CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Prevalence of STAT3 mutations in patients with rheumatoid arthritis-associated T-cell large granular lymphocytic leukaemia and Felty syndrome.
Prevalence of STAT3 mutations in patients with rheumatoid arthritis-associated T-cell large granular lymphocytic leukaemia and Felty syndrome.
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结果表明,STAT3 突变在 FS 中比在 RA 相关性 T-LGL 白血病中显著少见。
中性粒细胞减少是Felty综合征(FS)及类风湿关节炎(RA)相关T细胞大颗粒淋巴细胞(T-LGL)白血病的主要表现。T细胞受体(TCR)基因克隆性重排有助于诊断T-LGL白血病,但不支持FS诊断。信号转导及转录激活因子3(STAT3)基因突变对T-LGL白血病具有高度特异性,但其在FS中的发生率尚未明确。
研究纳入100例患RA且原因不明中性粒细胞减少的患者。使用BIOMED-2方案检测100例血液、47例骨髓和12例脾脏样本中的TCR重排。若任一受检样本中发现TCR克隆性重排,则将患者归入RA相关T-LGL白血病组;否则归入FS组。采用新一代测序(NGS)技术检测100例血液、37例骨髓和7例脾脏样本中的STAT3突变。
RA相关T-LGL白血病患者中,49/69(71%)检出STAT3突变;FS患者中为3/31(10%)(P=4.7×10⁻⁸)。RA相关T-LGL白血病组有3份样本、FS组有5份样本存在STAT3突变,但未发现TCR克隆性重排。
结果提示,FS患者STAT3突变发生率显著低于RA相关T-LGL白血病患者。此外,NGS可检测到片段分析无法检出的克隆。作者推测,对于RA合并中性粒细胞减少的患者,即使未发现TCR克隆性重排,检测到STAT3突变也可能提示T-LGL白血病。
Neutropenia is a key presentation of Felty syndrome (FS) and rheumatoid arthritis (RA)-associated T-cell large granular lymphocytic (T-LGL) leukaemia. Clonal rearrangement of T-cell receptor (TCR) gene supports the diagnosis of T-LGL leukaemia but not FS. Mutations in the signal transducer and activator of transcription 3 (STAT3) gene are highly specific for T-LGL leukaemia, but their prevalence in FS remains poorly clarified.
The study included 100 patients with RA and unexplained neutropenia. TCR rearrangements were examined in blood (100 cases), bone marrow (47 cases), and spleen (12 cases) using the BIOMED-2 protocol. Patients were stratified into RA-associated T-LGL leukaemia cohort if a clonal TCR rearrangement was identified in any of the tested patient samples, and into FS cohort in other cases. Mutations in the STAT3 were examined using next-generation sequencing (NGS) technology in blood (100 cases), bone marrow (37 cases), and spleen (7 cases).
STAT3 mutations were identified in 71% (49/69) patients with RA-associated T-LGL leukaemia and in 10% (3/31) patients with FS (p=4.7×10-8). Three samples from the RA-associated T-LGL leukaemia cohort and 5 samples from the FS cohort had STAT3 mutations in the absence of clonal TCR rearrangement.
The results suggest that STAT3 mutations are significantly less common in FS than in RA-associated T-LGL leukaemia. Moreover, NGS can detect clones undetectable by fragment analysis. We speculate that in patients with RA and neutropenia, the detection of STAT3 mutations can point to T-LGL leukaemia even in the absence of clonal TCR rearrangement.
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