Centre de Recherche des Cordeliers, Inserm UMRS-1138, Sorbonne Université, Université de Paris, Functional Genomics of Solid Tumors, Paris, France.
Present address: Service de Chirurgie Thoracique, Hôpital Calmette, CHRU de Lille, Lille, France.
Genome Med. 2021 Jul 14;13(1):113. doi: 10.1186/s13073-021-00931-w.
Malignant pleural mesothelioma (MPM) is a heterogeneous cancer. Better knowledge of molecular and cellular intra-tumor heterogeneity throughout the thoracic cavity is required to develop efficient therapies. This study focuses on molecular intra-tumor heterogeneity using the largest series to date in MPM and is the first to report on the multi-omics profiling of a substantial series of multi-site tumor samples.
Intra-tumor heterogeneity was investigated in 16 patients from whom biopsies were taken at distinct anatomical sites. The paired biopsies collected from apex, side wall, costo-diaphragmatic, or highest metabolic sites as well as 5 derived cell lines were screened using targeted sequencing. Whole exome sequencing, RNA sequencing, and DNA methylation were performed on a subset of the cohort for deep characterization. Molecular classification, recently defined histo-molecular gradients, and cell populations of the tumor microenvironment were assessed.
Sequencing analysis identified heterogeneous variants notably in NF2, a key tumor suppressor gene of mesothelial carcinogenesis. Subclonal tumor populations were shared among paired biopsies, suggesting a polyclonal dissemination of the tumor. Transcriptome analysis highlighted dysregulation of cell adhesion and extracellular matrix pathways, linked to changes in histo-molecular gradient proportions between anatomic sites. Methylome analysis revealed the contribution of epigenetic mechanisms in two patients. Finally, significant changes in the expression of immune mediators and genes related to immunological synapse, as well as differential infiltration of immune populations in the tumor environment, were observed and led to a switch from a hot to a cold immune profile in three patients.
This comprehensive analysis reveals patient-dependent spatial intra-tumor heterogeneity at the genetic, transcriptomic, and epigenetic levels and in the immune landscape of the tumor microenvironment. Results support the need for multi-sampling for the implementation of molecular-based precision medicine.
恶性胸膜间皮瘤(MPM)是一种异质性癌症。为了开发有效的治疗方法,需要更好地了解整个胸腔内的分子和细胞内肿瘤异质性。本研究使用迄今为止最大的 MPM 系列来关注分子内肿瘤异质性,并且是第一个报告大量多部位肿瘤样本的多组学分析的研究。
对 16 名患者进行了肿瘤内异质性研究,这些患者在不同的解剖部位进行了活检。从顶部、侧壁、肋膈角或最高代谢部位采集的配对活检以及 5 个衍生的细胞系进行了靶向测序。对队列的一部分进行了全外显子组测序、RNA 测序和 DNA 甲基化分析,以进行深度特征分析。评估了分子分类、最近定义的组织分子梯度和肿瘤微环境中的细胞群体。
测序分析鉴定了 NF2 等关键的间皮瘤发生肿瘤抑制基因的异质性变体。配对活检中存在亚克隆肿瘤群体,提示肿瘤呈多克隆播散。转录组分析强调了细胞黏附和细胞外基质途径的失调,与解剖部位之间组织分子梯度比例的变化有关。甲基化组分析揭示了两名患者中表观遗传机制的贡献。最后,观察到肿瘤微环境中免疫介质和与免疫突触相关的基因的表达以及免疫群体的差异浸润有显著变化,并导致三名患者的免疫谱从热变冷。
这项全面的分析揭示了患者在遗传、转录组和表观遗传水平以及肿瘤微环境中的免疫景观方面的空间内肿瘤异质性。结果支持为实施基于分子的精准医学进行多采样的必要性。