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:Predictive value of pre-treatment circulating tumor DNA genomic landscape in patients with relapsed/refractory multiple myeloma undergoing anti-BCMA CAR-T therapy: Insights from tumor cells and T cells.
Predictive value of pre-treatment circulating tumor DNA genomic landscape in patients with relapsed/refractory multiple myeloma undergoing anti-BCMA CAR-T therapy: Insights from tumor cells and T cells.
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最后,基于上述独立风险因素构建了一个基于 ctDNA 的风险模型,该模型可作为实质性肿瘤负荷的辅助非侵入性测量指标,以及一种预后遗传特征,有助于预测对抗 BCMA CAR-T 疗法的反应。
靶向B细胞成熟抗原(BCMA)的CAR-T(CAR-T)疗法可使复发/难治性多发性骨髓瘤(R/RMM)患者获得显著缓解。据报道,循环肿瘤DNA(ctDNA)在应对R/RMM肿瘤异质性(包括分布和遗传变异)方面具有独特优势。
本研究对浙江大学医学院附属第一医院108份R/RMM患者外周血浆样本中的ctDNA进行全面分析,样本均采集于抗BCMA CAR-T 治疗前,以评估ctDNA的预测潜力。主要采用流式细胞术检测T细胞或CAR-T 细胞亚群。
通过整合分析,本研究发现若干肿瘤及T细胞效应相关因素与治疗失败有关,包括骨髓中多发性骨髓瘤(MM)细胞比例较高(P=0.0125)、峰值时外周血CAR-T 细胞比例较低(P=0.0375),以及CD8+ T细胞比例较高(P=0.0340)。此外,ctDNA水平较高(>143 ng/mL)与PFS较短显著相关(P=0.007)。多变量Cox回归分析显示,ctDNA水平高(>143 ng/mL)、MM驱动的高危突变(包括IGLL5〔P=0.004〕、IRF4〔P=0.024〕和CREBBP〔P=0.041〕)、多部位突变数量,以及耐药相关突变ERBB4(P=0.040),均为PFS的独立危险因素。
最后,我们依据上述独立危险因素建立了基于ctDNA的风险模型。该模型可作为一种辅助性无创评估方法,用于反映显著肿瘤负荷和预后相关遗传特征,并帮助预测抗BCMA CAR-T 治疗应答。 注册:中国临床试验注册中心(ChiCTR2100046474)及美国国家临床试验注册号(NCT04670055、NCT05430945)。
B-cell maturation antigen (BCMA)-directed chimeric antigen receptor T (CAR-T) therapy yield remarkable responses in patients with relapsed/refractory multiple myeloma (R/RMM). Circulating tumor DNA (ctDNA) reportedly exhibits distinct advantages in addressing the challenges posed by tumor heterogeneity in the distribution and genetic variations in R/RMM.
Herein, the ctDNA of 108 peripheral blood plasma samples from patients with R/RMM at the First Affiliated Hospital, School of Medicine, Zhejiang University was thoroughly investigated before administration of anti-BCMA CAR-T therapy to establish its predictive potential. Flow cytometry is used primarily to detect subgroups of T cells or CAR-T cells.
In this study, several tumor and T cell effector-mediated factors were considered to be related to treatment failure by an integrat analysis, including higher percentages of multiple myeloma (MM) cells in the bone marrow ( P = 0.0125), lower percentages of CAR-T cells in the peripheral blood at peak ( P = 0.0375), and higher percentages of CD8 + T cells ( P = 0.0340). Furthermore, there is a substantial correlation between high ctDNA level (>143 ng/mL) and shorter progression-free survival (PFS) ( P = 0.007). Multivariate Cox regression analysis showed that high levels of ctDNA (>143 ng/mL), MM-driven high-risk mutations (including IGLL5 [ P = 0.004], IRF4 [ P = 0.024], and CREBBP [ P = 0.041]), number of multisite mutations, and resistance-related mutation ( ERBB4 , P = 0.040) were independent risk factors for PFS.
Finally, a ctDNA-based risk model was built based on the above independent risk factors, which serves as an adjunct non-invasive measure of substantial tumor burden and a prognostic genetic feature that can assist in predicting the response to anti-BCMA CAR-T therapy. REGISTERATION: Chinese Clinical Trial Registry (ChiCTR2100046474) and National Clinical Trial (NCT04670055, NCT05430945).
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