Kuhn Elisabetta, Pescia Carlo, Mendogni Paolo, Nosotti Mario, Ferrero Stefano
S.C. Anatomia Patologica, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, 20122 Milano, Italy.
Dipartimento di Scienze Biomediche, Chirurgiche ed Odontoiatriche, Università degli Studi di Milano, 20122 Milano, Italy.
Life (Basel). 2023 Jan 22;13(2):314. doi: 10.3390/life13020314.
Despite their rarity, thymic epithelial tumors (TETs) have attracted much interest over the years, leading to an impressive number of histological and staging classifications. At present, TETs are divided by the WHO classification into four main subtypes: type A, type AB, and type B thymomas (subdivided into B1, B2, and B3), and thymic carcinomas, going from the more indolent to the most aggressive ones. Among many debated staging proposals, the TNM and the Masaoka-Koga staging systems have been widely accepted and used in routine practice. The four-tiered histological classification is symmetrically mirrored by the molecular subgrouping of TETs, which identifies an A-like and an AB-like cluster, with frequent and mutations; an intermediate B-like cluster, with a T-cell signaling profile; and a carcinoma-like cluster comprising thymic carcinomas with frequent and alterations and a high tumor molecular burden. Molecular investigations have opened the way to tailored therapies, such as tyrosine kinase inhibitors targeting , mTOR, and , and immune-checkpoints that have been adopted as second-line systemic treatments. In this review, we discuss the crucial events that led to the current understanding of TETs, while disclosing the next steps in this intriguing field.
尽管胸腺瘤上皮性肿瘤(TETs)较为罕见,但多年来一直备受关注,产生了众多的组织学和分期分类。目前,世界卫生组织(WHO)分类将TETs分为四种主要亚型:A型、AB型和B型胸腺瘤(又细分为B1、B2和B3)以及胸腺癌,从侵袭性较低到侵袭性最强依次排列。在众多有争议的分期方案中,TNM分期系统和Masaoka-Koga分期系统已被广泛接受并用于常规实践。TETs的四层组织学分类与分子亚组分类相互对应,分子亚组分类确定了一个类似A型和一个类似AB型的簇,伴有频繁的[具体基因1]和[具体基因2]突变;一个中间的类似B型的簇,具有T细胞信号传导特征;以及一个类似癌的簇,包括伴有频繁的[具体基因3]和[具体基因4]改变以及高肿瘤分子负担的胸腺癌。分子研究为定制治疗开辟了道路,例如靶向[具体基因5]、mTOR和[具体基因6]的酪氨酸激酶抑制剂,以及已被用作二线全身治疗的免疫检查点抑制剂。在本综述中,我们讨论了促成目前对TETs理解的关键事件,同时揭示了这一有趣领域的下一步发展。