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Correlation between the Loss of Thyroglobulin Iodination and the Expression of Thyroid-Specific Proteins Involved in Iodine Metabolism in Thyroid Carcinomas

甲状腺球蛋白 甲状腺 新陈代谢 内分泌学 内科学 卤化 甲状腺癌 癌症研究 医学 化学 有机化学
作者
A Gérard,Chantal Daumerie,C Mestdagh,Sophie Gohy,Claire de Burbure,Sabine Costagliola,F. Miot,Marie‐Cécile Nollevaux,Jean‐François Denef,Jacques Rahier,Brigitte Franc,Jan J. M. de Vijlder,Ides M. Colin,Marie‐Christine Many
出处
期刊:The Journal of Clinical Endocrinology and Metabolism [Oxford University Press]
卷期号:88 (10): 4977-4983 被引量:105
标识
DOI:10.1210/jc.2003-030586
摘要

Abstract Progress in biotechnology has provided useful tools for tracing proteins involved in thyroid hormone synthesis in vivo. Mono- or polyclonal antibodies are now available to detect on histological sections the Na+/I− symporter (NIS) at the basolateral pole of the cell, the putative iodide channel (pendrin) at the apical plasma membrane, thyroperoxidase (TPO), and members of the NADPH-oxidase family, thyroid oxidase 1 and 2 (ThOXs), part of the H2O2-generating system. The aim of this study was to correlate thyroglobulin (Tg) iodination with the presence of these proteins. Tg, T4-containing Tg, NIS, pendrin, TPO, ThOXs, and TSH receptor (TSHr) were detected by immunohistochemistry on tissue sections of normal thyroids and various benign and malignant thyroid disorders. Tg was present in all cases. T4-containing Tg was found in the adenomas, except in Hurthle cell adenomas. It was never detected in carcinomas. NIS was reduced in all types of carcinomas, whereas it was detected in noncancerous tissues. Pendrin was not expressed in carcinomas, except in follicular carcinomas, where weak staining persisted. TPO expression was present in insular, follicular carcinomas and in follicular variants of papillary carcinomas, but in a reduced percentage of cells. It was below the level of detection in papillary carcinomas. The H2O2-generating system, ThOXs, was found in all carcinomas and was even increased in papillary carcinomas. Its staining was apical in normal thyroids, whereas it was cytoplasmic in carcinomas. The TSHr was expressed in all cases, but the intensity of the staining was decreased in insular carcinomas. In conclusion, our work shows that all types of carcinomas lose the capacity to synthesize T4-rich, iodinated Tg. In follicular carcinomas, this might be due to a defect in iodide transport at the basolateral pole of the cell. In papillary carcinomas, this defect seems to be coupled to an altered apical transport of iodide and probably TPO activity. The TSHr persists in virtually all cases.
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