决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Orthotopic and Heterotopic Murine Models of Pancreatic Cancer Exhibit Different Immunological Microenvironments and Different Responses to Immunotherapy.
本研究描述了通过植入组织切片构建新型原位 PDAC 模型,并从 PDAC 微环境的角度探讨了免疫治疗耐药。
数十年来,利用肿瘤细胞系建立的荷瘤小鼠模型一直是研究人类癌症最常用的模型。虽然已有研究表明植入部位可导致肿瘤行为差异,但很少研究其对免疫治疗的影响。本文介绍一种新型原位植入同系胰腺导管腺癌(PDAC)组织切片的手术技术。该方法建模成功率高、生长动力学稳定,适用于新疗法测试。病理检查显示,原位肿瘤血管化差、存在硬化性基质反应且肿瘤微环境高度免疫抑制。这种独特环境使肿瘤对PD-1/CTLA-4阻断及抗MUC1 CAR-T转移治疗反应有限。为逆转抑制性TME,研究者开发基因改造T细胞,使其表达由活化受体NKG2D与4-1BB和CD3胞内结构域融合而成的嵌合受体(NKG2D CAR)。NKG2D CAR-T靶向TME内过表达Rae1(NKG2D配体)的髓系来源抑制细胞(MDSC)。结果显示,NKG2D CAR-T可清除MDSC并增强后续输注CAR-T的抗肿瘤活性。研究还构建由P2A元件分隔的双顺反子CAR-T,同时表达MUC1 CAR和NKG2D CAR。该双靶点CAR-T治疗也延长原位模型小鼠生存。总之,本研究通过组织切片植入建立新型原位PDAC模型,并从PDAC微环境角度探讨免疫治疗耐药。结果表明,NKG2D CAR清除MDSC可恢复受损CAR-T活性。
For decades, tumor-bearing murine models established using tumor cell lines have been the most commonly used models to study human cancers. Even though there are several studies reported that implant sites caused disparities in tumor behaviors, few of them illuminated the positional effect on immunotherapy. Herein, we describe surgical techniques for a novel orthotopic implantation of syngeneic pancreatic ductal adenocarcinoma (PDAC) tissue slices. This method has a high success modeling rate and stable growth kinetics, which makes it useful for testing novel therapeutics. Pathological examination indicated that the orthotopic tumor displayed poor vascularization, desmoplastic stromal reaction, and a highly immunosuppressive tumor microenvironment. This unique microenvironment resulted in limited response to PD1/CTLA4 blockade therapy and anti-MUC1 ( MUC1) CAR-T transfer treatment. To reverse the suppressive tumor microenvironment, we developed gene modified T-cells bearing a chimeric receptor in which activating receptor NKG2D fused to intracellular domains of 4-1BB and CD3 (NKG2D CAR). The NKG2D CAR-T cells target myeloid-derived suppressor cells (MDSCs), which overexpress Rae1 (NKG2D ligands) within the TME. Results indicated that NKG2D CAR-T cells eliminated MDSCs and improved antitumor activity of subsequently infused CAR-T cells. Moreover, we generated a bicistronic CAR-T, including MUC1 CAR and NKG2D CAR separated by a P2A element. Treatment with the dual targeted bicistronic CAR-T cells also resulted in prolonged survival of orthotopic model mice. In summary, this study describes construction of a novel orthotopic PDAC model through implantation of tissue slices and discusses resistance to immunotherapy from the perspective of a PDAC microenvironment. Based on the obtained results, it is evident that elimination MDSCs by NKG2D CAR could rescue the impaired CAR-T cell activity.
MEMBER ACCOUNT
登录成功会直接打开下一页。