Molecular pathology of endocrine gland tumors: genetic alterations and clinicopathologic relevance

被引:0
作者
Antonio De Leo
Martina Ruscelli
Thais Maloberti
Sara Coluccelli
Andrea Repaci
Dario de Biase
Giovanni Tallini
机构
[1] University of Bologna,Department of Medical and Surgical Sciences (DIMEC)
[2] IRCCS Azienda Ospedaliero-Universitaria di Bologna,Solid Tumor Molecular Pathology Laboratory
[3] IRCCS Azienda Ospedaliero-Universitaria di Bologna,Division of Endocrinology and Diabetes Prevention and Care
[4] University of Bologna,Department of Pharmacy and Biotechnology (FaBit)
来源
Virchows Archiv | 2024年 / 484卷
关键词
Molecular pathology; Endocrine gland tumors; PitNET; Thyroid tumors; Parathyroid tumors; Adrenal cortical tumors; Paraganglionic tumors  ;
D O I
暂无
中图分类号
学科分类号
摘要
Tumors of the endocrine glands are common. Knowledge of their molecular pathology has greatly advanced in the recent past. This review covers the main molecular alterations of tumors of the anterior pituitary, thyroid and parathyroid glands, adrenal cortex, and adrenal medulla and paraganglia. All endocrine gland tumors enjoy a robust correlation between genotype and phenotype. High-throughput molecular analysis demonstrates that endocrine gland tumors can be grouped into molecular groups that are relevant from both pathologic and clinical point of views. In this review, genetic alterations have been discussed and tabulated with respect to their molecular pathogenetic role and clinicopathologic implications, addressing the use of molecular biomarkers for the purpose of diagnosis and prognosis and predicting response to molecular therapy. Hereditary conditions that play a key role in determining predisposition to many types of endocrine tumors are also discussed.
引用
收藏
页码:289 / 319
页数:30
相关论文
共 321 条
[41]  
Salama Y(2017)Genome-wide profiling identifies the THYT1 signature as a distinctive feature of widely metastatic Papillary Thyroid Carcinomas Oncotarget 9 1813-1825
[42]  
Albanyan S(2018)Molecular profile of advanced thyroid carcinomas by next-generation sequencing: characterizing tumors beyond diagnosis for targeted therapy Mol Cancer Ther 17 1575-1584
[43]  
Szybowska M(2015)Remarkable response to crizotinib in woman with anaplastic lymphoma kinase-rearranged anaplastic thyroid carcinoma J Clin Oncol 33 e84-e87
[44]  
Casar-Borota O(2020)Dissecting anaplastic thyroid carcinoma: a comprehensive clinical, histologic, immunophenotypic, and molecular study of 360 cases Thyroid 30 1505-1517
[45]  
Boldt H(2022)Primary high-grade non-anaplastic thyroid carcinoma: a retrospective study of 364 cases Histopathology 80 322-337
[46]  
Engström B(2018)Not the same thing: metastatic PTCs have a different background than ATCs Endocr Connect 7 1370-1379
[47]  
Asa SL(2018)Cribriform-morular variant of thyroid carcinoma: a neoplasm with distinctive phenotype associated with the activation of the WNT/?-catenin pathway Mod Pathol 31 1168-1179
[48]  
Ezzat S(2000)PAX8-PPARgamma1 fusion oncogene in human thyroid carcinoma [corrected] Science 289 1357-1360
[49]  
Weinstein LS(1993)Somatic mutations in the thyrotropin receptor gene cause hyperfunctioning thyroid adenomas Nature 365 649-651
[50]  
Yu S(2021)Molecular pathology of poorly differentiated and anaplastic thyroid cancer: what do pathologists need to know? Endocr Pathol 32 63-76