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:Genetically engineered mouse model of pleomorphic liposarcoma: Immunophenotyping and histologic characterization.
基因工程RPP小鼠可靠地产生了与多形性脂肪肉瘤一致的软组织肿瘤,其免疫学发现与其他软组织肉瘤相似。该模型可能在测试这种罕见疾病的治疗方法方面显示出实用性,包括免疫调节疗法。
多形性脂肪肉瘤是一种罕见且侵袭性强的软组织肉瘤亚型,死亡率高。局部治疗主要包括放射治疗和广泛手术切除,但转移性疾病情况下的全身治疗选择有限且大多无效,促使人们探索新的治疗策略和实验模型。与其他癌症一样,肉瘤细胞系和患者来源异种移植模型已被开发并用于表征这些肿瘤和识别治疗靶点,但这些模型具有固有的局限性。基因工程小鼠模型的建立代表了一个更真实的框架,用于再现临床相关条件以研究多形性脂肪肉瘤。
Trp53 fl/fl /Rb1 fl/fl /Pten fl/fl (RPP) 小鼠用于通过 Cre 介导的条件性沉默 Trp53、Rb1 和 Pten 抑癌基因,可靠地生成具有免疫能力的小鼠多形性脂肪肉瘤模型。通过 CD4、CD8 和 PD-L1 的免疫染色,以及分析 CD45、CD3、CD4、CD8、CD19、F4/80、CD11b 和 NKp46 亚群的流式细胞术,评估了TIL(肿瘤浸润淋巴细胞)。
小鼠在约6周时可靠地产生明显的软组织肿瘤,在出生后100至150天之间肿瘤快速生长,此后小鼠达到安乐死标准。组织学特征与多形性脂肪肉瘤一致,包括广泛的多形性脂肪母细胞。免疫谱分析和TIL(肿瘤浸润淋巴细胞)评估与其他软组织肉瘤一致。
INTRODUCTION: Pleomorphic liposarcoma is a rare and aggressive subset of soft-tissue sarcomas with a high mortality burden. Local treatment largely consists of radiation therapy and wide surgical resection, but options for systemic therapy in the setting of metastatic disease are limited and largely ineffective, prompting exploration of novel therapeutic strategies and experimental models. As with other cancers, sarcoma cell lines and patient-derived xenograft models have been developed and used to characterize these tumors and identify therapeutic targets, but these models have inherent limitations. The establishment of genetically engineered mouse models represents a more realistic framework for reproducing clinically relevant conditions for studying pleomorphic liposarcoma. METHODS: Trp53 fl/fl /Rb1 fl/fl /Pten fl/fl (RPP) mice were used to reliably generate an immunocompetent model of mouse pleomorphic liposarcoma through Cre-mediated conditional silencing of the Trp53, Rb1, and Pten tumor suppressor genes. Evaluation of tumor-infiltrating lymphocytes was assessed with immunostaining for CD4, CD8, and PD-L1, and flow cytometry with analysis of CD45, CD3, CD4, CD8, CD19, F4/80, CD11b, and NKp46 sub-populations. RESULTS: Mice reliably produced noticeable soft-tissue tumors in approximately 6 weeks with rapid tumor growth between 100 and 150 days of life, after which mice reached euthanasia criteria. Histologic features were consistent with pleomorphic liposarcoma, including widespread pleomorphic lipoblasts. Immunoprofiling and assessment of tumor-infiltrating lymphocytes was consistent with other soft-tissue sarcomas. CONCLUSION: Genetically engineered RPP mice reliably produced soft-tissue tumors consistent with pleomorphic liposarcoma, which immunological findings similar to other soft-tissue sarcomas. This model may demonstrate utility in testing treatments for this rare disease, including immunomodulatory therapies.
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