纵向血浆代谢组学指导食管鳞状细胞癌化疗免疫治疗的动态风险评估与饮食调节
Longitudinal Plasma Metabolomics Guides Dynamic Risk Assessment and Dietary Modulation for Esophageal Squamous Cell Cancer Chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:HLA-A(+) tertiary lymphoid structures with reactivated tumor infiltrating lymphocytes are associated with a positive immunotherapy response in esophageal squamous cell carcinoma.
HLA-A(+) tertiary lymphoid structures with reactivated tumor infiltrating lymphocytes are associated with a positive immunotherapy response in esophageal squamous cell carcinoma.
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HLA-A + TLSs 存在于 ESCC 肿瘤组织中。
免疫检查点阻断(ICB)治疗为多种癌症带来显著临床获益,但食管鳞状细胞癌(ESCC)对 ICB 的总体缓解率仍较低。本研究旨在识别 ESCC ICB 治疗生物标志物并探究其潜在临床意义。
分析 42 例未经治疗 ESCC 肿瘤组织的基因表达,识别与免疫治疗不同应答相关的差异表达基因、TIL(肿瘤浸润淋巴细胞)及免疫相关基因特征。使用 NanoString GeoMx 数字空间分析、单细胞 RNA 测序和多重免疫组化系统评估 ESCC 肿瘤微环境。最后评估 60 例 ESCC 患者中 HLA-A 阳性三级淋巴结构(TLS)与 ICB 应答的关系。
ICB 应答者肿瘤浸润 B 淋巴细胞及多种免疫相关基因特征(如抗原呈递机制〔APM〕特征)显著升高。多重免疫组化鉴定出 HLA-A+ TLS,并显示随着 TLS 成熟,其中驻留细胞的 HLA-A 表达增加。TLS 驻留 HLA-A+ 细胞多数为肿瘤浸润 T(TIL-T)或肿瘤浸润 B(TIL-B)淋巴细胞。对空间上不同的 TIL-T 进行数字空间分析,并对 60 例 ESCC 肿瘤组织进行单细胞 RNA 测序,发现 TLS 内表达 CXCL13 的耗竭 TIL-T 随 TLS 成熟而重新活化,APM 特征表达升高。最后,研究证实 HLA-A+ TLS 及其主要细胞成分 TIL-T 和 TIL-B 与 ESCC 患者 ICB 临床获益相关。
ESCC 肿瘤组织中存在 HLA-A+ TLS。APM 特征表达升高的 TLS 驻留 TIL-T 可能被重新活化。HLA-A+ TLS 及其主要细胞成分 TIL-T 和 TIL-B,可能成为接受 ICB 治疗的 ESCC 患者生物标志物。
Immune checkpoint blockade (ICB) therapy provides remarkable clinical benefits for multiple cancer types. However, the overall response rate to ICB therapy remains low in esophageal squamous cell carcinoma (ESCC). This study aimed to identify biomarkers of ICB therapy for ESCC and interrogate its potential clinical relevance.
We investigated gene expression in 42 treatment-na ve ESCC tumor tissues and identified differentially expressed genes, tumor-infiltrating lymphocytes and immune-related genes signatures associated with differential immunotherapy responses. We systematically assessed the tumor microenvironment using the NanoString GeoMx digital spatial profiler, single-cell RNA-seq and multiplex immunohistochemistry in ESCC. Finally, we evaluated the associations between HLA-A-positive tertiary lymphoid structures (TLSs) and patients' responses to ICB in 60 ESCC patients.
Tumor infiltrating B lymphocytes and several immune-related gene signatures, such as the antigen presenting machinery (APM) signature, are significantly elevated in ICB treatment responders. Multiplex immunohistochemistry identified the presence of HLA-A + TLSs and showed that TLS-resident cells increasingly express HLA-A as TLSs mature. Most TLS-resident HLA-A + cells are tumor-infiltrating T (TIL-T) or tumor-infiltrating B (TIL-B) lymphocytes. Digital spatial profiling of spatially distinct TIL-T lymphocytes and single-cell RNA-seq data from 60 ESCC tumor tissues revealed that CXCL13-expressing exhausted TIL-Ts inside TLSs are reactivated with elevated expression of the APM signature as TLSs mature. Finally, we demonstrated that HLA-A + TLSs and their major cellular components, TIL-Ts and TIL-Bs, are associated with a clinical benefit from ICB treatment for ESCC.
HLA-A + TLSs are present in ESCC tumor tissues. TLS-resident TIL-Ts with elevated expression of the APM signature may be reactivated. HLA-A + TLSs and their major cellular components, TIL-Ts and TIL-Bs, may serve as biomarkers for ICB-treated ESCC patients.
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