RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Intratumoral spatial heterogeneity of tumor-infiltrating lymphocytes is a significant factor for precisely stratifying prognostic immune subgroups of microsatellite instability-high colorectal carcinomas.
Intratumoral spatial heterogeneity of tumor-infiltrating lymphocytes is a significant factor for precisely stratifying prognostic immune subgroups of microsatellite instability-high colorectal carcinomas.
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尽管TIL(肿瘤浸润淋巴细胞)密度已知与多种癌症预后相关,但TIL空间异质性的预后影响和免疫学意义鲜有研究。本研究在微卫星高度不稳定(MSI-H)结直肠癌(CRC)的独立发现队列(n=73)和外部验证队列(n=93)中,采用CD3/CD8免疫组化全切片图像分析定量CD3+和CD8+ TIL。采用香农指数和辛普森指数定量评估每例病例中TIL密度在瘤内不同区域之间的均匀性,以反映TIL空间异质性。为揭示基于空间异质性划分的MSI-H CRC TIL亚组相关免疫基因表达特征,对代表性病例开展GeoMx数字空间分析(DSP)。如预期,MSI-H CRC中TIL密度低与无病生存期(DFS)差显著相关。
进一步依据TIL空间异质性,将TIL低肿瘤分为TIL低/异质性高和TIL低/异质性低两个亚组。在发现和验证队列中,TIL低/异质性高、TIL低/异质性低和TIL高亚组分别与DFS差、中等和良好显著相关。DSP分析显示,与TIL低/异质性低亚组相比,TIL低/异质性高亚组的免疫相关基因表达空间多样性更高,并且免疫检查点、趋化因子/细胞因子受体和髓系细胞相关基因上调。TIL低/异质性高肿瘤中,与对免疫检查点抑制剂应答良好相关的基因集也更丰富。
总之,TIL低的MSI-H CRC在预后上存在异质性;考虑TIL空间异质性可将其划分为预后和免疫学特征不同的亚组。数据提示,瘤内TIL空间异质性可作为肿瘤临床相关免疫亚型划分的关键要素。
Although the density of tumor-infiltrating lymphocytes (TILs) is known to be linked to prognosis in various cancers, the prognostic impact and immunologic significance of the spatial heterogeneity of TILs have been rarely investigated. In this study, CD3+ and CD8+ TILs were quantified in independent cohorts (discovery, n = 73; and external validation, n = 93) of colorectal carcinomas (CRCs) with microsatellite instability-high (MSI-H) utilizing whole-slide image analysis of CD3/CD8 immunohistochemistry. The Shannon and Simpson indices, which measure intratumoral patch-to-patch evenness of TIL densities, were used to quantitatively assess the spatial heterogeneity of TILs in each case. To uncover immune-related gene expression signatures of spatial heterogeneity-based TIL subgroups of MSI-H CRCs, representative cases were subjected to GeoMx digital spatial profiler (DSP) analysis.
As expected, a low density of TILs was significantly associated with poor disease-free survival (DFS) in MSI-H CRCs. The TIL-low tumors were further classified into two subgroups based on the spatial heterogeneity of TILs: TIL-low/heterogeneity-high and TIL-low/heterogeneity-low subgroups. In both discovery and validation cohorts, the TIL-low/heterogeneity-high, TIL-low/heterogeneity-low, and TIL-high subgroups were significantly associated with poor, intermediate, and good DFS, respectively.
In the DSP analysis, the TIL-low/heterogeneity-high subgroup showed higher spatial diversity in the expression of immune-related genes than that of the TIL-low/heterogeneity-low subgroup and exhibited upregulation of genes related to immune checkpoints, chemokine/cytokine receptors, and myeloid cells. TIL-low/heterogeneity-high tumors were also enriched with gene sets related to good response to immune checkpoint inhibitor therapy.
In conclusion, TIL-low MSI-H CRCs are prognostically heterogeneous and can be divided into prognostically and immunologically distinct subgroups by considering the spatial heterogeneity of TILs.
Our data suggest that intratumoral spatial heterogeneity of TILs can be used as a key element for clinically relevant immunologic subtyping of tumors.
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