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RASA2 缺失挽救免疫突触功能障碍,增强 CAR T 细胞对 DMGs 的疗效

英文原题:RASA2 deletion rescues immune synapse dysfunction, enhancing CAR T cell efficacy against DMGs.

PubMed 2026/03/30(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

研究概要

我们的研究强调了理解限制CAR T细胞反应的肿瘤特异性因素,并利用这些信息设计更优越的下一代CAR T细胞的重要性。具体而言,我们确定了细胞骨架重塑和T细胞运动性作为未来工程方法的治疗可操作靶点。

研究思路结论见上方概要

嵌合抗原受体(CAR)T细胞疗法已显示出对弥漫性中线胶质瘤(DMG)——一种高度侵袭性的儿童脑肿瘤——的安全性和适度疗效。然而,DMG环境中CAR T细胞耐药的机制仍不清楚。

我们比较了B7-H3 CAR T细胞在SJ-DIPGX7c(DMG)和U87-MG(成人胶质母细胞瘤)患者来源细胞系中的疗效,并显示在体外和体内疗效均受损。我们进行了活细胞成像和单细胞RNA测序,以研究CAR T细胞与DMG之间免疫突触(IS)形成的缺陷。最后,我们通过基因编辑敲除了RASA2——T细胞活化的负调控因子,并评估了其对IS形成和质量以及体外和体内功能的影响。

我们表明,B7-H3 CAR T细胞疗效有限是由于DMG介导的CAR T细胞与DMG细胞之间低效的相互作用。具体而言,DMG细胞损害了IS形成,导致CAR T细胞活化不良、细胞因子分泌减少以及体内抗肿瘤反应有限。RASA2缺失通过形成功能更强的IS改善了CAR T细胞活化。RASA2缺失的CAR T细胞表现出增强的钙流、突触处活化信号分子和裂解颗粒的积累增加以及肌动蛋白细胞骨架动力学增强,从而产生更大的突触面积并在离体实验中增强迁移。此外,与对照相比,RASA2缺失的CAR T细胞表现出改善的体外功能和对DMG更优的早期体内抗肿瘤反应。

展开英文摘要原文

BACKGROUND: Chimeric antigen receptor (CAR) T-cell therapy has demonstrated safety and modest efficacy against diffuse midline gliomas (DMGs), a highly aggressive pediatric brain tumor. However, mechanisms of CAR T-cell resistance in DMG settings remain unknown. METHODS: We compared the efficacy of B7-H3 CAR T-cells between SJ-DIPGX7c (DMG) and U87-MG (adult glioblastoma) patient-derived cell lines and showed impaired efficacy both in vitro and in vivo. We performed live-cell imaging and single-cell RNA sequencing to investigate deficiencies in immune synapse (IS) formation between CAR T-cells and DMGs. Lastly, we genetically deleted RASA2 , a negative regulator of T cell activation, and evaluated the resulting impact on IS formation and quality, as well as in vitro and in vivo functionality. RESULTS: We show that limited efficacy of B7-H3 CAR T-cells is due to DMG-mediated inefficient interaction between CAR T-cells and DMG cells. Specifically, DMG cells impair the IS formation, resulting in poor CAR T-cell activation, cytokine secretion, and limited anti-tumor response in vivo. RASA2 deletion improved CAR T-cell activation through the formation of a more functional IS. RASA2-deleted CAR T-cells exhibited enhanced calcium flux, increased accumulation of activated signaling molecules and lytic granules at the synapse, and increased actin cytoskeleton dynamics, which produced larger synaptic areas and resulted in enhanced migration ex vivo. Further, RASA2-deleted CAR T-cells demonstrated improved in vitro functionality and superior early in vivo anti-tumor responses against DMGs compared with controls. CONCLUSIONS: Our study highlights the importance of understanding tumor-specific factors that limit CAR T-cell response and using this information to design superior next-generation CAR T-cells. Specifically, we identify cytoskeleton remodeling and T cell motility as therapeutically actionable targets for future engineering approaches.

论文信息

作者
Ibanez-Vega J、Teis R、Ocasio JK、Chockley P、Ansari A、Allo Anido A、Mehta S、Meehl M
第一作者单位
Bone Marrow Transplantation and Cellular Therapy, St Jude Children's Research Hospital, Memphis, Tennessee, USA.United States
通讯作者单位
Bone Marrow Transplantation and Cellular Therapy, St Jude Children's Research Hospital, Memphis, Tennessee, USA Giedre.Krenciute@STJUDE.ORG.United States
期刊
Journal for immunotherapy of cancer2026 Mar 30
原文标识
PubMed 41912267 · DOI 10.1136/jitc-2025-013134