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Myeloid Neoplasia: Early lymphocyte recovery after intensive timed sequential chemotherapy for acute myelogenous leukemia: peripheral oligoclonal expansion of regulatory T cells

机译:髓样瘤形成:急性粒细胞性白血病密集定时序贯化疗后早期淋巴细胞恢复:调节性T细胞的外周寡克隆扩增

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摘要

Few published studies characterize early lymphocyte recovery after intensive chemotherapy for acute myelogenous leukemia (AML). To test the hypothesis that lymphocyte recovery mirrors ontogeny, we characterized early lymphocyte recovery in 20 consecutive patients undergoing induction timed sequential chemotherapy for newly diagnosed AML. Recovering T lymphocytes were predominantly CD4+ and included a greatly expanded population of CD3+CD4+CD25+Foxp3+ T cells. Recovering CD3+CD4+CD25+Foxp3+ T cells were phenotypically activated regulatory T cells and showed suppressive activity on cytokine production in a mixed lymphocyte reaction. Despite an initial burst of thymopoiesis, most recovering regulatory T cells were peripherally derived. Furthermore, regulatory T cells showed marked oligoclonal skewing, suggesting that their peripheral expansion was antigen-driven. Overall, lymphocyte recovery after chemotherapy differs from ontogeny, specifically identifying a peripherally expanded oligoclonal population of activated regulatory T lymphocytes. These differences suggest a stereotyped immunologic recovery shared by patients with newly diagnosed AML after induction timed sequential chemotherapy. Further insight into this oligoclonal regulatory T-cell population will be fundamental toward developing effective immunomodulatory techniques to improve survival for patients with AML.
机译:很少有发表的研究描述急性骨髓性白血病(AML)强化化疗后早期淋巴细胞恢复的特征。为了检验淋巴细胞恢复反映个体发育的假说,我们对20例接受了新诊断AML的诱导定时序贯化疗的连续患者进行了早期淋巴细胞恢复的特征分析。回收的T淋巴细胞主要是CD4 + ,其中CD3 + CD4 + CD25 + Foxp3 < sup> + T细胞。回收CD3 + CD4 + CD25 + Foxp3 + T细胞是表型激活的调节性T细胞,对T细胞表现出抑制活性。混合淋巴细胞反应中细胞因子的产生。尽管最初的胸腺生成突然爆发,但大多数恢复的调节性T细胞还是外周来源的。此外,调节性T细胞表现出明显的寡克隆偏斜,表明它们的外周扩张是抗原驱动的。总体而言,化学疗法后的淋巴细胞恢复不同于个体发育,特别是鉴定了活化的调节性T淋巴细胞的周边扩展寡克隆群体。这些差异表明诱导定时序贯化疗后新诊断为AML的患者具有相同的定型免疫学恢复。对这种寡克隆调节性T细胞群体的进一步了解将是开发有效的免疫调节技术以改善AML患者生存的基础。

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