Novel microenvironment-based classification of intrahepatic cholangiocarcinoma with therapeutic implications

克拉斯 基质 肿瘤微环境 癌症研究 免疫系统 生物 结缔组织增生 免疫学 癌症 结直肠癌 遗传学 免疫组织化学
作者
Miguel A. Martín-Serrano,Benjamin Kepecs,Miguel Torres‐Martín,Emily R. Bramel,Philipp K. Haber,Elliot Merritt,Alexander Rialdi,Nesteene J. Param,Miho Maeda,Katherine E. Lindblad,James K. Carter,Marina Bárcena‐Varela,Vincenzo Mazzaferro,Myron Schwartz,Silvia Affò,Robert F. Schwabe,Augusto Villanueva,Ernesto Guccione,Scott L. Friedman,Amaia Lujambio
出处
期刊:Gut [BMJ]
卷期号:72 (4): 736-748 被引量:106
标识
DOI:10.1136/gutjnl-2021-326514
摘要

Objective The diversity of the tumour microenvironment (TME) of intrahepatic cholangiocarcinoma (iCCA) has not been comprehensively assessed. We aimed to generate a novel molecular iCCA classifier that incorporates elements of the stroma, tumour and immune microenvironment (‘STIM’ classification). Design We applied virtual deconvolution to transcriptomic data from ~900 iCCAs, enabling us to devise a novel classification by selecting for the most relevant TME components. Murine models were generated through hydrodynamic tail vein injection and compared with the human disease. Results iCCA is composed of five robust STIM classes encompassing both inflamed (35%) and non-inflamed profiles (65%). The inflamed classes, named immune classical (~10%) and inflammatory stroma (~25%), differ in oncogenic pathways and extent of desmoplasia, with the inflammatory stroma showing T cell exhaustion, abundant stroma and KRAS mutations (p<0.001). Analysis of cell–cell interactions highlights cancer-associated fibroblast subtypes as potential mediators of immune evasion. Among the non-inflamed classes, the desert-like class (~20%) harbours the lowest immune infiltration with abundant regulatory T cells (p<0.001), whereas the hepatic stem-like class (~35%) is enriched in ‘M2-like’ macrophages, mutations in IDH1/2 and BAP1, and FGFR2 fusions. The remaining class ( tumour classical : ~10%) is defined by cell cycle pathways and poor prognosis. Comparative analysis unveils high similarity between a KRAS/p19 murine model and the inflammatory stroma class (p=0.02). The KRAS-SOS inhibitor, BI3406, sensitises a KRAS -mutant iCCA murine model to anti-PD1 therapy. Conclusions We describe a comprehensive TME-based stratification of iCCA. Cross-species analysis establishes murine models that align closely to human iCCA for the preclinical testing of combination strategies.
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