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血脑屏障模型在靶向胶质母细胞瘤的 CAR-T 免疫治疗临床前评估中的应用

英文原题:Application of blood brain barrier models in pre-clinical assessment of glioblastoma-targeting CAR-T based immunotherapies.

查看英文原题

Application of blood brain barrier models in pre-clinical assessment of glioblastoma-targeting CAR-T based immunotherapies.

PubMed 2022/06/01(内容时间) Fluids Barriers CNS Q1 · IF 7.2(JCR 2025)

研究概要

源自诱导多能干细胞(iPSCs)的人血脑屏障(BBB)模型已成为中枢神经系统(CNS)靶向细胞与基因疗法发现及临床前评价的重要工具。

中文摘要

由诱导多能干细胞(iPSC)衍生的人血脑屏障(BBB)模型已成为发现和临床前评估中枢神经系统(CNS)靶向细胞及基因疗法的重要工具。嵌合抗原受体(CAR)T 细胞疗法是一种革命性的基因修饰细胞免疫疗法,有望靶向胶质母细胞瘤等实体瘤。CAR-T 全身给药治疗胶质母细胞瘤及其他 CNS 恶性肿瘤时,跨越 BBB 是重要步骤。此外,已知靶向非 CNS 抗原的 CAR-T(例如著名的 CD19-CAR-T)也可引发 CNS 副作用,包括因 BBB 破坏导致脑水肿。本研究采用 iPSC 衍生脑内皮样细胞(iBEC)Transwell 共培养模型,评估靶向过表达肿瘤特异性突变蛋白 EGFRvIII 的人胶质母细胞瘤 U87MG 细胞(U87vIII)的 CAR-T 免疫疗法穿越 BBB 的情况。研究者将具有不同基础性信号传导特征的两种抗 EGFRvIII CAR-T 细胞(CAR-F263 和 CAR-F269)及对照 Mock T 细胞置于体外 BBB 模型腔面侧。CAR-F263 和 CAR-F269 T 细胞均降低跨内皮电阻(TEER)并增加 BBB 通透性。研究者使用流式细胞术评估 CAR-T 细胞外渗,并使用 Incucyte 实时活性成像评估基底侧 U87vIII 细胞的细胞毒性。48 小时内 U87vIII 细胞活性显著下降;持续活化的 CAR-F263 诱导的细胞毒反应最强。CAR-F269 T 细胞显示相似细胞毒性特征,但尽管跨膜迁移率相近,其杀伤 U87vIII 细胞的效率约为 CAR-F263 的四分之一。研究者还通过 BBTB-on-CHIP 模型进一步可视化确认 CAR-T 细胞跨 BBB 外渗。所述 BBB 检测可区分不同 EGFRvIII-CAR 的细胞毒效力,并评估其对 BBB 完整性的潜在影响。总体而言,体外 BBB 模型可用于解析 CAR-T 诱发 BBB 破坏的机制、相关毒性以及其对屏障另一侧靶细胞的效应功能。

展开英文摘要原文

Human blood brain barrier (BBB) models derived from induced pluripotent stem cells (iPSCs) have become an important tool for the discovery and preclinical evaluation of central nervous system (CNS) targeting cell and gene-based therapies. Chimeric antigen receptor (CAR)-T cell therapy is a revolutionary form of gene-modified cell-based immunotherapy with potential for targeting solid tumors, such as glioblastomas. Crossing the BBB is an important step in the systemic application of CAR-T therapy for the treatment of glioblastomas and other CNS malignancies. In addition, even CAR-T therapies targeting non-CNS antigens, such as the well-known CD19-CAR-T therapies, are known to trigger CNS side-effects including brain swelling due to BBB disruption. In this study, we used iPSC-derived brain endothelial-like cell (iBEC) transwell co-culture model to assess BBB extravasation of CAR-T based immunotherapies targeting U87MG human glioblastoma (GBM) cells overexpressing the tumor-specific mutated protein EGFRvIII (U87vIII). Two types of anti-EGFRvIII targeting CAR-T cells, with varying tonic signaling profiles (CAR-F263 and CAR-F269), and control Mock T cells were applied on the luminal side of BBB model in vitro. CAR-F263 and CAR-F269 T cells triggered a decrease in transendothelial electrical resistance (TEER) and an increase in BBB permeability. CAR-T cell extravasation and U87vIII cytotoxicity were assessed from the abluminal compartment using flow cytometry and Incucyte real-time viability imaging, respectively. A significant decrease in U87vIII cell viability was observed over 48 h, with the most robust cytotoxicity response observed for the constitutively activated CAR-F263. CAR-F269 T cells showed a similar cytotoxic profile but were approximately four fold less efficient at killing the U87vIII cells compared to CAR-F263, despite similar transmigration rates. Visualization of CAR-T cell extravasation across the BBB was further confirmed using BBTB-on-CHIP models. The described BBB assay was able to discriminate the cytotoxic efficacies of different EGFRvIII-CARs and provide a measure of potential alterations to BBB integrity. Collectively, we illustrate how BBB models in vitro can be a valuable tool in deciphering the mechanisms of CAR-T-induced BBB disruption, accompanying toxicity and effector function on post-barrier target cells.

论文信息

作者
Huang J、Li YB、Charlebois C、Nguyen T、Liu Z、Bloemberg D、Zafer A、Baumann E
第一作者单位
Human Health Therapeutics Research Centre, National Research Council of Canada, Building M-54, Montreal Road, ON, K1A 0R6, Ottawa, Canada.Canada
通讯作者单位
Human Health Therapeutics Research Centre, National Research Council of Canada, Building M-54, Montreal Road, ON, K1A 0R6, Ottawa, Canada. anna.jezierski@nrc-cnrc.gc.ca.Canada
期刊
Fluids and barriers of the CNS2022 Jun 1
原文标识
PubMed 35650594 · DOI 10.1186/s12987-022-00342-y