cyTRBC1 评估可快速识别 sCD3 阴性外周 T 细胞淋巴瘤,并揭示出一种新型 sCD3 阴性 T 细胞克隆,但其意义尚不确定。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Cong Lu, Mingyong Li, Jun Fu, Xiaoming Fan, Ling Zhong, Yanxin Li, Qian Xi
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引用次数: 0

摘要

基于流式细胞术的TRBC1表达评估已被证明是检测sCD3阳性TCRαβ+成熟T细胞淋巴瘤中T细胞克隆的一种快速而特异的方法。该研究的目的是验证表面(s)TRBC1和细胞质(cy)TRBC1评估在检测sCD3阴性外周T细胞淋巴瘤(PTCL)克隆性方面的实用性,以及探索意义不确定的sCD3阴性克隆T细胞群(T-CUS)的存在和特征。对来自37名sCD3阴性PTCL患者的61份样本进行了sTRBC1和cyTRBC1评估,其中包括26名血管免疫母细胞T细胞淋巴瘤(AITL)患者和11名非AITL患者。从1602名无T细胞恶性肿瘤的患者和100名健康人中筛选出了sCD3阴性的T-CUS。此外,还通过 T 细胞基因重排分析进一步检测了细胞的克隆性。我们证实了 cyTRBC1 在所有 sCD3 阴性 PTCL 中的单型表达模式。利用 cyTRBC1 评估测定,我们在 1602 例(0.8%)无 T 细胞恶性肿瘤的患者中首次发现了一种新型罕见的 sCD3 阴性 T-CUS 亚型。通过 T 细胞基因重排分析,进一步证实了这些细胞的克隆性。该亚群表现出 sCD3-cyCD3 + CD4 + CD45RO+ 等特征,与 AITL 而非非 AITL 非常相似。进一步分析发现,与 AITL 患者相比,sCD3 阴性 T-CUS 在淋巴结和肿块标本中表现出较小的克隆大小。然而,在两组标本中,sCD3 阴性 T-CUS 的克隆大小均明显低于非 AITL 患者。总之,我们验证了 cyTRBC1 在检测 sCD3 阴性 T 细胞克隆方面的诊断效用,对 sCD3 阴性 T-CUS 进行了全面分析,并建立了一个框架,为根据表型特征和克隆大小区分 sCD3 阴性 T-CUS 和 sCD3 阴性 PTCL 提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
cyTRBC1 evaluation rapidly identifies sCD3-negative peripheral T-cell lymphomas and reveals a novel type of sCD3-negative T-cell clone with uncertain significance.

The flow cytometry-based evaluation of TRBC1 expression has been demonstrated as a rapid and specific method for detecting T-cell clones in sCD3-positive TCRαβ+ mature T-cell lymphoma. The aim of the study was to validate the utility of surface (s) TRBC1 and cytoplastic (cy) TRBC1 assessment in detecting clonality of sCD3-negative peripheral T-cell lymphomas (PTCLs), as well as exploring the existence and characteristics of sCD3-negative clonal T-cell populations with uncertain significance (T-CUS). Evaluation of sTRBC1 and cyTRBC1 were assessed on 61 samples from 37 patients with sCD3-negative PTCLs, including 26 angioimmunoblastic T-cell lymphoma (AITL) patients and 11 non-AITL patients. The sCD3-negative T-CUS were screened from 1602 patients without T-cell malignancy and 100 healthy individuals. Additionally, the clonality of cells was further detected through T-cell gene rearrangement analysis. We demonstrated the monotypic expression patterns of cyTRBC1 in all sCD3-negative PTCLs. Utilizing the cyTRBC1 evaluation assay, we identified a novel and rare subtype of sCD3-negative T-CUS for the first time among 13 out of 1602 (0.8%) patients without T-cell malignancy. The clonality of these cells was further confirmed through T-cell gene rearrangement analysis. This subset exhibited characteristics such as sCD3-cyCD3 + CD4 + CD45RO+, closely resembling AITL rather than non-AITL. Further analysis revealed that sCD3-negative T-CUS exhibited a smaller clone size in the lymph node and mass specimens compared to AITL patients. However, the clone size of sCD3-negative T-CUS was significantly lower than that of non-AITL patients in both specimen groups. In conclusion, we validated the diagnostic utility of cyTRBC1 in detecting sCD3-negative T-cell clonality, provided a comprehensive analysis of sCD3-negative T-CUS, and established a framework and provided valuable insights for distinguishing sCD3-negative T-CUS from sCD3-negative PTCLs based on their phenotypic properties and clone size.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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