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:Scoring model based on the signature of non-m6A-related neoantigen-coding lncRNAs assists in immune microenvironment analysis and TCR-neoantigen pair selection in gliomas.
Scoring model based on the signature of non-m6A-related neoantigen-coding lncRNAs assists in immune microenvironment analysis and TCR-neoantigen pair selection in gliomas.
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我们的工作表明,非 m6A 相关的新抗原编码 lncRNA 在胶质瘤进展中发挥重要作用,筛选出的 TCR 克隆型可能为胶质瘤的 CAR-T 细胞治疗提供潜在途径。
由长非编码 RNA(lncRNA)编码的小肽因其多种功能而受到关注。近期研究表明,这些小肽参与免疫反应和抗原呈递。然而,RNA 修饰的意义仍不清楚。
从TransLnc数据库中筛选出13个非m6A相关的新抗原编码lncRNA进行分析。接下来,基于这些lncRNA的特征建立了新抗原激活评分(NAS)模型。采用机器学习将该模型扩展至另外两个RNA-seq和两个单细胞测序数据集以进一步验证。使用DLpTCR算法预测T细胞受体(TCR)-肽结合概率。
非m6A相关的NAS模型比m6A相关的NAS模型更精确地预测了患者的总生存期结局。此外,非m6A相关的NAS与肿瘤细胞的进化水平、免疫浸润和抗原呈递呈正相关。然而,高NAS胶质瘤也显示出更多的PD-L1表达和T细胞正调控因子的高突变频率。有趣的是,细胞间通讯分析结果表明,在两个NAS组中,T细胞-高肿瘤细胞相互作用均较弱,这可能源于IFNGR1表达降低。此外,我们基于13个所选lncRNA编码的肽,鉴定出存在于所有胶质瘤样本中的独特TCR-肽对。并且在高NAS胶质瘤中发现了水平升高的新抗原活性TCR模式。
Small peptides encoded by long non-coding RNAs (lncRNAs) have attracted attention for their various functions. Recent studies indicate that these small peptides participate in immune responses and antigen presentation. However, the significance of RNA modifications remains unclear.
Thirteen non-m6A-related neoantigen-coding lncRNAs were selected for analysis from the TransLnc database. Next, a neoantigen activation score (NAS) model was established based on the characteristics of the lncRNAs. Machine learning was employed to expand the model to two additional RNA-seq and two single-cell sequencing datasets for further validation. The DLpTCR algorithm was used to predict T cell receptor (TCR)-peptide binding probability.
The non-m6A-related NAS model predicted patients' overall survival outcomes more precisely than the m6A-related NAS model. Furthermore, the non-m6A-related NAS was positively correlated with tumor cells' evolutionary level, immune infiltration, and antigen presentation. However, high NAS gliomas also showed more PD-L1 expression and high mutation frequencies of T-cell positive regulators. Interestingly, results of intercellular communication analysis suggest that T cell-high neoplastic cell interaction is weaker in both of the NAS groups which might arise from decreased IFNGR1 expression. Moreover, we identified unique TCR-peptide pairs present in all glioma samples based on peptides encoded by the 13 selected lncRNAs. And increased levels of neoantigen-active TCR patterns were found in high NAS gliomas.
Our work suggests that non-m6A-related neoantigen-coding lncRNAs play an essential role in glioma progression and that screened TCR clonotypes might provide potential avenues for chimeric antigen receptor T cell (CAR-T) therapy for gliomas.
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