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:A microphysiological assay for studying T-cell chemotaxis, trafficking and tumor killing.
A microphysiological assay for studying T-cell chemotaxis, trafficking and tumor killing.
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免疫治疗无应答患者的肿瘤中存在多种阻碍效应 T 细胞发挥作用的屏障。因此,通过治疗性调节趋化机制,使效应 T 细胞能够浸润肿瘤并发挥功能,可能改善治疗结局。复杂的体外模型可在体外重现体内肿瘤复杂性,使实验室研究更能转化至患者生物学。
我们发现,当前缺乏工业化规模的微生理系统(MPS)检测,可快速验证促进肿瘤微环境中 T 细胞趋化和效应功能的靶点与策略。
我们使用市售的 96 芯片双通道微流控检测系统,提出一种新型、可扩展的复杂体外 MPS 检测,用于研究天然、富含细胞外基质(ECM)的多细胞肿瘤环境中的 3D T 细胞趋化与功能。以远红色核染料标记的活化或初始 CD3+ T 细胞响应 Matrigel-胶原 ECM 中形成的趋化因子梯度,以依赖浓度和细胞类型的方式迁移至微流控通道(5 mm 横向观察范围)。
此外,我们观察并追踪了抗原特异性 CD4/CD8 嵌合抗原受体(CAR)T 细胞的趋化和癌细胞杀伤功能;这些细胞响应由含基质的癌细胞集落形成、跨越 5 mm 范围的 CXCR3 激动剂梯度。双通道检测系统可提供有用信息,揭示不同供者和剂量对 CAR-T 细胞趋化和肿瘤杀伤的影响。该可扩展检测系统能够细致观察内皮之外组织空间中的免疫细胞迁移和功能,弥补组织特异性免疫细胞趋化与功能研究的缺口,推动癌症免疫治疗发展。
Tumors in patients non-responsive to immunotherapy harbor a series of barriers that impede the efficacy of effector T-cells. Consequently, therapeutically modulating the chemotaxis machinery to enable effector T cell infiltration and function in the tumor could result in more successful therapeutic outcomes. Complex in-vitro models allow re-creation of in-vivo tumor complexities in an in-vitro setting, allowing improved translatability to patient biology at the laboratory scale.
We identified a gap in available industrial scale microphysiological (MPS) assays for faster validation of targets and strategies that enable T-cell chemotaxis and effector function within tumor microenvironments. Using a commercially available, 96-chip 2-lane microfluidic assay system, we present a novel, scalable, complex in vitro MPS assay to study 3D T-cell chemotaxis and function within native, extracellular matrix (ECM)-rich multicellular tumor environments.
Activated or na ve CD3+ T-cells stained with far-red nuclear stain responded to the chemokine gradients generated within the matrigel-collagen ECM by migrating into the microfluidic channel ( 5 mm horizontal window), in a concentration- and cell type-dependent manner.
Furthermore, we observed and tracked chemotaxis and cancer cell killing function of antigen-specific CD4. CD8. chimeric antigen receptor (CAR)-T cells that responded to CXCR3 agonist gradient built through the expansive 5 mm of cancer cell colony containing stroma. The 2-lane assay system yielded useful information regarding donor and dose-dependent differences in CAR-T cell chemotaxis and tumor killing.
The scalable assay system allows a granular window into immune cell migration and function in tissue spaces beyond endothelium, addressing a missing gap in studying tissue-specific immune cell chemotaxis and function to bring forward advancements in cancer immunotherapy.
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