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:Cooperative role of distinctive TP53 and PTEN combined loss in the peripheral T cell lymphoma-GATA3 molecular subgroup.
外周T细胞淋巴瘤(PTCL)是一组异质性的胸腺后T细胞肿瘤,其中约40%被归类为PTCL-非特指型(PTCL-NOS)。
外周T细胞淋巴瘤(PTCL)是一组异质性的胸腺后T细胞肿瘤,其中约40%被归类为PTCL-非特指型(PTCL-NOS)。PTCL-GATA3是一种分子定义的亚型,与辅助性T细胞2(TH2)样分化和不良预后相关,常伴随TP53缺失/突变和PTEN杂合性缺失的共发生。携带Trp53突变/缺失和Pten缺失的CD4+ T细胞条件性小鼠模型表现出具有TH2样转录组和免疫表型特征的成熟T细胞淋巴瘤(mTCLs)。分子研究揭示,Trp53/Pten共缺失诱导了T细胞受体和Janus激酶-信号转导与转录激活因子信号传导,促进TH2分化同时抑制TH1分化。这些发现通过在人CD4+ T细胞中利用CRISPR编辑TP53/PTEN缺失得到验证,并从机制上评估了GATA3内含子3中的p53结合区域,导致转录抑制。m-TCLs的转录组谱重现了人类PTCL-GATA3转录组,并能够区分PTCL-NOS亚型。对m-TCLs进行PI3Kγ/δ抑制剂的临床前评估显著改善了生存,支持针对p53异常的PTCL-GATA3的治疗策略。
Peripheral T cell lymphoma (PTCL) is a heterogeneous group of postthymic T cell neoplasms, with ~40% classified as PTCL-not otherwise specified (PTCL-NOS). PTCL-GATA3, a molecularly defined subtype, associated with T helper 2 (T H 2)-like differentiation and poor prognosis, has frequent co-occurrence of TP53 loss/mutation and heterozygous PTEN loss. CD4+ T cell conditional mouse models with Trp53 mutation/deletion and Pten loss demonstrated mature T cell lymphomas (mTCLs) with T H 2-like transcriptomic and immunophenotypic profiles. Molecular studies revealed that codeletion of Trp53/Pten induced T cell receptor and Janus kinase-signal transducer and activator of transcription signaling, promoting T H 2 differentiation while inhibiting T H 1 differentiation. These findings were validated by CRISPR editing of TP53/PTEN loss in human CD4+ T cells and mechanistically evaluated the p53 binding region in intron-3 of GATA3, resulting in transcriptional repression. Transcriptomic profiles of m-TCLs recapitulated human-PTCL-GATA3 transcriptome and distinguished PTCL-NOS subtypes. Preclinical assessment of m-TCLs with PI3Kγ/δ inhibitors significantly improved survival, supporting a therapeutic approach for the p53-aberrant PTCL-GATA3.
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