Comprehensive genomic and spatial immune infiltration analysis of survival outliers in extensive-stage small cell lung cancer receiving first-line chemoimmunotherapy

化学免疫疗法 免疫系统 阶段(地层学) 癌症研究 渗透(HVAC) 生物 肺癌 肿瘤科 医学 免疫学 免疫疗法 古生物学 物理 热力学
作者
Yuxin Jiang,Jingyuan Xie,Qinpei Cheng,Zijing Cai,Ke Xu,Wanjun Lu,Fufeng Wang,Xiaoying Wu,Yong Song,Tangfeng Lv,Ping Zhan
出处
期刊:International Immunopharmacology [Elsevier BV]
卷期号:141: 112901-112901 被引量:8
标识
DOI:10.1016/j.intimp.2024.112901
摘要

• CD8 + T cells in stroma and M1-like macrophages predict chemoimmunotherapy efficacy. • MCL1 , STMN1 , KMT2B , EPHA3 , HGF , DLL3 and ADGRB3 alterations are survival predictors. • Predominant Smoking signature and heavier TMB indicated favorable survival. A minority of patients with extensive-stage small cell lung cancer (ES-SCLC) exhibit prolonged survival following first-line chemoimmunotherapy, which warrants the use of reliable biomarkers. Here, we investigated the disparities in genomics and immune cell spatial distribution between long- and short-term survival of patients with ES-SCLC. We retrospectively recruited 11 long-term (>2 years) and 13 short-term (<9 months) ES-SCLC survivors receiving first-line chemoimmunotherapy. The samples were processed using targeted next-generation sequencing (tNGS), programmed death ligand-1 staining, multiplex immunohistochemical staining for immune cells (mIHC), tumor mutation burden (TMB), and chromosomal instability score measurements. The expression of putative genes in SCLC at the bulk and single-cell RNA-sequencing levels, as well as the role of putative genes in pan-cancer immunotherapy cohorts, were analyzed. At the genomic level, a greater proportion of the smoking signature and higher TMB (>3.1) were associated with favorable survival. At the single-gene and pathway levels, tNGS revealed that MCL1 and STMN1 amplification and alterations in the apoptosis pathway were more common in short-term survivors, whereas alterations in the DLL3 , KMT2B , HGF , EPHA3 , ADGRB3 , lysine deprivation, and HGF-cMET pathways were observed more frequently in long-term survivors. mIHC analysis of immune cells with different spatial distributions revealed that long-term survivors presented increased numbers of M1-like macrophages in all locations and decreased numbers of CD8 + T cells in the tumor stroma. Bulk transcriptomic analysis demonstrated that high levels of STMN1 and DLL3 represented an immune-suppressive tumor immune microenvironment (TIME), whereas HGF indicated an immune-responsive TIME. The expression levels of our putative genes were comparative in both TP53/RB1 mutant-type and TP53/RB1 wild-type. At the single-cell level, STMN1 , MCL1 , and DLL3 were highly expressed among all molecular subtypes (SCLC-A, SCLC-N, and SCLC-P), with STMN1 being enriched in cell division and G2M checkpoint pathways. For ES-SCLC patients receiving first-line chemoimmunotherapy, alterations in DLL3 , KMT2B , HGF , EPHA3 , and ADGRB3 and a greater proportion of M1-like macrophages infiltration in all locations were predictors of favorable survival, while MCL1 and STMN1 amplification, as well as a greater proportion of CD8 + T cells infiltrating the tumor stroma, predicted worse survival.
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