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犬 B7-H3-CAR.CIK 淋巴细胞抗肉瘤的开发与活性:临床前证据及向人类临床转化的前景

英文原题:Development and activity of canine B7-H3-CAR.CIK lymphocytes against sarcomas: preclinical evidence and perspectives for human clinical translation.

PubMed 2025/09/13(内容时间) Cancer Immunol Immunother Q1 · IF 5.8(JCR 2025)

研究概要

我们成功制备了犬B7-H3-CAR.CIK,平均CAR表达率为39% ± 2,免疫表型与未转导(NTD)对照相比未发生改变(CD3 = 92% ± 3,CD8 = 87% ± 7;CD4 = 49% ± 5;CD5 = 77% ± 0.1;NKp46 = 83% ± 5)。

中文摘要

晚期肉瘤在肿瘤学中构成重大挑战,因为它们通常对常规疗法耐药且预后不良。基于CAR的细胞免疫治疗正成为一种非常有前景的治疗选择;然而,迫切需要临床相关的动物模型来加速这些方法的临床开发。B7-H3分子由于其在正常组织中低表达、在多种人类癌症中高表达,以及与癌症干性和侵袭性相关,是CAR免疫治疗最具吸引力的靶点之一。在本研究中,我们建立了一个临床前细胞免疫治疗平台,该平台基于犬细胞因子诱导的杀伤细胞(CIK),通过抗人B7-H3 CAR重定向,针对犬肉瘤细胞和3D肉瘤球体。在所有分析的犬肉瘤亚型中均一致检测到B7-H3,包括骨肉瘤、软组织肉瘤和血管肉瘤,尽管表达强度存在差异。我们成功生成了犬B7-H3-CAR.CIK,平均CAR表达率为39% ± 2,免疫表型与未转导(NTD)对照相比未改变(CD3 = 92% ± 3,CD8 = 87% ± 7;CD4 = 49% ± 5;CD5 = 77% ± 0.1;NKp46 = 83% ± 5)。与NTD.CIK相比,犬B7-H3-CAR.CIK能有效杀伤犬肉瘤细胞系,即使在低效靶比(E/T)下也是如此(B7-H3-CAR.CIK:45% vs 8%;E:T 1:1;48 h;N = 7,n = 8;p < 0.0001),并对3D肉瘤球体表现出显著的细胞毒性(58% vs 13%;E:T 2:1;48 h;N = 3,n = 4;p < 0.01)。我们的研究结果建立了一个临床相关且具有转化价值的平台,用于评估B7-H3-CAR.CIK疗法在患有不可治愈肉瘤的犬中的应用,为开发针对人类不可治愈肉瘤的新型CAR免疫疗法提供了桥梁。

展开英文摘要原文

Advanced-stage sarcomas pose a major challenge in oncology, as they are often resistant to conventional therapies and associated with poor prognosis. CAR-based cellular immunotherapy is emerging as a very promising therapeutic option; however, clinically relevant animal models are urgently needed to accelerate the clinical development of these approaches. B7-H3 molecule, due to its low expression in normal tissue, high prevalence in multiple human cancers, and association with cancer stemness and aggressiveness, represents one of the most attractive targets for CAR-immunotherapy. In this study, we established a preclinical cellular immunotherapy platform based on canine cytokine-induced killer cells (CIK) redirected by an antihuman B7-H3 CAR against canine sarcoma cells and 3D sarcoma spheroids. B7-H3 was consistently detected across all analyzed canine sarcoma subtypes, including osteosarcoma, soft tissue sarcoma, and hemangiosarcoma, although with variable levels of expression intensity. We successfully generated canine B7-H3-CAR.CIK, achieving a mean CAR expression of 39% ± 2 with an immune phenotype unmodified (NTD) control (CD3 = 92% ± 3, CD8 = 87% ± 7; CD4 = 49% ± 5; CD5 = 77% ± 0.1; NKp46 = 83% ± 5). Canine B7-H3-CAR.CIK efficiently killed canine sarcoma cell lines compared with NTD.CIK, even at low effector/target (E/T) ratios (B7-H3-CAR.CIK: 45% vs 8%; E:T 1:1; 48 h; N = 7, n = 8; p < 0.0001), and demonstrated significant cytotoxicity against 3D sarcoma spheroids (58% vs 13%; E:T 2:1; 48 h; N = 3, n = 4; p < 0.01). Our findings establish a clinically relevant and translationally valuable platform for evaluating B7-H3-CAR.CIK therapy in dogs with incurable sarcomas, providing a bridge toward the development of novel CAR-based immunotherapies for human incurable sarcomas.

论文信息

作者
De Maria R、Donini C、Capellero S、Massa A、Galvagno F、Proment A、Vitali L、Vigna E
单位
Department of Veterinary Sciences, Largo Braccini 2 Grugliasco, TO, Italy. raffaella.demaria@unito.it.Italy
期刊
Cancer immunology, immunotherapy : CII2025 Sep 13
原文标识
PubMed 40944715 · DOI 10.1007/s00262-025-04163-4