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:Naturally selected CD7 CAR-T therapy without genetic editing demonstrates significant antitumour efficacy against relapsed and refractory acute myeloid leukaemia (R/R-AML).
在临床前研究中,天然筛选的 CD7 CAR-T 细胞是复发和难治性急性髓系白血病患者的一种有效治疗策略。
背景:复发/难治性急性髓系白血病(R/R-AML)患者生存率仍低,治疗困难。CAR-T 细胞已广泛用于血液系统恶性肿瘤。当前 AML CAR-T 多靶向 CD123、CD33 等髓系抗原,可能造成造血毒性。CD7 是谱系相关受体,在 AML 细胞和 T 细胞表达,但不在髓系细胞表达,因此需要进一步探索 CD7 CAR-T 治疗 R/R-AML。方法:采用免疫组化和流式细胞术分析 R/R-AML 患者及健康供者临床样本中的 CD7 表达。设计天然筛选的 CD7 CAR-T,通过流式细胞术评估多项功能及体外抗白血病效力,并使用异种移植模型验证体内肿瘤变化。结果:本中心 MRD 阳性 R/R-AML 患者中,CD7 表达细胞比例为 5/16(31.25%)。分析患者髓系和淋巴系细胞后发现,CD7 在 T 细胞表达而在髓系细胞不表达。随后设计并构建天然筛选的 CD7 CAR-T。由于转导后第 12 天 CD7 分子表达自然消失,未对 CD7 CAR-T 细胞进行 CD7 抗原敲低。天然筛选的 CD7 CAR-T 在体外高效杀伤 CD7⁺ AML 细胞及 R/R-AML 患者 CD7⁺ 原代原始细胞,并显著抑制异种移植小鼠模型中的白血病细胞生长。结论:临床前研究表明,天然筛选的 CD7 CAR-T 是治疗复发/难治性 AML 的有效策略。
BACKGROUND: The survival rate for patients with relapsed and refractory acute myeloid leukaemia (R/R-AML) remains poor, and treatment is challenging. Chimeric antigen receptor T cells (CAR-T cells) have been widely used for haematologic malignancies. Current CAR-T therapies for acute myeloid leukaemia mostly target myeloid-lineage antigens, such as CD123 and CD33, which may be associated with potential haematopoietic toxicity. As a lineage-specific receptor, CD7 is expressed in acute myeloid leukaemia cells and T cells but is not expressed in myeloid cells. Therefore, the use of CD7 CAR-T cells for R/R-AML needs to be further explored. METHODS: In this report, immunohistochemistry and flow cytometry were used to analyse CD7 expression in clinical samples from R/R-AML patients and healthy donors (HDs). We designed naturally selected CD7 CAR-T cells to analyse various functions and in vitro antileukaemic efficacy based on flow cytometry, and xenograft models were used to validate in vivo tumour dynamics. RESULTS: We calculated the percentage of cells with CD7 expression in R/R-AML patients with minimal residual disease (MRD) (5/16, 31.25%) from our institution and assessed CD7 expression in myeloid and lymphoid lineage cells of R/R-AML patients, concluding that CD7 is expressed in T cells but not in myeloid cells. Subsequently, we designed and constructed naturally selected CD7 CAR-T cells (CD7 CAR). We did not perform CD7 antigen knockdown on CD7 CAR-T cells because CD7 molecule expression is naturally eliminated at Day 12 post transduction. We then evaluated the ability to target and kill CD7 + acute myeloid leukaemia cells in vitro and in vivo. Naturally selected CD7 CAR-T cells efficiently killed CD7 + acute myeloid leukaemia cells and CD7 + primary blasts of R/R-AML patients in vitro and significantly inhibited leukaemia cell growth in a xenograft mouse model. CONCLUSION: Naturally selected CD7 CAR-T cells represent an effective treatment strategy for relapsed and refractory acute myeloid leukaemia patients in preclinical studies.
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