下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Spatial profiling reveals association between WNT pathway activation and T-cell exclusion in acquired resistance of synovial sarcoma to NY-ESO-1 transgenic T-cell therapy.
Spatial profiling reveals association between WNT pathway activation and T-cell exclusion in acquired resistance of synovial sarcoma to NY-ESO-1 transgenic T-cell therapy.
bulk和空间图谱的互补使用能够更准确地研究肿瘤标本,特别是解决关于免疫治疗机制的复杂问题。我们的研究采用这种方法来证明滑膜肉瘤中T细胞排斥和细胞免疫治疗耐药的机制。
基因工程T细胞免疫疗法用于过继性细胞转移(ACT)已成为一种有前景的癌症治疗形式,但许多接受此类治疗的患者会出现疾病复发。此外,由于空间异质性可能使肿瘤整体分析变得复杂,阐明耐药机制可能具有挑战性。
肿瘤样本采集自一名滑膜肉瘤患者,该患者对靶向NY-ESO-1的ACT产生了获得性耐药。对活检样本(原发灶、进展转移灶和复发灶)进行了肿瘤DNA和RNA批量测序,以及RNA和蛋白质靶点的高维空间分析。将未经治疗的病灶与进展病灶进行比较,以识别与ACT获得性耐药相关的模式。
由于免疫活性和浸润导致的基因表达模式在肿瘤批量测序中被稀释。转移灶中富集了CTNNB1(编码β-catenin)增加的肿瘤区域,这些区域与T细胞表面蛋白和抗原呈递机制的表达呈负相关。在空间异质性较低的病变中,空间图谱与批量测序的一致性最高。
BACKGROUND: Genetically engineered T-cell immunotherapies for adoptive cell transfer (ACT) have emerged as a promising form of cancer treatment, but many of these patients develop recurrent disease. Furthermore, delineating mechanisms of resistance may be challenging since the analysis of bulk tumor profiling can be complicated by spatial heterogeneity. METHODS: Tumor samples were collected from a patient with synovial sarcoma who developed acquired resistance to ACT targeting NY-ESO-1. Biopsies (primary, progressive metastasis, and recurrence) were subjected to bulk tumor DNA and RNA sequencing, as well as high-dimensional spatial profiling of RNA and protein targets. Untreated and progressive lesions were compared with identified patterns associated with acquired resistance to ACT. RESULTS: Gene expression patterns due to immune activity and infiltration were diluted in bulk tumor sequencing. The metastasis was enriched for tumor regions with increased CTNNB1 (encoding beta-catenin), which were negatively associated with the expression of T-cell surface proteins and antigen presentation machinery. Spatial profiling was most highly concordant with bulk sequencing in the lesions with decreased spatial heterogeneity. CONCLUSIONS: Complementary use of bulk and spatial profiling enables more accurate interrogation of tumor specimens, particularly to address complex questions regarding immunotherapeutic mechanisms. Our study uses this approach to demonstrate a mechanism of T-cell exclusion and resistance to cellular immunotherapy in synovial sarcoma.
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