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:Applying population mechanistic modelling to find determinants of chimeric antigen receptor T-cells dynamics in month-one lymphoma patients.
Applying population mechanistic modelling to find determinants of chimeric antigen receptor T-cells dynamics in month-one lymphoma patients.
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本研究展示了如何利用模型将内源性 T 细胞、CAR-T 细胞及其表型联系起来,并可能有助于通过观察患者内源性 T 细胞的动态,判断某位患者是否对治疗反应不佳。
CAR-T 已用于治疗多种恶性肿瘤,包括非霍奇金淋巴瘤。患者应答程度由多种产品和患者特异性因素决定;确定哪些因素影响最大,需要分析临床数据。
研究者采用群体层面的常微分方程模型,拟合 TRANSCEND-NHL-001 研究(NCT02631044)的临床流式细胞术和肿瘤活检数据,分析淋巴清除、CAR-T 表型及其他因素对输注后 30 天 CAR-T 动态的影响。
研究量化了抗原依赖和非依赖性增殖来源对 CAR-T 动态的相对贡献,发现两者均有重大作用,且抗原非依赖性增殖与患者血液中 IL-15 和 IL-7 浓度高度相关。与淋巴清除和肿瘤负荷相比,CAR-T 中初始、记忆或效应细胞的比例对其动态影响有限。
本研究显示,可利用模型关联内源性 T 细胞、CAR-T 细胞及其表型;通过观察患者内源性 T 细胞动态,或可判断其是否对治疗应答不佳。该框架可用于其他 CAR-T 构建体和适应证,从群体层面检验产品改良或生物学假设。
Chimeric antigen receptor (CAR) T-cells have been utilized for the treatment of several malignancies, including Non-Hodgkin lymphomas. A myriad of product- and patient-specific factors determines the extent of patient response, and determining which are most impactful requires analysis of clinical data.
We used population-level ordinary differential equation models to fit clinical flow cytometry and tumour biopsy data from the TRANSCEND-NHL-001 (NCT02631044) study [1]. We analyzed the impact of lymphodepletion, CAR T-cell phenotypes, and other factors on CAR T-cell dynamics for 30 days after infusion.
We quantified the relative contribution of antigen-dependent and independent sources of proliferation on CAR T-cell dynamics, finding that both make a large contribution and that antigen-independent proliferation was highly correlated with patient IL-15 and IL-7 blood concentrations. The proportion of CAR T-cells in na ve, memory, or effector cells was found to have a limited impact on CAR T-cell dynamics, compared with lymphodepletion and tumour burden.
This study shows how models can be used to link endogenous T-cells, CAR T-cells, and their phenotypes, and may be useful for determining whether a given patient may be responding poorly to treatment, by observing the dynamics of their endogenous T-cells. The framework we developed can be utilized for other CAR T constructs and indications, to test product alterations or biological hypotheses at the population level.
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