Genome-wide methylation profiling differentiates benign from aggressive and metastatic pituitary neuroendocrine tumors

IF 9.3 1区 医学 Q1 CLINICAL NEUROLOGY Acta Neuropathologica Pub Date : 2024-11-23 DOI:10.1007/s00401-024-02836-5
Jelena Jotanovic, Henning Bünsow Boldt, Mark Burton, Marianne Skovsager Andersen, Daniel Bengtsson, Thomas Olsson Bontell, Bertil Ekman, Britt Edén Engström, Ulla Feldt-Rasmussen, Ansgar Heck, Antonia Jakovcevic, Jens Otto L. Jørgensen, Ivana Kraljevic, Jacek Kunicki, John R. Lindsay, Marco Losa, Paul Benjamin Loughrey, Dominique Maiter, Maria Maksymowicz, Emilija Manojlovic-Gacic, Jens Pahnke, Stephan Petersenn, Maria Petersson, Vera Popovic, Oskar Ragnarsson, Åse Krogh Rasmussen, Zita Reisz, Wolfgang Saeger, Camilla Schalin-Jäntti, David Scheie, Maria Rosa Terreni, Olli Tynninen, Ben Whitelaw, Pia Burman, Olivera Casar-Borota
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引用次数: 0

Abstract

Aggressive pituitary neuroendocrine tumors (PitNETs)/adenomas are characterized by progressive growth despite surgery and all standard medical therapies and radiotherapy. A subset will metastasize to the brain and/or distant locations and are termed metastatic PitNETs (pituitary carcinomas). Studies of potential prognostic markers have been limited due to the rarity of these tumors. A few recurrent somatic mutations have been identified, and epigenetic alterations and chromosomal rearrangements have not been explored in larger cohorts of aggressive and metastatic PitNETs. In this study, we performed genome-wide methylation analysis, including copy-number variation (CNV) calculations, on tumor tissue specimens from a large international cohort of 64 patients with aggressive (48) and metastatic (16) pituitary tumors. Twelve patients with non-invasive pituitary tumors (Knosp 0–2) exhibiting an indolent course over a 5 year follow-up served as controls. In an unsupervised hierarchical cluster analysis, aggressive/metastatic PitNETs clustered separately from benign pituitary tumors, and, when only specimens from the first surgery were analyzed, three separate clusters were identified: aggressive, metastatic, and benign PitNETs. Numerous CNV events affecting chromosomal arms and whole chromosomes were frequent in aggressive and metastatic, whereas benign tumors had normal chromosomal copy numbers with only few alterations. Genome-wide methylation analysis revealed different CNV profiles and a clear separation between aggressive/metastatic and benign pituitary tumors, potentially providing biomarkers for identification of these tumors with a worse prognosis at the time of first surgery. The data may refine follow-up routines and contribute to the timely introduction of adjuvant therapy in patients harboring, or at risk of developing, aggressive or metastatic pituitary tumors.

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全基因组甲基化特征分析区分良性与侵袭性和转移性垂体神经内分泌肿瘤
侵袭性垂体神经内分泌肿瘤(PitNETs)/腺瘤的特点是,尽管进行了手术和所有标准的药物治疗和放射治疗,肿瘤仍会进行性生长。其中一部分会转移到大脑和/或远处,被称为转移性垂体神经内分泌肿瘤(垂体癌)。由于这类肿瘤的罕见性,对其潜在预后标志物的研究十分有限。目前只发现了少数复发性体细胞突变,而尚未在更大的侵袭性和转移性PitNET群中探讨表观遗传学改变和染色体重排。在这项研究中,我们对64例侵袭性(48例)和转移性(16例)垂体瘤患者的肿瘤组织标本进行了全基因组甲基化分析,包括拷贝数变异(CNV)计算。12名非侵袭性垂体瘤(Knosp 0-2)患者作为对照组,在5年的随访中表现出不活跃的病程。在无监督分层聚类分析中,侵袭性/转移性垂体网状细胞瘤与良性垂体瘤分开聚类,当只分析第一次手术的标本时,发现了三个独立的聚类:侵袭性、转移性和良性垂体网状细胞瘤。侵袭性和转移性肿瘤中经常出现影响染色体臂和整个染色体的大量 CNV 事件,而良性肿瘤的染色体拷贝数正常,仅有少量改变。全基因组甲基化分析显示,侵袭性/转移性垂体瘤与良性垂体瘤之间存在不同的CNV谱,并有可能为首次手术时识别预后较差的肿瘤提供生物标记物。这些数据可能会完善随访程序,并有助于对罹患或有可能罹患侵袭性或转移性垂体瘤的患者及时进行辅助治疗。
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来源期刊
Acta Neuropathologica
Acta Neuropathologica 医学-病理学
CiteScore
23.70
自引率
3.90%
发文量
118
审稿时长
4-8 weeks
期刊介绍: Acta Neuropathologica publishes top-quality papers on the pathology of neurological diseases and experimental studies on molecular and cellular mechanisms using in vitro and in vivo models, ideally validated by analysis of human tissues. The journal accepts Original Papers, Review Articles, Case Reports, and Scientific Correspondence (Letters). Manuscripts must adhere to ethical standards, including review by appropriate ethics committees for human studies and compliance with principles of laboratory animal care for animal experiments. Failure to comply may result in rejection of the manuscript, and authors are responsible for ensuring accuracy and adherence to these requirements.
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