Health-related quality of life dynamics: modeling insights from immunotherapy.

IF 3.3 3区 医学 Q1 HEALTH CARE SCIENCES & SERVICES
Zeynep Hasgul, Anne Spanjaart, Sumreen Javed, Ali Akhavan, Marie José Kersten, Mohammad S Jalali
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Abstract

Background: Understanding health-related quality of life (HRQoL) dynamics is essential for assessing and improving treatment experiences; however, clinical and observational studies struggle to capture their full complexity. We use simulation modeling and the case of Chimeric Antigen Receptor T-cell therapy-a type of cancer immunotherapy that can prolong survival, but carries life-threatening risks-to study HRQoL dynamics.

Methods: We developed an exploratory system dynamics model with mathematical equations and parameter values informed by literature and expert insights. We refined its feedback structure and evaluated its dynamic behavior through iterative interviews. Model simulated HRQoL from treatment approval through six months post-infusion. Two strategies-reducing the delay to infusion and enhancing social support-were incorporated into the model. To dynamically evaluate the effect of these strategies, we developed four metrics: post-treatment HRQoL decline, recovery time to pre-treatment HRQoL, post-treatment HRQoL peak, and durability of the peak.

Results: Model captures key interactions within HRQoL, providing a nuanced analysis of its continuous temporal dynamics, particularly physical well-being, psychological well-being, tumor burden, receipt and efficacy of treatment, side effects, and their management. Model analysis shows reducing infusion delays enhanced HRQoL across all four metrics. While enhanced social support improved the first three metrics for patients who received treatment, it did not change durability of the peak.

Conclusions: Simulation modeling can help explore the effects of strategies on HRQoL while also demonstrating the dynamic interactions between its key components, offering a powerful tool to investigate aspects of HRQoL that are difficult to assess in real-world settings.

与健康相关的生活质量动态:免疫疗法的建模启示。
背景:了解与健康相关的生活质量(HRQoL)动态对于评估和改善治疗体验至关重要;然而,临床和观察性研究很难捕捉到其全部复杂性。我们利用仿真建模和嵌合抗原受体 T 细胞疗法--一种可延长生存期但有威胁生命风险的癌症免疫疗法--来研究 HRQoL 动态:我们建立了一个探索性系统动力学模型,其数学方程和参数值参考了文献和专家的见解。我们完善了模型的反馈结构,并通过迭代访谈对其动态行为进行了评估。模型模拟了从治疗批准到输液后六个月的 HRQoL。模型中纳入了两种策略--减少输液延迟和加强社会支持。为了动态评估这些策略的效果,我们制定了四个指标:治疗后 HRQoL 下降、恢复到治疗前 HRQoL 的时间、治疗后 HRQoL 高峰以及高峰的持久性:结果:模型捕捉到了 HRQoL 中的关键交互作用,对其连续的时间动态进行了细致的分析,特别是身体健康、心理健康、肿瘤负担、接受治疗和疗效、副作用及其管理。模型分析表明,减少输液延迟可提高所有四项指标的 HRQoL。虽然加强社会支持改善了接受治疗患者的前三项指标,但并没有改变峰值的持久性:模拟建模有助于探索各种策略对 HRQoL 的影响,同时还能展示其关键组成部分之间的动态交互作用,为研究在真实世界环境中难以评估的 HRQoL 方面提供了有力的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Quality of Life Research
Quality of Life Research 医学-公共卫生、环境卫生与职业卫生
CiteScore
6.50
自引率
8.60%
发文量
224
审稿时长
3-8 weeks
期刊介绍: Quality of Life Research is an international, multidisciplinary journal devoted to the rapid communication of original research, theoretical articles and methodological reports related to the field of quality of life, in all the health sciences. The journal also offers editorials, literature, book and software reviews, correspondence and abstracts of conferences. Quality of life has become a prominent issue in biometry, philosophy, social science, clinical medicine, health services and outcomes research. The journal''s scope reflects the wide application of quality of life assessment and research in the biological and social sciences. All original work is subject to peer review for originality, scientific quality and relevance to a broad readership. This is an official journal of the International Society of Quality of Life Research.
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