CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Identification of characteristic markers correlated with Th2 cell infiltration and metabolism molecular subtype in pancreatic adenocarcinoma.
Identification of characteristic markers correlated with Th2 cell infiltration and metabolism molecular subtype in pancreatic adenocarcinoma.
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我们展示了 Th2 细胞浸润的不良预后意义,以及各亚型之间在单核苷酸多态性、CNV、自然杀伤(NK)CD56 bright 细胞浸润、物质代谢、自噬和坏死性凋亡方面的显著差异。
胰腺腺癌是致死率最高的恶性肿瘤,已逐渐成为癌症相关死亡的第三大原因。由于胰腺腺癌具有特殊性,多学科治疗难以实施。越来越多研究表明,代谢适应在胰腺腺癌中具有重要意义;代谢差异可能影响其免疫细胞浸润。亟需新的免疫相关代谢生物标志物,以改善现有靶向治疗的疗效。
研究纳入癌症基因组图谱(TCGA)数据库中168例胰腺腺癌样本的全基因组测序数据和临床信息,以及其他队列的胰腺腺癌样本及临床资料。研究使用GSVA计算特征评分,使用WGCNA和randomSurvivalForest筛选枢纽基因,使用ConsensusClusterPlus进行亚型分类,使用pRRophetic评估药物敏感性,使用maftools分析突变信息,并使用Seurat分析单细胞测序数据。
研究揭示Th2细胞浸润的预后意义,并基于枢纽基因将患者分为两个亚型;比较两亚型的免疫细胞浸润、物质代谢、细胞过程、基因突变和拷贝数变异(CNV),并探讨Th2细胞浸润的临床和生物学特征。
Th2细胞浸润与不良预后相关;不同亚型在单核苷酸多态性、CNV、NK CD56bright细胞浸润、物质代谢、自噬和程序性坏死方面存在显著差异。研究还发现两亚型对化疗药物的敏感性不同,并分析了CAR-T 细胞治疗和放疗后Th2细胞浸润的变化,以及胰腺腺癌患者正常肝组织与肝转移组织之间的差异。
Pancreatic adenocarcinoma, the deadliest malignant cancer, has gradually become the third leading cause of cancer-related death. Multidisciplinary therapy has been difficult to implement because of the particularity of pancreatic adenocarcinoma. Research has increasingly indicated the significance of metabolic adaption in pancreatic adenocarcinoma. The difference in metabolism may influence immune cell infiltration in pancreatic adenocarcinoma. Novel immune-related metabolism biomarkers are needed to improve the therapeutic outcomes of existing targeted therapies.
We enrolled whole-genome sequencing data and clinical information about 168 pancreatic adenocarcinoma samples from The Cancer Genome Atlas (TCGA) database, other pancreatic adenocarcinoma samples, and clinical information from other cohorts. We used the gene set variation analysis (GSVA) package to calculate feature score, the weighted gene co-expression network analysis (WGCNA) and randomSurvivalForest package to screen hub genes, the ConsenClusterPlus package to classify subtypes, the pRRopthetic package to evaluate drug sensibility, the maftools package to analyze mutation information and the Seurat package to analyze single cell sequencing data.
We revealed the prognosis significance of Th2 cell infiltration, classified two subtypes based on hub genes, compared immune cell infiltration, substance metabolism, cellular processes, gene mutation, and copy number variation (CNV) between subtypes and explored the clinical and biological features of Th2 cell infiltration.
We displayed the poor prognosis significance of Th2 cell infiltration and the significant difference of simple nucleotide polymorphism, CNV, natural killer (NK) CD56 bright cell infiltration, substance metabolism, autophagy and necroptosis between subtypes. Additionally, we discovered the sensitivity difference of chemotherapy drug and the Th2 cell infiltration changes after chimeric antigen receptor T cells (CAR-T) cell therapy and radiotherapy and explored the differences between normal liver and metastatic liver tissues of pancreatic adenocarcinoma patients.
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