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使用细胞捕获支架对甲状腺细胞学进行形态学和分子评估。

Morphological and Molecular Assessment in Thyroid Cytology Using Cell-Capturing Scaffolds.

作者信息

Scarpino Stefania, Taccogna Silvia, Pepe Giuseppina, Papini Enrico, D'Angelo Martina, Cascone Federica, Nicoletti Daniele, Guglielmi Rinaldo, Palermo Andrea, Trombetta Marcella, Rainer Alberto, Taffon Chiara, Crescenzi Anna

机构信息

Department of Clinical and Molecular Medicine, Pathology Unit, Sant'Andrea Hospital, Sapienza University of Rome, Albano Laziale (RM), Italy.

Pathology Unit, Regina Apostolorum Hospital, Albano Laziale (RM), Italy.

出版信息

Horm Metab Res. 2020 May 11. doi: 10.1055/a-1157-6419.

Abstract

The increased frequency of thyroid nodules is paralleled by the rise of thyroid cancer diagnosis. To define the nature of most thyroid nodules, fine needle aspiration (FNA) followed by cytological evaluation is considered the method of choice. About 20% of FNA biopsies on thyroid nodules, however, show indeterminate cytological features and may require diagnostic surgery. Several immunocytochemical and molecular markers have been proposed to improve classification of thyroid nodules, but these tests require adequate cell amount and cytological paraffin inclusion. Polymeric matrices were recently proposed for the collection of cells for diagnostic purposes. In this study, we evaluated the diagnostic use of a new matrix (CytoMatrix). Morphological, molecular and immunohistochemical investigations were carried out on 23 FNA samples included in CytoMatrix and compared with data obtained from the definitive histology of surgical samples. Our results showed that CytoMatrix is suitable to capture and preserve the cellularity of the samples harvested by FNA and that its paraffin sections mimic the morphology of those obtained from real histological tissue. Immunohistochemistry on CytoMatrix samples was consistent with the immunophenotypical profile of the corresponding histological surgical specimens. Mutational analysis of the BRAF (V600E) gene performed on CytoMatrix inclusions and paired surgical tissue matched in all but one cases while matrix immunohistochemistry identified 91.6% of BRAF mutated samples. In conclusion, we suggest that CytoMatrix could be a reliable tool to overcome the current limits of traditional collection methods for the study of thyroid cytology, thereby improving their reliability for a conclusive diagnostic interpretation.

摘要

甲状腺结节频率的增加与甲状腺癌诊断率的上升同步。为了确定大多数甲状腺结节的性质,细针穿刺抽吸活检(FNA)后进行细胞学评估被认为是首选方法。然而,约20%的甲状腺结节FNA活检显示细胞学特征不明确,可能需要进行诊断性手术。已经提出了几种免疫细胞化学和分子标志物来改善甲状腺结节的分类,但这些检测需要足够的细胞数量和细胞学石蜡包埋。最近有人提出使用聚合物基质来收集用于诊断目的的细胞。在本研究中,我们评估了一种新基质(CytoMatrix)的诊断用途。对包含在CytoMatrix中的23个FNA样本进行了形态学、分子和免疫组织化学研究,并与手术样本最终组织学获得的数据进行了比较。我们的结果表明,CytoMatrix适合捕获和保存FNA采集样本的细胞数量,并且其石蜡切片模仿了从真实组织学组织获得的切片的形态。CytoMatrix样本的免疫组织化学与相应组织学手术标本的免疫表型特征一致。在CytoMatrix包埋物和配对手术组织上进行的BRAF(V600E)基因突变分析,除一例之外所有病例均匹配,而基质免疫组织化学识别出91.6%的BRAF突变样本。总之,我们认为CytoMatrix可能是一种可靠的工具,可以克服目前甲状腺细胞学传统采集方法的局限性,从而提高其用于确定性诊断解释的可靠性。

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