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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Discovery of immunotherapy targets for pediatric solid and brain tumors by exon-level expression.
Discovery of immunotherapy targets for pediatric solid and brain tumors by exon-level expression.
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利用CAR-T 细胞对儿童实体瘤和脑肿瘤进行免疫治疗受到可用可靶向抗原的限制。癌症特异性外显子是一个有前景的靶点库;然而,这些靶点尚未以泛癌方式被系统性地探索和验证。为了识别癌症特异性外显子靶点,我们在此使用新开发的工作流程分析了来自16种儿童实体瘤和脑肿瘤的1532个RNA-seq数据集,并与正常组织进行比较。
我们发现了157个基因中的2933个外显子,这些基因编码表面蛋白组或基质体蛋白,在基因水平(n = 148)或可变剪接异构体水平(n = 9)具有高癌症特异性。选定的可变剪接靶点(包括纤连蛋白1的EDB结构域)和基因靶点(如COL11A1)的表达在儿童患者来源的异种移植肿瘤中得到验证。
我们生成了表达针对EDB结构域或COL11A1特异性的嵌合抗原受体的T细胞,并证明这些T细胞具有抗肿瘤活性。完整的靶点列表可通过交互式网络门户(https://cseminer.stjude.org/)进行探索,为利用在癌症中具有高表达特异性的基因或AS靶点开发儿童实体瘤和脑肿瘤的免疫治疗提供了丰富的资源。
Immunotherapy with chimeric antigen receptor T cells for pediatric solid and brain tumors is constrained by available targetable antigens. Cancer-specific exons present a promising reservoir of targets; however, these have not been explored and validated systematically in a pan-cancer fashion. To identify cancer specific exon targets, here we analyze 1532 RNA-seq datasets from 16 types of pediatric solid and brain tumors for comparison with normal tissues using a newly developed workflow.
We find 2933 exons in 157 genes encoding proteins of the surfaceome or matrisome with high cancer specificity either at the gene (n = 148) or the alternatively spliced isoform (n = 9) level. Expression of selected alternatively spliced targets, including the EDB domain of fibronectin 1, and gene targets, such as COL11A1, are validated in pediatric patient derived xenograft tumors.
We generate T cells expressing chimeric antigen receptors specific for the EDB domain or COL11A1 and demonstrate that these have antitumor activity. The full target list, explorable via an interactive web portal ( https://cseminer. stjude. org/ ), provides a rich resource for developing immunotherapy of pediatric solid and brain tumors using gene or AS targets with high expression specificity in cancer.
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