下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Tumor-derived G-CSF induces an immunosuppressive microenvironment in an osteosarcoma model, reducing response to CAR.GD2 T-cells.
肉瘤是罕见的间充质肿瘤,约占所有儿童癌症的 10-15%。
肉瘤是一类罕见的间叶来源肿瘤,约占所有儿童癌症的10%–15%。由于GD2在多种实体瘤中过表达,适合作为嵌合抗原受体(CAR)T细胞治疗靶点。本项临床前研究考察iCasp9.2A.GD2.CAR-CD28.4-1BB(CAR.GD2)T细胞治疗GD2阳性肉瘤患者的潜力,并探究造成此类肿瘤免疫抑制微环境的因素。通过流式细胞术检测儿童肉瘤患者原发肿瘤活检中的GD2表达,并评估增强子Zeste同源物2(EZH2)抑制剂他泽司他处理后肉瘤细胞GD2表达的变化。在骨和软组织肉瘤原位和/或转移模型中,通过体外及体内临床前模型评估CAR.GD2 T细胞抗肿瘤活性。55%的原发肿瘤检测到GD2表达。其中,骨肉瘤和肺泡性横纹肌肉瘤亚型GD2表达最高,尤文肉瘤最低。CAR.GD2 T细胞在体外和体内均能显著控制GD2表达肿瘤。他泽司他可上调GD2表达,使GD2低表达的肉瘤细胞对CAR.GD2 T细胞细胞毒作用敏感。此外,在播散性横纹肌肉瘤和原位骨肉瘤小鼠模型中,与未转导T细胞相比,CAR.GD2 T细胞显示强效抗肿瘤作用和长期持久性。小鼠免疫抑制性髓源性抑制细胞(MDSC)显著降低输注CAR.GD2 T细胞的长期抗肿瘤活性。研究发现,肿瘤来源G-CSF是驱动免疫抑制性小鼠和人MDSC扩增的关键因素之一,从而间接限制CAR.GD2 T细胞疗效。临床前数据强烈提示CAR.GD2 T细胞可望治疗GD2阳性肉瘤。若要优化CAR.GD2 T细胞活性,需要制定克服免疫抑制性MDSC的策略。
Sarcomas are rare, mesenchymal tumors, representing about 10-15% of all childhood cancers. GD2 is a suitable target for chimeric antigen receptor (CAR) T-cell therapy due to its overexpression in several solid tumors. In this preclinical study, we investigated the potential use of iCasp9.2A.GD2.CAR-CD28.4-1BB (CAR.GD2) T-cells as a treatment option for patients who have GD2-positive sarcomas and we sought to identify factors shaping hostile tumor microenvironment in this setting. GD2 expression was evaluated by flow-cytometry on primary tumor biopsies of pediatric sarcoma patients. GD2 expression in sarcoma cells was also evaluated in response to an enhancer of zeste homolog 2 (EZH2) inhibitor (Tazemetostat). The antitumor activity of CAR.GD2 T-cells was evaluated both in vitro and in vivo preclinical models of orthotopic and/or metastatic soft-tissue and bone sarcomas. GD2 expression was detected in 55% of the primary tumors. Notably, the Osteosarcoma and Alveolar Rhabdomyosarcomas subtypes exhibited the highest GD2 expression levels, while Ewing sarcoma showed the lowest. CAR.GD2 T-cells show a significant tumor control both in vitro and in vivo models of GD2-expressing tumors. Pretreatment with an EZH2 inhibitor (Tazemetostat) upregulating GD2 expression, sensitizes GD2 dim sarcoma cells to CAR.GD2 T-cells cytotoxic activity. Moreover, in mouse models of disseminated Rhabdomyosarcomas and orthotopic Osteosarcoma, CAR.GD2 T-cells showed both a vigorous anti-tumor activity and long-term persistence as compared to un-transduced T-cells. The presence of immunosuppressive murine myeloid-derived suppressor (MDSC) cells significantly reduces long-term anti-tumour activity of infused CAR.GD2 T-cells. Tumor-derived G-CSF was found to be one of the key factors driving expansion of immunosuppressive murine and human MDSC, thus indirectly limiting the efficacy of CAR.GD2 T-cells. Our preclinical data strongly suggest that CAR.GD2 T-cells hold promise as a potential therapeutic option for the treatment of patients with GD2-positive sarcomas. Strategies to tackle hostile immunosuppressive MDSC are desirable to optimize CAR.GD2 T-cell activity.
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