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:TBK1 Targeting Is Identified as a Therapeutic Strategy to Enhance CAR T-Cell Efficacy Using Patient-Derived Organotypic Tumor Spheroids.
TBK1 Targeting Is Identified as a Therapeutic Strategy to Enhance CAR T-Cell Efficacy Using Patient-Derived Organotypic Tumor Spheroids.
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需要新的治疗策略来提高嵌合抗原受体(CAR)T细胞治疗实体瘤的疗效。多种肿瘤微环境因素被认为导致实体瘤对CAR-T 细胞治疗的耐药,而使用临床相关生物标本来识别和检查这些因素的合适模型系统有限。
在本研究中,我们使用患者来源的器官型肿瘤球(PDOTS)的3D微流控培养来检测B7-H3靶向CAR-T 细胞(B7-H3.CAR-T)的活性,随后在PDOTS中确认了B7-H3.CAR-T 细胞的活性。尽管PDOTS中B7-H3的表达与B7-H3.CAR-T 敏感性相关,但机制研究揭示,CAR-T 细胞在遇到靶细胞后共抑制受体动态上调,导致CAR-T 细胞功能障碍,并对表达B7-H3的肿瘤疗效有限。PD-1阻断恢复了单型和器官型肿瘤球中CAR-T 细胞的活性,改善了肿瘤控制并上调了效应细胞因子。鉴于TANK结合激酶1(TBK1)作为免疫逃逸基因的新兴作用,我们检测了TBK1抑制对CAR-T 细胞疗效的影响。与PD-1阻断类似,TBK1抑制恢复了单型和器官型肿瘤球中CAR-T 细胞的活性,防止了CAR-T 细胞功能障碍,并增强了CAR-T 细胞增殖。TBK1的抑制或缺失也增强了癌细胞对免疫介导杀伤的敏感性。
综上所述,我们的结果证明了使用PDOTS对CAR-T 细胞进行离体分析的可行性和实用性,并表明靶向TBK1可通过克服肿瘤内在和外在耐药机制来增强CAR-T 细胞疗效。
Novel therapeutic strategies are needed to improve the efficacy of chimeric antigen receptor (CAR) T cells as a treatment of solid tumors. Multiple tumor microenvironmental factors are thought to contribute to resistance to CAR T-cell therapy in solid tumors, and appropriate model systems to identify and examine these factors using clinically relevant biospecimens are limited. In this study, we examined the activity of B7-H3-directed CAR T cells (B7-H3. CAR-T) using 3D microfluidic cultures of patient-derived organotypic tumor spheroids (PDOTS) and then confirmed the activity of B7-H3. CAR T cells in PDOTS. Although B7-H3 expression in PDOTS was associated with B7-H3. CAR-T sensitivity, mechanistic studies revealed dynamic upregulation of co-inhibitory receptors on CAR T-cells following target cell encounter that led to CAR T-cell dysfunction and limited efficacy against B7-H3-expressing tumors.
PD-1 blockade restored CAR T-cell activity in monotypic and organotypic tumor spheroids with improved tumor control and upregulation of effector cytokines. Given the emerging role of TANK-binding kinase 1 (TBK1) as an immune evasion gene, we examined the effect of TBK1 inhibition on CAR T-cell efficacy. Similar to PD-1 blockade, TBK1 inhibition restored CAR T-cell activity in monotypic and organotypic tumor spheroids, prevented CAR T-cell dysfunction, and enhanced CAR T-cell proliferation.
Inhibition or deletion of TBK1 also enhanced the sensitivity of cancer cells to immune-mediated killing. Taken together, our results demonstrate the feasibility and utility of ex vivo profiling of CAR T cells using PDOTS and suggest that targeting TBK1 could be used to enhance CAR T-cell efficacy by overcoming tumor-intrinsic and -extrinsic resistance mechanisms.
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