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:Cytoplasmic staining of T cell receptor components enables efficient assessment of lineage and clonality in surface CD3-negative T cell neoplasms.
流式细胞术可通过检测T细胞受体(TCR)恒定区(TRBC)的限制性表达模式来确立T细胞克隆性,该恒定区与CD3联合表达。
流式细胞术可通过检测T细胞受体(TCR)恒定区(TRBC)的限制性表达模式来确立T细胞克隆性,TRBC与CD3联合表达。然而,T细胞肿瘤常丢失CD3/TCR复合物的表面表达,这给证明T细胞来源和克隆性带来了挑战。为应对这一挑战,我们在此提出一个12色流式细胞术panel,称为cytoTCR,用于表征CD3/TCR复合物组分的胞质表达。我们将cytoTCR应用于38例免疫表型异常的T细胞群患者标本,证明该方法能够在丢失表面CD3表达的棘手T细胞肿瘤中有效确立T细胞来源和克隆性。虽然我们显示自然杀伤(NK)系肿瘤可表达与T细胞相似水平的胞质CD3,但我们表明成熟淋巴细胞不表达胞质TCR组分有助于确认NK细胞来源。我们证明cytoTCR可在缺乏泛T细胞抗原表面表达的棘手null表型间变性大细胞淋巴瘤病例中检测到胞质TRBC限制性。在T淋巴母细胞白血病病例中,cytoTCR显示胞质TRBC表达与白血病预期发育阶段相符。最后,我们使用cytoTCR表征一名有T淋巴母细胞白血病病史且近期接受CAR-T治疗的患者中的非典型cCD3-CD7-T细胞,显示该非典型群体为多型性,代表CAR-T产品而非残留病灶。我们的研究提出了一种广泛适用的流式细胞术方法,用于在表面CD3表达缺失的疑似T细胞来源群体中同时评估T细胞来源和克隆性。
Flow cytometry can establish T cell clonality by detecting a restricted expression pattern of the T cell receptor (TCR) constant region (TRBC), expressed in association with CD3. However, T cell neoplasms frequently lose surface expression of the CD3/TCR complex, posing a challenge to demonstrating T cell lineage and clonality. To address this challenge, here we present a 12-color flow cytometry panel, called cytoTCR, to characterize cytoplasmic expression of CD3/TCR complex components. We apply cytoTCR to 38 patient specimens with immunophenotypically abnormal T cell populations, demonstrating this approach can efficiently establish T cell lineage and clonality in challenging T cell neoplasms that have lost surface CD3 expression. While we show that natural killer (NK)-lineage neoplasms can express cytoplasmic CD3 at similar levels to T cells, we show that absent expression of cytoplasmic TCR components by mature lymphocytes can help confirm NK cell lineage. We demonstrate that cytoTCR can detect cytoplasmic TRBC-restriction in challenging cases of null-phenotype anaplastic large cell lymphoma, which lack surface expression of pan-T cell antigens. In cases of T-lymphoblastic leukemia, cytoTCR shows that cytoplasmic TRBC expression matches the expected developmental stage of the leukemia. Finally, we use cytoTCR to characterize atypical cCD3 - CD7 - T cells in a patient with a history of T-lymphoblastic leukemia as well as recent CAR-T therapy, showing that this atypical population is polytypic and represents CAR-T product rather than residual disease. Our study presents a broadly applicable flow cytometric approach to simultaneously assess T cell lineage and clonality in suspected T lineage populations with absent surface CD3 expression.
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