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:Discrete Event Simulation to Incorporate Infusion Wait-Time When Assessing Cost-Effectiveness of a Chimeric-Antigen Receptor T Cell Therapy.
Discrete Event Simulation to Incorporate Infusion Wait-Time When Assessing Cost-Effectiveness of a Chimeric-Antigen Receptor T Cell Therapy.
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在 CAR-T 费用于输注后产生的支付安排下,患者的获益损失并未体现在 ICER 中。
使用离散事件模拟,评估在年轻复发/难治性急性淋巴细胞白血病患者tisagenlecleucel成本效果分析中,等待时间(即白细胞单采至CAR-T 细胞CAR-T 输注之间的时间)的影响。
患者在模型中的进程由参数化事件发生时间分布决定;不同竞争事件决定分配的成本和质量调整生命年(QALY)。以tisagenlecleucel相较于化疗的终身增量成本效果比(ICER)表示成本效果。
基础情景中,tisagenlecleucel总计产生5.79个QALY,成本为622,872美元;blinatumomab产生1.19个QALY,成本为181,219美元,因此ICER为每QALY 96,074美元。若CAR-T 平均等待时间增加至6.20个月,由于接受输注的患者减少,tisagenlecleucel获益和成本降至2.78个QALY及294,478美元,ICER降至每QALY 71,112美元。敏感性分析中,若将tisagenlecleucel费用设定为输注前发生,则ICER会随等待时间增加而上升。
在CAR-T 费用于输注后发生的支付安排下,患者获益损失并未反映在ICER中,使用成本效果比指导资源分配的决策者可能因此受到误导。离散事件模拟适用于CAR-T 经济学建模,可纳入等待时间影响,有助于更好理解影响服务交付的因素,从而支持决策并加快患者获得CAR-T 治疗。
The main objective was to use discrete event simulation to model the impact of wait-time, defined as the time between leukapheresis and chimeric antigen receptor (CAR-T) infusion, when assessing the cost-effectiveness of tisagenlecleucel in young patients with relapsed/refractory acute lymphoblastic leukemia.
The movement of patients through the model was determined by parametric time-to-event distributions, with the competing risk of an event determining the costs and quality-adjusted life-years (QALYs) assigned. Cost-effectiveness was expressed using the incremental cost-effectiveness ratio (ICER) for tisagenlecleucel compared with chemotherapy over the lifetime.
The base case generated a total of 5.79 QALYs and $622 872 for tisagenlecleucel and 1.19 QALYs and $181 219 for blinatumomab, resulting in an ICER of $96 074 per QALY. An increase in mean CAR-T wait-time to 6.20 months reduced the benefit and costs of tisagenlecleucel to 2.78 QALYs and $294 478 because of fewer patients proceeding to infusion, reducing the ICER to $71 112 per QALY. Alternatively, when the cost of tisagenlecleucel was assigned pre-infusion in sensitivity analysis, the ICER increased with increasing wait-time.
Under a payment arrangement where CAR-T cost is incurred post-infusion, the loss of benefit to patients is not reflected in the ICER. This may be misguiding to decision makers, where cost-effectiveness ratios are used to guide resource allocation. discrete event simulation is an important tool for economic modeling of CAR-T as it is amenable to capturing the impact of wait-time, facilitating better understanding of factors affecting service delivery and consequently informed decision making to deliver faster access to CAR-T for patients.
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