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含 CD28、CD137 和 CD27 共刺激域的下一代 B7-H3 CAR-T 细胞在多发性骨髓瘤中增强的抗肿瘤疗效

英文原题:Enhanced antitumor efficacy of next-generation B7-H3 chimeric antigen receptor T cells containing CD28, CD137 and CD27 costimulatory domains in multiple myeloma.

查看英文原题

Enhanced antitumor efficacy of next-generation B7-H3 chimeric antigen receptor T cells containing CD28, CD137 and CD27 costimulatory domains in multiple myeloma.

PubMed 2025/11/26(内容时间) Cytotherapy Q1 · IF 4.5(JCR 2025)

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研究概要

B7-H3 特异性 CAR-T 细胞对 MM 表现出强效抗肿瘤活性,其中下一代构建体(B7H3.CAR-NG)显示出更优的细胞毒性、持久性和细胞因子产生能力。

中文摘要

尽管治疗策略取得重大进展,多发性骨髓瘤(MM)仍无法治愈。靶向B细胞成熟抗原的嵌合抗原受体(CAR)T细胞疗法已显示临床前景,但疗效常因疾病复发而受限,部分原因是CAR-T 细胞耗竭。B7同源物3(B7-H3)是一种在MM中过表达、可能抑制T细胞功能的免疫检查点分子,因此或可作为改善CAR-T 疗效和加强疾病控制的替代靶点。

我们设计并表征了三代B7-H3特异性CAR-T 细胞:第二代(B7H3.CAR2)、第三代(B7H3.CAR3)和新一代(B7H3.CAR-NG),各自包含不同的共刺激结构域。B7H3.CAR2含CD28共刺激结构域;B7H3.CAR3结合CD28和CD137;B7H3.CAR-NG则同时纳入CD28、CD137和CD27共刺激模块。我们使用B7-H3表达水平不同的MM细胞系,在体外评估其表达与功能,并通过短期和长期共培养检测CAR-T 细胞表型、细胞毒活性、持久性和细胞因子分泌。

不同MM细胞系的B7-H3表达水平不一,MM.1S最高,NCI-H929最低。三种B7-H3特异性CAR-T 细胞均成功制备,CAR表达率分别为31.27±8.63%、29.90±8.86%和37.27±8.69%。三种CAR-T 细胞均能以抗原密度依赖方式选择性裂解B7-H3阳性的MM.1S细胞,同时不攻击B7-H3阴性的SupT1细胞。其中,B7H3.CAR-NG T细胞的细胞毒性最高,在1:1效靶比下裂解53.22±9.28%的MM.1S细胞,而对SupT1细胞的裂解率为11.66±1.62%。长期共培养中,CAR-NG T细胞表现出更强的肿瘤控制能力和持久性,可能与中央记忆T细胞比例较高有关。细胞因子分析显示CAR-NG T细胞分泌的效应分子更多,提示其抗肿瘤功能增强。

B7-H3特异性CAR-T 细胞对MM具有强效抗肿瘤活性,其中新一代构建体B7H3.CAR-NG的细胞毒性、持久性和细胞因子生成表现更优。这些发现支持将B7H3.CAR-NG T细胞作为治疗MM的一种有前景策略。

展开英文摘要原文

Multiple myeloma (MM) remains an incurable disease despite significant advancements in treatment strategies. Chimeric antigen receptor (CAR) T cell therapies targeting B-cell maturation antigen have demonstrated clinical promise; however, their effectiveness is often limited by disease relapse, partly due to CAR T cell exhaustion. B7-homolog 3 (B7-H3), an immune checkpoint molecule that is overexpressed in MM and may suppress T cell function, represents a potential alternative target to improve CAR T cell efficacy and enhance disease control.

We engineered and characterized three generations of B7-H3-specific CAR T cells, second (B7H3.CAR2), third (B7H3.CAR3) and next-generation (B7H3.CAR-NG), each incorporating distinct costimulatory domains. B7H3.CAR2 contains the CD28 costimulatory domain, B7H3.CAR3 combines CD28 and CD137, and B7H3.CAR-NG incorporates CD28, CD137, and CD27 costimulatory modules. Their expression and function were evaluated in vitro using MM cell lines with differential B7-H3 expression. CAR T cell phenotype, cytotoxic activity, persistence and cytokine secretion were assessed through both short- and long-term coculture assays.

B7-H3 expression levels varied across MM cell lines, with MM.1S exhibiting the highest and NCI-H929 the lowest expression. Second-, third- and next-generation B7-H3-specific CAR T cells (B7H3.CAR2, B7H3.CAR3, and B7H3.CAR-NG) were successfully generated, with CAR expression rates of 31.27 8.63%, 29.90 8.86% and 37.27 8.69%, respectively. All three CAR T cell types selectively lysed B7-H3-positive MM.1S cells in an antigen density-dependent manner while sparing B7-H3-negative SupT1 cells. Among them, B7H3.CAR-NG T cells showed the highest cytotoxicity, lysing 53.22 9.28% of MM.1S cells at a 1:1 effector-to-target ratio, compared to 11.66 1.62% of SupT1 cells. In long-term cocultures, CAR-NG T cells demonstrated superior tumor control and persistence, likely due to a higher frequency of central memory T cells. Cytokine analysis revealed elevated secretion of effector molecules by CAR-NG T cells, indicating enhanced antitumor functionality.

B7-H3-specific CAR T cells exhibit potent antitumor activity against MM, with the next-generation construct (B7H3.CAR-NG) demonstrating superior cytotoxicity, persistence and cytokine production. These findings support the potential of B7H3.CAR-NG T cells as a promising therapeutic strategy for MM.

论文信息

作者
Natungnuy K、Luangwattananun P、Supimon K、Yuti P、Rujirachaivej P、Sujjitjoon J、Junking M、Okada S
第一作者单位
Siriraj Center of Research Excellence for Cancer Immunotherapy (SiCORE-CIT) and Division of Molecular Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.Thailand
通讯作者单位
Siriraj Center of Research Excellence for Cancer Immunotherapy (SiCORE-CIT) and Division of Molecular Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand. Electronic address: pathai.yen@mahidol.ac.th.Thailand
期刊
Cytotherapy2026 Mar
原文标识
PubMed 41539232 · DOI 10.1016/j.jcyt.2025.102014