决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Using cell free DNA (cfDNA) and RNA (cfRNA) in the diagnosis and monitoring of primary and metastatic CNS tumors.
这些发现表明,使用CSF的DNA和RNA NGS联合检测进行LBx是一种可靠的方法,可产生可能改变临床实践的信息。
脑脊液(CSF)是一种相对容易获取的生物标本,利用下一代测序(NGS)进行液体活检(LBx)检测可提供基因组异常的可操作信息,从而指导临床决策和治疗选择。为评估CSF LBx的潜在临床效用,我们分析了来自1391份CSF样本的真实世界LB检测数据。
CSF样本被提交进行临床检测,转诊诊断各不相同,包括原发性脑肿瘤和转移性肿瘤。使用靶向302基因DNA panel和涵盖1600多个基因的靶向RNA panel,对游离DNA和RNA(cfDNA和cfRNA)以及细胞RNA进行了NGS检测。
在所有样本中,231例(16.6%)对任何异常完全阴性,69例(5.0%)显示与意义未明的克隆性造血(CHIP)一致的发现,2例(0.1%)仅显示B细胞克隆性,14例(1.0%)显示染色体异常但未发现突变。其余1075例(78.4%)突变阳性,伴或不伴其他异常,与原发性或转移性恶性肿瘤一致。在大多数病例中cfRNA水平极低,大量基因的表达水平接近零。尽管如此,细胞和cfRNA足以在68例(4.9%)中检测到融合基因,并在5例(0.4%)既往接受过CAR-T治疗的淋巴系统肿瘤中检测到CAR-T构建体,包括外周血中检测不到CAR-T细胞的病例。
BACKGROUND: Cerebrospinal fluid (CSF) is a relatively accessible biospecimen, and liquid biopsy (LBx) testing using next-generation sequencing (NGS) provides actionable information on genomic abnormalities that can guide clinical decisions and therapeutic selection. To evaluate the potential clinical utility of CSF LBx, we analyzed real-world LB testing data from 1391 CSF samples. METHODS: CSF samples were submitted for clinical testing with various referring diagnoses, including primary brain tumors and metastatic tumors. NGS testing of cell-free DNA and RNA (cfDNA and cfRNA) as well as cellular RNA was performed using a targeted 302-gene DNA panel and a targeted RNA panel encompassing more than 1600 genes. RESULTS: Of all samples, 231 (16.6%) were completely negative for any abnormality, 69 (5.0%) showed findings consistent with clonal hematopoiesis of indeterminate potential (CHIP), 2 (0.1%) demonstrated B-cell clonality alone, and 14 (1.0%) showed chromosomal abnormalities without identified mutations. The remaining 1075 cases (78.4%) were positive for mutations with or without additional abnormalities, consistent with primary or metastatic malignancy. cfRNA levels were extremely low in the majority of cases, with expression levels near zero across a significant number of genes. Nevertheless, cellular and cfRNA were adequate for the detection of fusion genes in 68 cases (4.9%) and CAR-T constructs in 5 cases (0.4%) of lymphoid neoplasms previously treated with CAR-T therapy, including cases in which CAR-T cells were undetectable in peripheral blood. CONCLUSIONS: These findings suggest that LBx using combined DNA and RNA NGS testing of CSF is a reliable approach that yields potentially practice-changing clinical information.
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