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面向多周期癌症治疗的高效时间事件剂量递增指导

英文原题:Towards Efficient Time-to-Event Dose-Escalation Guidance of Multi-Cycle Cancer Therapies.

查看英文原题

Towards Efficient Time-to-Event Dose-Escalation Guidance of Multi-Cycle Cancer Therapies.

PubMed 2025/09/01(内容时间) Stat Med Q1 · IF 2.1(JCR 2025)

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中文摘要

癌症治疗随着时间的推移以相当显著的方式迅速发展,例如从化疗、靶向治疗到免疫治疗和CAR-T 细胞。尽管如此,肿瘤学中早期I期试验的基本设计仍然主要遵循剂量递增设计。这些试验在第一个治疗周期内监测安全性,以递增所研究药物的剂量。

然而,随着时间的推移,研究其他因素如药物组合和/或给药时间变化也变得重要。现有设计不断得到增强和扩展,以应对试验复杂性的增加。由于毒性发生在第一个周期之后的较晚阶段,并且需要在多个周期内治疗患者,仅关注第一个治疗周期在当今多周期治疗疗法中正成为一个局限。

在此,我们介绍一种多周期时间至事件模型(TITE-CLRM:时间间隔至事件互补双对数回归模型),允许指导研究多周期疗法的剂量递增试验。挑战在于平衡监测较长治疗期安全性的需求与持续安全入组患者的需求。所提出的多周期时间至事件模型被表述为对已有概念(如过量控制递增原则)的扩展。该模型的动机来自当前的一个药物开发项目,并在模拟研究中进行了评估。

展开英文摘要原文

Treatment of cancer has rapidly evolved over time in quite dramatic ways, for example, from chemotherapies, targeted therapies to immunotherapies and chimeric antigen receptor T-cells. Nonetheless, the basic design of early phase I trials in oncology still follows predominantly a dose-escalation design. These trials monitor safety over the first treatment cycle to escalate the dose of the investigated drug.

However, over time, studying additional factors such as drug combinations and/or variation in the timing of dosing became important as well. Existing designs were continuously enhanced and expanded to account for increased trial complexity. With toxicities occurring at later stages beyond the first cycle and the need to treat patients over multiple cycles, the focus on the first treatment cycle only is becoming a limitation in nowadays multi-cycle treatment therapies.

Here, we introduce a multi-cycle time-to-event model (TITE-CLRM: Time-Interval-To-Event Complementary-Loglog Regression Model), allowing guidance of dose-escalation trials studying multi-cycle therapies. The challenge lies in balancing the need to monitor the safety of longer treatment periods with the need to continuously enroll patients safely.

The proposed multi-cycle time-to-event model is formulated as an extension to established concepts like the escalation with overdose control principle. The model is motivated by a current drug development project and evaluated in a simulation study.

论文信息

作者
Widmer LA、Weber S、Xu Y、Weber HJ
单位
Advanced Quantitative Sciences, Novartis Pharma AG, Basel, Switzerland.Switzerland
期刊
Statistics in medicine2025 Sep
原文标识
PubMed 40956065 · DOI 10.1002/sim.70229