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:Risk Assessment in Large B-Cell Lymphoma Using Metabolic Tumor Volume: Real-World Data from a Multicenter Cohort of Patients Undergoing CAR T-Cell Therapy.
Risk Assessment in Large B-Cell Lymphoma Using Metabolic Tumor Volume: Real-World Data from a Multicenter Cohort of Patients Undergoing CAR T-Cell Therapy.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
分析集包括来自5家德国大学医院和1家意大利中心的111例LBCL患者,这些患者在CAR-T 细胞治疗前接受了PET成像。采用固定SUV阈值4.0进行病灶勾画,半自动测量代谢肿瘤负荷。我们通过受试者工作特征曲线、Harrell C指数及其他标准评估其预测无进展生存期(PFS)的性能。基于这些分析,将MTV与IPI进行比较,并考虑了4种纳入18 F-FDG亲和性肿瘤负荷的风险评分。
我们计算得出MTV的曲线下面积和Harrell C指数分别为0.68(95% CI,0.58-0.78)和0.59(95% CI,0.52-0.66)。在我们的队列中,代谢肿瘤负荷比IPI更能准确预测PFS。已建立评分的曲线下面积和Harrell C指数分别为0.61(95% CI,0.49-0.72)和0.54(95% CI,0.47-0.61)。结合MTV和结外受累的风险模型在所考虑的风险模型中表现最佳,但并不优于单独使用PET衍生的肿瘤体积。
我们的数据表明,在预测计划接受 tisagenlecleucel 或 axicabtagene ciloleucel 治疗的 LBCL 患者的 PFS 方面,MTV 优于广泛使用的 IPI。与单独使用代谢肿瘤负荷相比,将 PET 生物标志物与其他因素结合的评分并未进一步改善风险评估。因此,在这一特定背景下,通过个体化桥接策略有效降低 MTV 可能发挥特别重要的作用。
Chimeric antigen receptor (CAR) T-cell therapy has proven highly effective in relapsed and refractory large B-cell lymphoma (LBCL).
However, it remains unclear how to identify potential nonresponders before infusion. PET-derived metabolic tumor volume (MTV) has emerged as a promising biomarker in this context. The International Prognostic Index (IPI) remains commonly used to guide initial therapy and is an important element of patient stratification at later treatment time points.
This study assessed whether quantification of 18 F-FDG-avid lymphoma burden or MTV-based risk scores can predict outcomes more accurately than the IPI. Methods: The analysis set included 111 patients with LBCL from 5 German university hospitals and 1 Italian center who underwent PET imaging before CAR T-cell therapy. Metabolic tumor burden was measured semiautomatically using a fixed SUV threshold of 4. 0 for lesion delineation.
We evaluated its performance in the prediction of progression-free survival (PFS) through receiver-operating-characteristic curves, Harrell C-index, and additional criteria. Based on these analyses, MTV was compared with the IPI, considering 4 risk scores that incorporate 18 F-FDG-avid tumor load. Results: We calculated an area under the curve and a Harrell C-index of 0. 68 (95% CI, 0. 58-0. 78) and 0. 59 (95% CI, 0. 52-0. 66), respectively, for MTV. Metabolic tumor burden was a more accurate predictor of PFS in our cohort than the IPI. The established score's area under the curve and Harrell C-index were 0.
61 (95% CI, 0. 49-0. 72) and 0. 54 (95% CI, 0. 47-0. 61), respectively. A risk model combining MTV and extranodal involvement demonstrated the highest performance among those considered but was not superior to PET-derived tumor volume alone. Conclusion: Our data show that MTV outperforms the widely used IPI in predicting PFS of LBCL patients planned for tisagenlecleucel or axicabtagene ciloleucel. Compared with metabolic tumor burden alone, scores which combine the PET biomarker with other factors did not further improve risk assessment.
Thus, effective reduction of MTV through individualized bridging strategies may play a particularly important role in this specific context.
MEMBER ACCOUNT
登录成功会直接打开下一页。