靶向巨噬细胞的癌症治疗策略
Macrophage-directed therapeutic strategies in cancer.
肿瘤相关巨噬细胞(TAMs)是肿瘤微环境的主要组成部分,具有显著的功能可塑性,根据所处的微环境信号,既可表现为促进肿瘤进展的免疫抑制细胞,也可表现为支持抗肿瘤免疫的免疫刺激细胞。
英文原题:Bispecific antibodies redirect synthetic agonistic receptor modified T cells against melanoma.
SAR T细胞-BiAb方法在黑色素瘤模型中实现了特异性和条件性T细胞激活以及靶向肿瘤细胞裂解。模块化是靶向黑色素瘤的一个关键特征,也是实现涵盖癌症异质性的个性化免疫疗法的基础。由于原发黑色素瘤组织中的抗原表达可能不同,我们提出,同时或序贯靶向两种肿瘤相关抗原的双重方法可以避免抗原异质性问题,并为患者带来治疗获益。
黑色素瘤是一种免疫敏感性肿瘤,免疫检查点阻断(ICB)的活性已证明了这一点,但许多患者要么无应答,要么复发。最近,TIL(肿瘤浸润淋巴细胞)疗法在ICB失败后的黑色素瘤治疗中显示出有前景的疗效,表明细胞疗法的潜力。然而,TIL治疗存在生产限制、产品异质性以及毒性问题,这是由于输注了大量表型多样的T细胞。为克服上述局限性,我们提出一种受控的过继细胞疗法,其中T细胞装备合成激动性受体(SAR),这些受体由靶向SAR和黑色素瘤相关抗原的双特异性抗体(BiAb)选择性激活。
已生成人源和鼠源SAR构建体,并将其转导入原代T细胞。该方法在表达黑色素瘤相关靶抗原酪氨酸酶相关蛋白1(TYRP1)和黑色素瘤相关硫酸软骨素蛋白聚糖(MCSP)(CSPG4)的鼠源、人源及患者来源的癌症模型中得到了验证。通过评估SAR T细胞在体外和体内的特异性刺激和增殖,以及其针对肿瘤的细胞毒性,对其进行了功能表征。
MCSP 和 TYRP1 表达在接受治疗和未接受治疗的黑色素瘤患者样本中均保持稳定,支持其作为黑色素瘤靶抗原的应用。在所有测试模型中,靶细胞的存在以及 anti-TYRP1 anti-SAR 或 anti-MCSP anti-SAR BiAb 诱导了条件性抗原依赖性激活、SAR T 细胞增殖和靶向肿瘤细胞裂解。在体内,在同系肿瘤模型中,SAR T 细胞与 BiAb 联合给药介导了抗肿瘤活性和长期生存,并在多个异种移植模型中进一步得到验证,包括患者来源的异种移植模型。
BACKGROUND: Melanoma is an immune sensitive disease, as demonstrated by the activity of immune check point blockade (ICB), but many patients will either not respond or relapse. More recently, tumor infiltrating lymphocyte (TIL) therapy has shown promising efficacy in melanoma treatment after ICB failure, indicating the potential of cellular therapies. However, TIL treatment comes with manufacturing limitations, product heterogeneity, as well as toxicity problems, due to the transfer of a large number of phenotypically diverse T cells. To overcome said limitations, we propose a controlled adoptive cell therapy approach, where T cells are armed with synthetic agonistic receptors (SAR) that are selectively activated by bispecific antibodies (BiAb) targeting SAR and melanoma-associated antigens. METHODS: Human as well as murine SAR constructs were generated and transduced into primary T cells. The approach was validated in murine, human and patient-derived cancer models expressing the melanoma-associated target antigens tyrosinase-related protein 1 (TYRP1) and melanoma-associated chondroitin sulfate proteoglycan (MCSP) (CSPG4). SAR T cells were functionally characterized by assessing their specific stimulation and proliferation, as well as their tumor-directed cytotoxicity, in vitro and in vivo. RESULTS: MCSP and TYRP1 expression was conserved in samples of patients with treated as well as untreated melanoma, supporting their use as melanoma-target antigens. The presence of target cells and anti-TYRP1 anti-SAR or anti-MCSP anti-SAR BiAb induced conditional antigen-dependent activation, proliferation of SAR T cells and targeted tumor cell lysis in all tested models. In vivo, antitumoral activity and long-term survival was mediated by the co-administration of SAR T cells and BiAb in a syngeneic tumor model and was further validated in several xenograft models, including a patient-derived xenograft model. CONCLUSION: The SAR T cell-BiAb approach delivers specific and conditional T cell activation as well as targeted tumor cell lysis in melanoma models. Modularity is a key feature for targeting melanoma and is fundamental towards personalized immunotherapies encompassing cancer heterogeneity. Because antigen expression may vary in primary melanoma tissues, we propose that a dual approach targeting two tumor-associated antigens, either simultaneously or sequentially, could avoid issues of antigen heterogeneity and deliver therapeutic benefit to patients.
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