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:Dynamic monitoring of circulating tumor DNA reveals outcomes and genomic alterations in patients with relapsed or refractory large B-cell lymphoma undergoing CAR T-cell therapy.
Dynamic monitoring of circulating tumor DNA reveals outcomes and genomic alterations in patients with relapsed or refractory large B-cell lymphoma undergoing CAR T-cell therapy.
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我们的研究强调,CAR-T 细胞治疗期间动态 ctDNA 监测可作为一种有前景的非侵入性方法,用于早期预测治疗反应和生存结局。此外,ctDNA 突变谱为 CAR19 T 细胞治疗的肿瘤内在耐药机制提供了新见解。
超过50%接受CD19靶向嵌合抗原受体(CAR19)T细胞治疗的复发/难治性大B细胞淋巴瘤(r/r LBCL)患者未能获得持久缓解。早期识别复发或进展仍是一项重大挑战。在本研究中,我们首次在亚洲接受CAR19 T细胞治疗的r/r患者人群中,前瞻性研究动态循环肿瘤DNA(ctDNA)的预后价值,并进行非侵入性遗传演化追踪。
在淋巴细胞清除前以及CAR19 T细胞输注后的多个时间点前瞻性收集了纵向血浆样本。使用基于捕获的下一代测序检测ctDNA,该方法已在未经治疗的LBCL中经过验证。
该研究入组了23例r/r LBCL患者,共采集了101份ctDNA样本。治疗前ctDNA水平较高与较差的无进展生存期(PFS)(p=0.031)和总生存期(OS)(p=0.023)相关。第14天(D14)ctDNA阴性(ctDNA-)的患者3个月完全缓解率达到77.8%,而ctDNA阳性(ctDNA+)患者为22.2%(p=0.015),D28也观察到类似结果。与持续ctDNA+的患者相比,D28时ctDNA-预示显著更长的1年PFS(90.9% vs 27.3%;p=0.004)和OS(90.9% vs 49.1%;p=0.003)。值得注意的是,这是首次报道在接受CAR-T 细胞治疗的LBCL患者中,较短的ctDNA片段(<170碱基对)与较差的PFS(D14 p=0.031;D28 p=0.002)和OS(D14 p=0.013;D28 p=0.008)显著相关。多个突变基因在疾病进展患者中表现出更高的患病率,包括TP53、IGLL5、PIM1、BTG1、CD79B、GNA13和P2RY8。值得注意的是,我们观察到IGLL5突变与较差的PFS(p=0.008)和OS(p=0.014)之间存在显著相关性。
Over 50% of patients with relapsed or refractory large B-cell lymphoma (r/r LBCL) receiving CD19-targeted chimeric antigen receptor (CAR19) T-cell therapy fail to achieve durable remission. Early identification of relapse or progression remains a significant challenge. In this study, we prospectively investigate the prognostic value of dynamic circulating tumor DNA (ctDNA) and track genetic evolution non-invasively, for the first time in an Asian population of r/r patients undergoing CAR19 T-cell therapy.
Longitudinal plasma samples were prospectively collected both before lymphodepletion and at multiple timepoints after CAR19 T-cell infusion. ctDNA was detected using a capture-based next-generation sequencing which has been validated in untreated LBCL.
The study enrolled 23 patients with r/r LBCL and collected a total of 101 ctDNA samples. Higher pretreatment ctDNA levels were associated with inferior progression-free survival (PFS) (p=0.031) and overall survival (OS) (p=0.023). Patients with undetectable ctDNA negative (ctDNA-) at day 14 (D14) achieved an impressive 3-month complete response rate of 77.8% vs 22.2% (p=0.015) in patients with detectable ctDNA positive (ctDNA+), similar results observed for D28. CtDNA- at D28 predicted significantly longer 1-year PFS (90.9% vs 27.3%; p=0.004) and OS (90.9% vs 49.1%; p=0.003) compared with patients who remained ctDNA+. Notably, it is the first time to report that shorter ctDNA fragments (<170 base pairs) were significantly associated with poorer PFS (p=0.031 for D14; p=0.002 for D28) and OS (p=0.013 for D14; p=0.008 for D28) in patients with LBCL receiving CAR T-cell therapy. Multiple mutated genes exhibited an elevated prevalence among patients with progressive disease, including TP53 , IGLL5 , PIM1 , BTG1 , CD79B , GNA13 , and P2RY8 . Notably, we observed a significant correlation between IGLL5 mutation and inferior PFS (p=0.008) and OS (p=0.014).
Our study highlights that dynamic ctDNA monitoring during CAR T-cell therapy can be a promising non-invasive method for early predicting treatment response and survival outcomes. Additionally, the ctDNA mutational profile provides novel insights into the mechanisms of tumor-intrinsic resistance to CAR19 T-cell therapy.
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