Faculty of Medicine Siriraj Hospital, Siriraj Cancer Center, Mahidol University, Bangkok, 10700, Thailand.
Department of Surgery, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, 10700, Thailand.
Clin Exp Med. 2024 Nov 5;25(1):2. doi: 10.1007/s10238-024-01515-9.
Understanding the metastatic cascade is critical for the treatment and prevention of cancer-related death. Within a tumor, immune cells have the capacity to fuse with tumor cells to generate tumor-immune hybrid cells (THCs). THCs are hypothesized to be a subset of cancer cells with the capacity to enter circulation as circulating hybrid cells (CHC) and seed metastases. To understand the mechanism of THC metastasis, we investigated CHCs in peripheral blood from patients with stage IV colorectal cancer (CRC), as well as THCs in tissues of primary colorectal cancers and their liver metastasis sites using immunofluorescence, spatial proteomic, spatial transcriptomic, molecular classification, and molecular pathway analyses. Our findings indicated a high prevalence of CHCs and THCs in patients with stage IV CRC. THCs expressed CTLA4 in primary CRC lesions and correlated with upregulation of CD68, CD4, and HLA-DR in metastatic liver lesions, which is found in the consensus molecular subtype (CMS) 1 of primary CRC tissue. Pathway analysis of these genes suggested that THCs are associated with neutrophils due to upregulation of neutrophil extracellular trap signaling (NET) and neutrophil degranulation pathways. These data provide molecular pathways for the formation of THCs suggesting fusion with neutrophils, which may facilitate extravasation and metastatic seeding.
了解转移级联对于癌症相关死亡的治疗和预防至关重要。在肿瘤内,免疫细胞有能力与肿瘤细胞融合,产生肿瘤免疫杂交细胞(THC)。据推测,THC 是具有进入循环作为循环杂交细胞(CHC)并播种转移能力的癌细胞亚群。为了了解 THC 转移的机制,我们使用免疫荧光、空间蛋白质组学、空间转录组学、分子分类和分子途径分析,研究了来自 IV 期结直肠癌(CRC)患者外周血中的 CHC 以及原发性结直肠癌组织及其肝转移部位的 THC。我们的研究结果表明,IV 期 CRC 患者中 CHC 和 THC 的发生率很高。THC 在原发性 CRC 病变中表达 CTLA4,并与转移性肝病变中 CD68、CD4 和 HLA-DR 的上调相关,这在原发性 CRC 组织的共识分子亚型(CMS)1 中发现。这些基因的通路分析表明,THC 与中性粒细胞有关,因为中性粒细胞细胞外陷阱信号(NET)和中性粒细胞脱颗粒途径上调。这些数据为 THC 的形成提供了分子途径,表明与中性粒细胞融合,这可能有助于血管外渗和转移播种。