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:An updated cost-effectiveness analysis of axicabtagene ciloleucel in second-line large B-cell lymphoma patients in the United States.
An updated cost-effectiveness analysis of axicabtagene ciloleucel in second-line large B-cell lymphoma patients in the United States.
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结果在广泛的敏感性分析和情景分析中保持一致,包括交叉调整分析,表明成熟的 OS 数据显著降低了 axi-cel 在美国 2L 治疗中成本效益的不确定性。
本项关于axicabtagene ciloleucel(axi-cel)相较既往标准治疗(SOC;挽救性化疗后进行大剂量治疗并自体干细胞救援)用于美国二线(2L)大B细胞淋巴瘤患者的经济学评估,是对既往生存数据尚不成熟的经济模型的更新。
分析基于ZUMA-7临床试验主要总生存期(OS)数据(中位随访47.2个月),从美国支付方视角出发,模型时间范围为50年。采用混合治愈模型外推更新后的生存数据,并更新后续治疗数据及成本。假设5年时仍处于无事件生存期状态的患者已获得长期缓解,无需后续治疗。
尽管SOC组57%的患者之后接受了细胞治疗,仍观察到显著的生存和生活质量获益:模型预测的OS中位数(ZUMA-7试验Kaplan-Meier估计值)为axi-cel组78个月(中位数未达到),SOC组25个月(31个月),axi-cel组增量质量调整生命年(QALY)为1.63。由于大量交叉接受细胞治疗,SOC组后续治疗成本增量更高。因此,按照美国普遍接受的每QALY 150,000美元愿付阈值,axi-cel具有成本效益,其增量成本效益比为每QALY 98,040美元。
在多种敏感性及情境分析中,包括校正交叉治疗的分析,结果均保持一致,提示成熟的OS数据显著降低了axi-cel在美国二线治疗场景中成本效益的不确定性。尝试移植路径后再推迟CAR-T 治疗,可能导致过多死亡、生活质量下降;与二线axi-cel相比,这将是资源使用效率较低的做法。
This analysis is based on primary overall survival (OS) ZUMA-7 clinical trial data (median follow-up of 47.2 months), from a United States (US) payer perspective, with a model time horizon of 50 years. Mixture cure models were used to extrapolate updated survival data; subsequent treatment data and costs were updated. Patients who remained in the event-free survival state by 5 years were assumed to have achieved long-term remission and not require subsequent treatment.
Substantial survival and quality of life benefits were observed despite 57% of patients in the SOC arm receiving subsequent cellular therapy: median model-projected (ZUMA-7 trial Kaplan-Meier estimated) OS was 78 months (median not reached) for axi-cel versus 25 months (31 months) for SOC, resulting in incremental quality-adjusted life year (QALY) difference of 1.63 in favor of axi-cel. Incrementally higher subsequent treatment costs were observed in the SOC arm due to substantial crossover to cellular therapies, thus, when considering the generally accepted willingness to pay threshold of $150,000 per QALY in the US, axi-cel was cost-effective with an incremental cost-effectiveness ratio of $98,040 per QALY.
Results remained consistent across a wide range of sensitivity and scenario analysis, including a crossover adjusted analysis, suggesting that the mature OS data has significantly reduced the uncertainty of axi-cel's cost-effectiveness in the 2L setting in the US. Deferring treatment with CAR T therapies after attempting a path to transplant may result in excess mortality, lower quality of life and would be an inefficient use of resources relative to 2L axi-cel.
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