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GATA3 免疫反应扩大了垂体神经内分泌肿瘤的转录因子谱。

GATA3 immunoreactivity expands the transcription factor profile of pituitary neuroendocrine tumors.

机构信息

Department of Pathology, University Health Network, and Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Canada.

Department of Pathology, Ondokuz Mayis University, Samsun, Turkey.

出版信息

Mod Pathol. 2019 Apr;32(4):484-489. doi: 10.1038/s41379-018-0167-7. Epub 2018 Nov 2.

Abstract

The modern classification of pituitary neuroendocrine tumors relies mainly on immunohistochemistry for pituitary transcription factors, hormones, and other biomarkers, including low molecular weight cytokeratins. The transcription factor GATA2 is required for development of gonadotrophs and thyrotrophs but has not been used for classification of pituitary tumors. Because of genomic paralogy of GATA2 and GATA3, we postulated that GATA3 immunohistochemistry may detect GATA2 in the adenohypophysis. We examined 151 tumors originating from Ondokuz Mayis University, Turkey (n = 83) and University Health Network, Canada (n = 68). Initially, 83 tumors (26 gonadotroph, 24 somatotroph, 17 corticotroph, 12 lactotroph, 2 poorly differentiated Pit-1 lineage tumors that expressed TSH and 2 null cell tumors) from Ondokuz Mayis University were investigated with the GATA3 monoclonal antibody L50-823. Retrospective review of the files of University Health Network identified 68 tumors (43 gonadotroph, 3 somatotroph, 2 lactotroph, 1 mammosomatotroph, 9 corticotroph, 7 poorly differentiated Pit-1 lineage tumors with TSH expression, 2 plurihormonal tumors with TSH expression and 1 null cell tumor) that were examined with the same GATA3 antibody and served as a validation cohort. All somatotroph, lactotroph and mammosomatotroph tumors and the null cell tumors were negative for GATA3. Sixty-eight (98.5%) gonadotroph tumors were positive for GATA3; 64 had diffuse reactivity. Two plurihormonal tumors with TSH expression and eight (88.8%) poorly differentiated Pit-1 lineage tumors with variable TSH expression were positive for GATA3. One of 26 (3.8%) corticotroph tumors was diffusely positive for GATA3. This study shows that GATA3 immunoreactivity is characteristic of pituitary gonadotroph and TSH-producing tumors. This finding expands the pattern of transcription factors that are used to classify adenohypophysial tumors and is important in the differential diagnosis of sellar tumors, as GATA3 expression is also a feature of primary sellar paragangliomas as well as carcinomas that may metastasize to the sella.

摘要

现代垂体神经内分泌肿瘤的分类主要依赖于垂体转录因子、激素和其他生物标志物的免疫组织化学,包括低分子量细胞角蛋白。转录因子 GATA2 是促性腺激素和促甲状腺激素细胞发育所必需的,但尚未用于垂体肿瘤的分类。由于 GATA2 和 GATA3 的基因组并行性,我们假设 GATA3 免疫组织化学可能会在腺垂体中检测到 GATA2。我们检查了来自土耳其 Ondokuz Mayis 大学(n=83)和加拿大大学健康网络(n=68)的 151 个肿瘤。最初,我们使用 GATA3 单克隆抗体 L50-823 研究了来自 Ondokuz Mayis 大学的 83 个肿瘤(26 个促性腺激素瘤、24 个生长激素瘤、17 个促皮质激素瘤、12 个催乳素瘤、2 个表达 TSH 的分化不良的 Pit-1 谱系肿瘤和 2 个无细胞肿瘤)。回顾性审查加拿大大学健康网络的文件,确定了 68 个肿瘤(43 个促性腺激素瘤、3 个生长激素瘤、2 个催乳素瘤、1 个乳腺生长激素瘤、9 个促皮质激素瘤、7 个表达 TSH 的分化不良的 Pit-1 谱系肿瘤、2 个表达 TSH 的多激素肿瘤和 1 个无细胞肿瘤),这些肿瘤使用相同的 GATA3 抗体进行了检查,并作为验证队列。所有生长激素瘤、催乳素瘤和乳腺生长激素瘤以及无细胞肿瘤均为 GATA3 阴性。68(98.5%)个促性腺激素瘤对 GATA3 呈阳性反应;64 个为弥漫性反应。2 个表达 TSH 的多激素肿瘤和 8 个(88.8%)个表达可变 TSH 的分化不良的 Pit-1 谱系肿瘤对 GATA3 呈阳性反应。1 个(3.8%)促皮质激素瘤弥漫性阳性表达 GATA3。这项研究表明,GATA3 免疫反应性是垂体促性腺激素和 TSH 产生肿瘤的特征。这一发现扩展了用于分类腺垂体肿瘤的转录因子模式,在鞍区肿瘤的鉴别诊断中很重要,因为 GATA3 表达也是原发性鞍旁副神经节瘤以及可能转移到鞍区的癌的特征。

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