更正:B7-H3 CAR T 细胞清除肝内胆管癌并诱导持久应答
Correction: B7-H3 CAR T cells eradicate intrahepatic cholangiocarcinoma and induce durable response.
英文原题:Up-to-Date Pathologic Classification and Molecular Characteristics of Intrahepatic Cholangiocarcinoma.
肝内胆管癌(iCCA)是一种侵袭性原发性肝脏恶性肿瘤,全球发病率不断上升。
肝内胆管癌(iCCA)是一种侵袭性原发性肝脏恶性肿瘤,全球发病率不断上升。近年来,小胆管型和大胆管型iCCA的组织病理学分类已被引入。这两种类型的肿瘤在临床病理特征、突变谱和预后方面均表现出差异。小胆管型iCCA由非黏液分泌的立方细胞组成,而大胆管型iCCA由黏液分泌的柱状细胞组成,反映了不同的起源细胞。大胆管型iCCA比小胆管型iCCA表现出更具侵袭性的生长和更差的预后。小胆管型iCCA的背景肝脏常显示与乙型或丙型肝炎病毒感染相关的慢性肝病,或酒精性或非酒精性脂肪性肝病/脂肪性肝炎,而大胆管型iCCA则常与肝内胆管结石和肝吸虫感染相关。胆管细胞癌是小胆管型iCCA的一种变异型,由形态幼稚的立方细胞组成,形成条索或小胆管样结构,预后优于传统的小胆管型。纤维性肿瘤间质是iCCA的特征之一,包含活化的成纤维细胞与固有免疫和适应性免疫细胞混合。间质类型(成熟型与不成熟型)与肿瘤行为和预后相关。低TIL(肿瘤浸润淋巴细胞)密度、KRAS改变和染色体不稳定性与免疫抑制性肿瘤微环境及对programmed death 1/programmed death ligand 1阻断的耐药相关。近期大规模外显子分析的数据揭示了iCCA分子谱的异质性,显示小胆管型iCCA频繁出现BAP1、IDH1/2热点突变和FGFR2融合,而大胆管型iCCA则常见KRAS、TP53和SMAD4突变。多组学分析提出了几种iCCA的分子分型,包括炎症型和增殖型。炎症型富集于炎症信号通路和细胞因子表达,而增殖型则激活了致癌生长信号通路。iCCA的多样病理特征及其相关的多组学特征目前正在积极研究中,从而为iCCA患者的精准治疗提供见解。本综述提供了关于iCCA组织病理学分类及其相关分子特征的最新知识,涵盖从肿瘤微环境到基因组和转录组研究。
Intrahepatic cholangiocarcinoma (iCCA) is an aggressive primary liver malignancy with an increasing incidence worldwide. Recently, histopathologic classification of small duct type and large duct type iCCA has been introduced. Both these types of tumors exhibit differences in clinicopathological features, mutational profiles, and prognosis. Small duct type iCCA is composed of non-mucin-producing cuboidal cells, whereas large duct type iCCA is composed of mucin-producing columnar cells, reflecting different cells of origin. Large duct type iCCA shows more invasive growth and poorer prognosis than small duct type iCCA. The background liver of small duct type iCCA often shows chronic liver disease related to hepatitis B or C viral infection, or alcoholic or non-alcoholic fatty liver disease/steatohepatitis, in contrast to large duct type iCCA that is often related to hepatolithiasis and liver fluke infection. Cholangiolocarcinoma is a variant of small duct type iCCA composed of naïve-looking cuboidal cells forming cords or ductule-like structures, and shows better prognosis than the conventional small duct type. Fibrous tumor stroma, one of the characteristic features of iCCA, contains activated fibroblasts intermixed with innate and adaptive immune cells. The types of stroma (mature versus immature) are related to tumor behavior and prognosis. Low tumor-infiltrating lymphocyte density, KRAS alteration, and chromosomal instability are related to immune-suppressive tumor microenvironments with resistance to programmed death 1/ programmed death ligand 1 blockade. Data from recent large-scale exome analyses have revealed the heterogeneity in the molecular profiles of iCCA, showing that small duct type iCCA exhibit frequent BAP1 , IDH1/2 hotspot mutations and FGFR2 fusion, in contrast to frequent mutations in KRAS , TP53 , and SMAD4 observed in large duct type iCCA. Multi-omics analyses have proposed several molecular classifications of iCCA, including inflammation class and proliferation class. The inflammation class is enriched in inflammatory signaling pathways and expression of cytokines, while the proliferation class has activated oncogenic growth signaling pathways. Diverse pathologic features of iCCA and its associated multi-omics characteristics are currently under active investigation, thereby providing insights into precision therapeutics for patients with iCCA. This review provides the latest knowledge on the histopathologic classification of iCCA and its associated molecular features, ranging from tumor microenvironment to genomic and transcriptomic research.
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