultrasonographic TN feature. The highest risk was found for nodule height greater than width, absent halo sign, and microcalcifications for ultrasonographic features and family history of thyroid carcinoma for clinical features. A meta-analysis-derived grading system of TN malignancy risk, validated on a large prospective cohort, could be a useful tool in TN diagnostic work-up.
Thyroid ultrasonography (US) is the gold standard for thyroid imaging and its widespread use is due to an optimal spatial resolution for superficial anatomic structures, a low cost and the lack of health risks. Thyroid US is a pivotal tool for the diagnosis and follow-up of autoimmune thyroid diseases, for assessing nodule size and echostructure and defining the risk of malignancy in thyroid nodules. The main limitation of US is the poor reproducibility, due to the variable experience of the operators and the different performance and settings of the equipments. Aim of this consensus statement is to standardize the report of thyroid US through the definition of common minimum requirements and a correct terminology. US patterns of autoimmune thyroid diseases are defined. US signs of malignancy in thyroid nodules are classified and scored in each nodule. We also propose a simplified nodule risk stratification, based on the predictive value of each US sign, classified and scored according to the strength of association with malignancy, but also to the estimated reproducibility among different operators.
The purpose of this study is to develop a new cancer risk score for preoperative assessment of thyroid nodules (TN) trying to reduce unnecessary thyroidectomies. On the basis of a recent meta-analysis of published literature, we assigned a matching value to the clinical (C) and ultrasonographic (U) features of TN with increased malignancy risk (MR). The created "CUT" score derived from "C+U" score, (CU[1-10] ), along with the five-tiered "T" (T[1-5] ), represents the cytologic result of the fine-needle aspiration. The C+U score was prospectively applied to 683 consecutive patients with 705 TN and validated through a ROC curve analysis. The CUT score was correlated with the histopathological diagnoses of 110 surgically resected TN. Fifty-five histologically benign TN had a mean C+U score of 2.4 versus 5.7 of 55 malignant TN (p < 0.001). Three categories were identified: low risk for C+U score ≤2.5 (MR: 9 %), intermediate risk for C+U score ≥2.75 and ≤5 (MR: 38 %), and high risk for C+U score ≥5.25 (MR: 95 %). Sensitivity and specificity were, respectively, 95 and 60 % for a cut-off value >2.5, and 69 and 96 % for >5. The "CUT" score can be easily applied, aiding clinicians in the evaluation of TN, especially in cases with indeterminate or repeated non-diagnostic FNA.
TRs belong to the superfamily of nuclear receptors which includes the retinoid X receptor, vitamin D receptor, and oestrogen receptor (2). These receptors are ligand-dependent transcription factors that consist of a single polypeptide chain with three modular functional domains: (1) an aminoterminal domain that varies between the different isoforms and(2) a central DNA-binding domain and(3) a carboxy-terminal ligand-binding domain that are conserved between the different isoforms (3).
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