PO.IM01.06 · 免疫学
在PBMC人源化SDKO小鼠中对自体抗BCMA CAR-T疗法的体内评估揭示供者特异性免疫反应
In vivo evaluation of autologous anti-BCMA CAR-T therapy in PBMC-humanized SDKO mice reveals donor-specific immune responses
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:靶向B细胞成熟抗原(BCMA)的自体CAR-T疗法在治疗多发性骨髓瘤(MM)中已显示出显著的临床成功。然而,准确预测患者特异性疗效及不良事件——如细胞因子释放综合征(CRS)、免疫效应细胞相关神经毒性综合征(ICANS)以及免疫效应细胞相关噬血细胞性淋巴组织细胞增多症样综合征(IEC-HS)——仍是一个重大且持续存在的挑战。为满足CAR-T免疫疗法个体化筛查的需求,我们开发并测试了一种使用NSG-SGM3-IL15-DKO(SDKO)品系的新型人源化小鼠模型,该品系针对PBMC植入进行了优化。该模型是一种新的潜在临床前工具,用于在体内评估个体化CAR-T的疗效和毒性。
方法:我们在已建立的BCMA+肿瘤背景下,使用五名人PBMC供者对自体抗BCMA CAR-T疗法进行了体内评估。为此,向SDKO小鼠静脉注射1×10⁶个MM.1S-luc细胞(一种多发性骨髓瘤模型细胞系)。肿瘤注射后第10天,根据肿瘤负荷对小鼠进行随机分组并注射3×10⁶个PBMC。四小时后,小鼠接受PBS、5×10⁶个自体未转导T细胞(UT)或5×10⁶个自体抗BCMA CAR-T细胞。在28天内监测肿瘤负荷和体重。在SD1、SD2、SD5、SD15、SD21和SD28采集血样以评估人细胞植入和血浆细胞因子水平,并取组织进行组织病理学检查。
结果:自体CAR-T细胞诱导了快速而强效的肿瘤消退且毒性低,而UT细胞在所有供者中均未能控制MM.1S-luc肿瘤,其肿瘤进展甚至比PBS组中观察到的更为严重。然而,观察到供者依赖性变异:供者0935和1295显示CAR-T扩增减少,且0935未能实现完全肿瘤清除。大多数CAR-T治疗的小鼠出现了短暂的肿瘤复现,供者5263除外,其肿瘤被快速且永久性清除。相比之下,在PBMC和UT组中肿瘤转移至骨髓。细胞因子分析揭示了供者依赖性(IL-9、IL-12p70、IL-12p40)和供者非依赖性(IL-2、IL-4、IL-5、IFNgamma、TNFalpha、IL-13)的分泌模式。值得注意的是,IL-10表现出独特的动态:在SD1有一个适度的峰值,随后出现CAR-T依赖性下降,而PBS和UT组在SD5显示出非常高的IL-10水平,提示其与失控的肿瘤负荷和免疫失调相关。
结论:我们的结果表明,SDKO PBMC人源化小鼠模型有潜力成为临床前CAR-T测试的宝贵工具,能够实现患者特异性的疗效和安全性评估,并为临床上更安全的CAR-T细胞铺平道路。
查看英文原文 English abstract
Introduction: Autologous CAR-T therapies targeting B-cell maturation antigen (BCMA) have shown remarkable clinical success in treating multiple myeloma (MM). However, accurate prediction of patient-specific efficacy and adverse events - such as cytokine release syndrome (CRS), immune effector cell-associated neurotoxicity syndrome (ICANS) and Immune effector cell associated hemophagocytic lymphohistiocytosis-like syndrome (IEC-HS) - remains a significant and ongoing challenge. To address the need for personalized screening of CAR-T immunotherapies, we developed and tested a novel humanized mouse model using the NSG-SGM3-IL15-DKO (SDKO) strain, optimized for PBMC engraftment. This model is a new potential preclinical tool to assess individualized CAR-T efficacy and toxicity in vivo .
Methods: We evaluated autologous anti-BCMA CAR-T therapy in vivo using five human PBMC donors in the context of an established BCMA + tumor. For this, SDKO mice were injected intravenously with 1×10⁶ MM.1S-luc cells, a model cell line for multiple myeloma. Ten days post-tumor injection, mice were randomized based on their tumor burden and injected with 3×10⁶ PBMCs. Four hours later, mice received either PBS, 5×10⁶ autologous untransduced T cells (UT), or 5×10⁶ autologous anti-BCMA CAR-T cells. Tumor burden and body weight were monitored over 28 days. Blood samples were collected at SD1, SD2, SD5, SD15, SD21 and SD28 to assess human cell engraftment and plasma cytokine levels and tissues retrieved for histopathology.
Results: Autologous CAR-T cells induced rapid and potent tumor regression with low toxicity, whereas UT cells failed to control MM.1S-luc tumors across all donors, with tumor progression even more severe than that observed in the PBS group. However, donor-dependent variability was observed: Donors 0935 and 1295 showed reduced CAR-T expansion, and 0935 failed to achieve complete tumor clearance. Transient tumor resurgence occurred in most CAR-T treated mice, except Donor 5263, where tumors were rapidly and permanently eliminated. In contrast, tumors metastasized to bone marrow in PBMC and UT groups. Cytokine profiling revealed both donor-dependent (IL-9, IL-12p70, IL-12p40) and donor-independent (IL-2, IL-4, IL-5, IFNgamma, TNFalpha, IL-13) secretion patterns. Notably, IL-10 exhibited a unique dynamic: a modest spike at SD1 followed by a CAR-T-dependent decline, while PBS and UT groups showed very high IL-10 levels at SD5, suggesting a link to uncontrolled tumor burden and immune dysregulation.
Conclusion: Our results demonstrate that the SDKO PBMC humanized mouse model has the potential to be a valuable tool for preclinical CAR-T testing, enabling patient-specific evaluation of efficacy and safety, and paving the way for safer CAR‑T cells in the clinic.
利益披露 Disclosure
A. Matas-Céspedes,
AstraZeneca Employment.
J. Yang, None.
K. Prajapati,
AstraZeneca Employment.
D. Rose, None..
O. Pham, None.
M. Lehmann,
AstraZeneca Employment.
T. McKevitt,
AstraZeneca Employment.
G. Cornish,
AstraZeneca Employment.
R. Stebbings,
AstraZeneca Employment.
J. G. Keck, None..
I. Radichev, None.