CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Unveiling the immune microenvironment in sinonasal intestinal type adenocarcinoma: new arguments for immunotherapy.
Unveiling the immune microenvironment in sinonasal intestinal type adenocarcinoma: new arguments for immunotherapy.
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鼻腔鼻窦肠型腺癌(ITAC)是一种罕见的恶性肿瘤,与职业性木屑暴露密切相关,在形态学和分子特征上与结直肠腺癌具有相似性。标准治疗对晚期或复发性疾病的获益有限。
因此,有必要开发其他策略,例如免疫治疗,而这需要更好地了解肿瘤免疫微环境。在本研究中,我们采用免疫组织化学原位检测、多参数流式细胞术离体检测以及转录组分析,研究了ITACs(n=59)的免疫微环境,重点关注肿瘤浸润性T淋巴细胞(TILs)和巨噬细胞。高CD8⁺ T细胞密度与无病生存期和总生存期的显著改善相关,并可作为独立预后因素。这些TILs表达免疫检查点(IC),其中表达最高的是PD1、TIGIT和TIM-3。
此外,TIM-3不仅由TILs表达,也由免疫调节性巨噬细胞表达,可能代表ITACs中一种重要的免疫逃逸机制,因为在患者来源的外植体中阻断TIM-3可导致肿瘤细胞凋亡增加。肿瘤细胞强表达CD155(TIGIT配体),但不表达PDL1(PD1配体);然而PDL1由髓系细胞表达。
最后,转录组分析鉴定出一个呈现“热肿瘤”特征的聚类,以适应性免疫激活、更好的预后和更高的免疫治疗反应评分为特征,以及另一个具有“冷肿瘤”特征的聚类。这些在ITAC中初步的探索性和描述性发现,为进一步使用离体和体内模型进行研究提供了依据,以评估免疫疗法在这些罕见癌症中的治疗潜力。
Sinonasal intestinal-type adenocarcinoma (ITAC) is a rare malignancy strongly associated with occupational exposure to wood dust that shares morphological and molecular similarities with colorectal adenocarcinoma. Standard treatments offer limited benefit for advanced or recurrent disease. It is therefore necessary to develop other strategies, such as immunotherapies, which require a better understanding of the tumor immune microenvironment, are needed.
In this study, we investigated the immune microenvironment of ITACs (n =59 ), focusing on tumor-infiltrating T lymphocytes (TILs) and macrophages, in situ using immunohistochemistry, ex vivo by multiparametric flow cytometry, as well as by transcriptomic profiling. High CD8⁺ T-cell densities were associated with significantly improved disease-free and overall survival and emerged as an independent prognostic factor. These TILs express immune checkpoints (IC), the most highly expressed being PD1, TIGIT, and TIM-3.
Furthermore, TIM-3 was not only expressed by TILs but also by immunoregulatory macrophages, and may represent an important immune escape mechanism in ITACs, since TIM-3 blockade in patient-derived explants led to increased tumor cell apoptosis. Tumor cells strongly expressed CD155 (TIGIT ligand) but not PDL1 (PD1 ligand); however expressed by myeloid cells.
Finally, transcriptomic analyses identified one cluster displaying features of "hot tumors" characterized by adaptive immune activation, a better prognosis, and a higher immunotherapy response score, and another cluster with features of "cold tumors". These first exploratory and descriptive findings in ITACs provide a rationale for further investigations using ex vivo and in vivo models to evaluate the therapeutic potential of immunotherapies in these rare cancers.
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