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整合免疫抑制检查点蛋白 PD-L1 水平与 TIL(肿瘤浸润淋巴细胞)揭示胶质瘤肿瘤微环境

英文原题:The levels of immunosuppressive checkpoint protein PD-L1 and tumor-infiltrating lymphocytes were integrated to reveal the glioma tumor microenvironment.

查看英文原题

The levels of immunosuppressive checkpoint protein PD-L1 and tumor-infiltrating lymphocytes were integrated to reveal the glioma tumor microenvironment.

PubMed 2023/10/04(内容时间) Environ Toxicol

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中文摘要

尽管癌症生物学和治疗干预取得重大进展,胶质母细胞瘤(GBM)患者的临床预后仍极差。肿瘤免疫微环境(TIME)在胶质瘤进展、治疗应答和预后轨迹中发挥关键作用,值得深入研究。在这一复杂微环境中,免疫抑制性检查点蛋白PD-L1和TIL(肿瘤浸润淋巴细胞)是重要组成部分,有望帮助阐明胶质瘤生物学并指导治疗。

然而,尚无基于TIME中PD-L1表达和TIL浸润关联的预后模型。本研究旨在探索与PD-L1表达和TIL浸润相关的TIME基因,并据此构建预测GBM患者总生存期(OS)的风险评分。根据PD-L1表达水平和TIL评分分别对样本分组,通过差异表达分析及加权基因共表达网络分析筛选TIME相关基因。再将差异表达基因纳入最小绝对收缩与选择算子(LASSO)-Cox回归,构建TIME相关风险评分(TIMErisk)。该评分基于STEAP3和CXCL13基因,其中STLEAP3被证实参与胶质瘤进展。

结果显示,高TIMErisk组患者OS较差。研究还从功能富集、肿瘤免疫特征及肿瘤突变谱分析与TIMErisk相关的生物学表型。肿瘤免疫功能障碍与排斥(TIDE)评分及免疫表型评分(IPS)显示,不同TIME风险的GBM患者对免疫治疗的应答不同。肿瘤纯度分析表明,PD-L1和TIL评分均与TIMErisk正相关、与肿瘤纯度负相关。上述结果显示,TIMErisk预后模型对GBM患者预后和免疫特征具有较高预测价值。对高、低TIMErisk组患者免疫组化图像分析还发现,高风险组免疫细胞浸润程度更高。

本研究为理解胶质瘤肿瘤微环境提供依据,也为开展全面的免疫基因组分析奠定基础。

展开英文摘要原文

In spite of significant strides in the realm of cancer biology and therapeutic interventions, the clinical prognosis for patients afflicted with glioblastoma (GBM) remains distressingly dismal. The tumor immune microenvironment (TIME), a crucial player in the progression, treatment response, and prognostic trajectory of glioma, warrants thorough exploration.

Within this intricate microcosm, the immunosuppressive checkpoint protein PD-L1 and tumor-infiltrating lymphocytes (TILs) emerge as pivotal constituents, underscoring their potential role in deciphering glioma biology and informing treatment strategies.

However, prognostic models based on the association between PD-L1 expression and TIL infiltration in the tumor immune microenvironment have not been established. The aim of this study was to explore TIME genes associated with PD-L1 expression and TIL invasion and to construct a risk score for predicting the overall survival (OS) of GBM patients based on these genes. The samples were separately classified according to the PD-L1 expression level and TIL score and TIME-related genes were identified using differential expression and weighted gene co-expression network analysis. The DEGs were subjected to least absolute contraction and selection operator (LASSO) -Cox regression to construct TIME associated risk score (TIMErisk). A TIMErisk was developed based on STEAP3 and CXCL13 genes. The STLEAP3 was demonstrated to be involved in glioma progression. The results showed that the patients in the high TIMErisk group had poor OS compared with subjects in the low TIMErisk group.

The biological phenotypes associated with TIMErisk were analyzed in terms of functional enrichment, tumor immune profile, and tumor mutation profile. The results on tumor immune dysfunction and exclusion dysfunction (TIDE) score and immune surface score (IPS) showed that GBM patients with different TIME risks had different responses to immunotherapy. Tumor purity analysis indicated that PD-L1 and TIL scores were positively correlated with TIMErisk score and negatively correlated with tumor purity.

These results show that the TIMErisk-based prognostic model had high predictive value for the prognosis and immune characteristics of GBM patients. Immunohistochemical staining images of patients in the high and low TIMErisk groups were analyzed, showing that the degree of immune cell infiltration was higher in the high TIMErisk group relative to the low TIMErisk group. The present study provides a basis for understanding glioma tumor microenvironment and a foundation for conducting comprehensive immunogenomic analysis.

论文信息

作者
Zhang W、Liu L、Liu X、Han C、Li Q
单位
Department of Neurosurgery, First Affiliated Hospital of Wenzhou Medical University, Wenzhou, China.China
期刊
Environmental toxicology2024 Feb
原文标识
PubMed 37792606 · DOI 10.1002/tox.23979