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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Spatiotemporal dynamics of tumor-CAR T-cell interaction following local administration in solid cancers.
Spatiotemporal dynamics of tumor-CAR T-cell interaction following local administration in solid cancers.
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嵌合抗原受体(CAR)T细胞疗法成功治疗血液系统恶性肿瘤后,如何将这项技术拓展至实体瘤受到广泛关注。然而,肿瘤浸润、免疫抑制性肿瘤微环境及肿瘤异质性等问题限制了其在实体瘤中的疗效。近期临床前和临床研究提出直接向肿瘤内或肿瘤部位局部给药,以增加CAR-T 细胞浸润并改善治疗结局。目前尚不清楚哪些实体瘤最适合这一治疗方式。
本研究构建了用于实体瘤CAR-T 治疗的简化时空模型,并通过数值模拟比较瘤内注射与腔内给药在多种癌症中的效果。我们证实,该模型可重现小鼠局部给予CAR-T 细胞的影像学小型研究所获得的肿瘤和CAR-T 细胞数据。结果提示,局部给药的CAR-T 细胞最有望有效治疗增殖缓慢且扩散性强的肿瘤。在模拟中,假设治疗时可检测肿瘤直径相同,肿瘤细胞平均密度较低比肿瘤总负荷或体积倍增时间更能预测治疗成功。这些结果支持临床观察,即CAR-T 细胞对不同类型实体瘤的疗效并不相同;测量肿瘤密度可能有助于评估CAR-T 疗法可行性,并为特定患者制定剂量方案。
此外我们发现,只要初始CAR-T 细胞剂量中耗竭细胞比例不高,局部递送即可产生深度肿瘤应答。
The success of chimeric antigen receptor (CAR) T-cell therapy in treating hematologic malignancies has generated widespread interest in translating this technology to solid cancers.
However, issues like tumor infiltration, the immunosuppressive tumor microenvironment, and tumor heterogeneity limit its efficacy in the solid tumor setting. Recent experimental and clinical studies propose local administration directly into the tumor or at the tumor site to increase CAR T-cell infiltration and improve treatment outcomes.
Characteristics of the types of solid tumors that may be the most receptive to this treatment approach remain unclear. In this work, we develop a simplified spatiotemporal model for CAR T-cell treatment of solid tumors, and use numerical simulations to compare the effect of introducing CAR T cells via intratumoral injection versus intracavitary administration in diverse cancer types.
We demonstrate that the model can reproduce tumor and CAR T-cell data from small imaging studies of local administration of CAR T cells in mouse models.
Our results suggest that locally administered CAR T cells will be most successful against slowly proliferating, highly diffusive tumors. In our simulations, assuming equal detectable tumor diameters at the time of treatment, low average tumor cell density is a better predictor of treatment success than total tumor burden or volume doubling time.
These findings affirm the clinical observation that CAR T cells will not perform equally across different types of solid tumors, and suggest that measuring tumor density may be helpful when considering the feasibility of CAR T-cell therapy and planning dosages for a particular patient.
We additionally find that local delivery of CAR T cells can result in deep tumor responses, provided that the initial CAR T-cell dose does not contain a significant fraction of exhausted cells.
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