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B7-H3 靶向 NK 细胞有效杀伤非典型畸胎样/横纹肌样肿瘤并延长原位异种移植模型生存期

英文原题:B7-H3-targeted natural killer cells effectively kill atypical teratoid / rhabdoid tumors and extend survival in orthotopic xenografts.

查看英文原题

B7-H3-targeted natural killer cells effectively kill atypical teratoid / rhabdoid tumors and extend survival in orthotopic xenografts.

PubMed 2026/01/16(内容时间) bioRxiv

研究概要

抗 B7-H3 CAR-NK 细胞在多种临床前体外和体内模型中,以抗原特异性方式有效杀伤 AT/RT。

中文摘要

**背景:**非典型畸胎样/横纹肌样肿瘤(AT/RT)是婴儿中最常见的中枢神经系统恶性肿瘤,患者生存率低且治疗相关并发症较多。此类肿瘤常过表达泛癌抗原B7-H3(CD276),可作为免疫治疗靶点。研究者假设,在NK细胞中加入靶向B7-H3的细胞毒性嵌合抗原受体(CAR),可增强其对AT/RT的杀伤。 **方法:**研究设计了不同亲和力的B7-H3靶向CAR,并将其转导至健康供者来源的原代NK细胞。研究在一组AT/RT细胞系中确认B7-H3表达,随后构建表达荧光素酶和核GFP的AT/RT细胞(CHLA-04、CHLA-06、BT12、BT37),并构建源自CHLA-06的B7-H3敲除细胞。通过体外共培养细胞毒实验评估CAR-NK功能;向AT/RT原位异种移植模型瘤内或脑室内(ICV)给予抗B7-H3 CAR-NK,并监测肿瘤生长和动物生存。 **结果:**与未改造NK细胞相比,靶向B7-H3的CAR-NK呈现靶点特异性细胞毒性。敲除靶细胞中的B7-H3可消除CAR介导的额外杀伤作用。在CHLA-06原位异种移植小鼠中,瘤内给予抗B7-H3 CAR-NK可清除肿瘤细胞并延长生存。针对BT12中枢神经系统播散模型脑室内给予CAR-NK后,治疗组小鼠生存显著改善。 **结论:**抗B7-H3 CAR-NK可在多种临床前体内外模型中以抗原特异方式有效杀伤AT/RT。具有转化相关性的模型中显示出的疗效,为高危AT/RT患者使用B7-H3靶向CAR-NK提供了依据。

展开英文摘要原文

BACKGROUND: Atypical teratoid/rhabdoid tumors (AT/RTs) are the most common malignant CNS tumor in infants, and patients suffer from low survival rates and treatment-related morbidities. These tumors frequently overexpress the pan-cancer antigen B7-H3 (CD276), which can be targeted with immunotherapy. We hypothesized that adding a B7-H3-targeting cytotoxic chimeric antigen receptor (CAR) to NK cells can enhance killing against AT/RTs. METHODS: We designed a library of variable affinity B7-H3-targeted CARs, which were transduced into primary healthy donor-derived NK cells. We verified B7-H3 expression in a panel of AT/RT cell lines and further engineered luciferase and nuclear GFP-expressing AT/RT (CHLA-04, CHLA-06, BT12, BT37) as well as a CHLA-06-derived B7-H3 knockout. We tested CAR-NK cell functionality using in vitro co-culture cytotoxicity assays. We delivered anti-B7-H3 CAR-NK cells intratumorally or intracerebroventricularly (ICV) to AT/RT orthotopic xenografts and monitored for tumor growth and animal survival. RESULTS: B7-H3-targeted CAR-NK cells demonstrated target-specific cytotoxicity when compared to unmodified NK cells. Knockout of B7-H3 in target cells abolished the increased CAR-mediated target killing. When delivered intratumorally to CHLA-06 orthotopic xenograft-bearing mice, anti-B7-H3 CAR-NK cells eliminated tumor cells and prolonged survival. When CAR-NK cells were delivered ICV against a CNS disseminated tumor model of BT12, treated mice had significantly improved survival. CONCLUSIONS: Anti-B7-H3 CAR-NK cells effectively kill AT/RTs in multiple pre-clinical in vitro and in vivo models in an antigen-specific manner. Evidence of efficacy in translationally relevant models provides support for using B7-H3-targeting CAR-NK cells in high-risk AT/RT patients.

论文信息

作者
Choe J、Chakravarti S、Holl NJ、Zinsky MT、Jones DG、Guchhait S、Rahnama R、Vorri SC
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2026 Jan 16
原文标识
PubMed 41648287 · DOI 10.64898/2026.01.15.699746