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orvacabtagene autoleucel(一种自体 BCMA 靶向 CAR-T 细胞产品)在复发/难治性多发性骨髓瘤患者中的群体药代动力学

英文原题:Population Pharmacokinetics of Orvacabtagene Autoleucel, an Autologous BCMA-Directed Chimeric Antigen Receptor T-cell Product, in Patients with Relapsed/Refractory Multiple Myeloma.

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Population Pharmacokinetics of Orvacabtagene Autoleucel, an Autologous BCMA-Directed Chimeric Antigen Receptor T-cell Product, in Patients with Relapsed/Refractory Multiple Myeloma.

PubMed 2025/03/17(内容时间) Clin Cancer Res Q1 · IF 10.9(JCR 2025)

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研究概要

Orva-cel PK 被一个改良的分段模型充分描述,该模型纳入了细胞数量依赖的扩增期,与 T 细胞生物学高度吻合。

研究思路结论见上方概要

Orvacabtagene autoleucel(orva-cel;JCARH125)是一种靶向B细胞成熟抗原的CAR-T 细胞疗法,在EVOLVE I/II期研究(NCT03430011)中用于评估复发/难治性多发性骨髓瘤患者。我们应用了一种改良的分段模型来表征orva-cel转基因动力学,并评估了各种协变量对其药代动力学(PK)的影响。

群体PK分析纳入来自EVOLVE研究的159例患者。将采用一级扩增速率(伴或不伴滞后期)后接双指数收缩阶段的传统分段模型,与一个纳入符合细胞生理学的细胞数量依赖性扩增阶段的改良模型进行比较。评估的协变量包括基线人口学特征、剂量水平(50-600 × 106 CD3+ 嵌合抗原受体+ T细胞)、既往/合并用药、基线疾病负荷以及抗治疗抗体状态。

传统分段模型未能准确描述orva-cel转基因的最大水平(Cmax),并低估了达到Cmax的时间(Tmax)。我们改进的模型纳入了细胞数量依赖的扩增速率,通过以下两点优于传统模型:(i)更准确地捕捉细胞扩增阶段,(ii)得出的Tmax与观察值密切匹配。此外,剂量水平、骨髓中浆细胞的百分比以及治疗诱导的抗治疗抗体被确定为统计学上显著的协变量,并与orva-cel的扩增和/或持续性相关。

展开英文摘要原文

Orvacabtagene autoleucel (orva-cel; JCARH125), a chimeric antigen receptor T-cell therapy targeting B-cell maturation antigen, was evaluated in patients with relapsed/refractory multiple myeloma in the EVOLVE phase I/II study (NCT03430011). We applied a modified piecewise model to characterize orva-cel transgene kinetics and assessed the impact of various covariates on its pharmacokinetics (PK). EXPERIMENTAL DESIGN: The population PK analysis included 159 patients from the EVOLVE study. Traditional piecewise models, employing a first-order expansion rate with or without lag time followed by a biexponential contraction phase, were compared with a modified model incorporating a cell number-dependent expansion phase aligned with cellular physiology. Covariates assessed encompassed baseline demographics, dose levels (50-600 × 106 CD3+ chimeric antigen receptor+ T cells), prior/concomitant medications, baseline disease burden, and antitherapeutic antibody status.

Traditional piecewise models failed to accurately describe maximum orva-cel transgene level (Cmax) and underestimated the time to Cmax (Tmax). Our modified model incorporating a cell number-dependent expansion rate outperformed traditional models by (i) more accurately capturing the cellular expansion phase and (ii) yielding a Tmax that closely matches observed values. Additionally, dose level, percentage of plasma cells in bone marrow, and treatment-induced antitherapeutic antibody were identified as statistically significant covariates and associated with orva-cel expansion and/or persistence.

Orva-cel PK was adequately described by the modified piecewise model incorporating a cell number-dependent expansion phase, which aligns closely with T-cell biology.

论文信息

作者
Hu H、Li Y、Piasecki J、Hosseyni D、Yan Z、Liu X、Ogasawara K、Zhou S
单位
Translational Medicine and Clinical Pharmacology, Bristol Myers Squibb, Summit, New Jersey.United Kingdom
期刊
Clinical cancer research : an official journal of the American Association for Cancer Research2025 Mar 17
原文标识
PubMed 39836430 · DOI 10.1158/1078-0432.CCR-24-2753