CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CSF1R marks a subset of foetal haematopoietic multipotent progenitor cells with acute myeloid leukaemia propagation properties.
CSF1R marks a subset of foetal haematopoietic multipotent progenitor cells with acute myeloid leukaemia propagation properties.
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KMT2A重排婴儿白血病是婴幼儿和儿童中最严重的恶性肿瘤之一,具有高度侵袭性和谱系可塑性。KMT2A::MLLT3是婴儿白血病最常见的起始性易位之一,可表现为髓系或淋巴系白血病。KMT2A::MLLT3阳性婴儿白血病的起源细胞及决定谱系选择的机制尚不清楚。
本研究显示,在小鼠模型中诱导KMT2A::MLLT3后,一部分表达集落刺激因子1受体(CSF1R)的胎儿淋巴系预激多能祖细胞(LMPP)会发展为急性髓系白血病(AML);其髓系表型至少部分依赖CSF1R信号。与其白血病传播能力相符,KMT2A::MLLT3⁺ CSF1R⁺ LMPP具有干细胞样、髓系偏向的表达特征,并需要自噬才能扩增并在甲基纤维素中形成原始细胞样集落。对公开数据集的分析证实,在人类胚胎发育早期存在受胎儿期限制的CSF1R⁺ LMPP群体。
最后,在KMT2A::MLLT3阳性儿童白血病细胞系中抑制CSF1R可导致显著细胞死亡,提示CSF1R可能成为这些患者的治疗靶点。研究结果提示,KMT2A::MLLT3阳性婴儿AML可能起源于胎儿肝脏CSF1R⁺ LMPP,且这些患者可能获益于抗CSF1R CAR-T 细胞疗法。
KMT2A-rearranged infant leukaemia is one of the most severe malignancies in infants and children, and is characterised by a very aggressive phenotype and lineage plasticity. KMT2A::MLLT3 is among the most common translocations initiating leukaemia in infants, where it can manifest with a myeloid or lymphoid leukaemia phenotype. The cell-of-origin and the mechanisms driving lineage choice in KMT2A::MLLT3+ infant leukaemia are poorly understood.
In this study, we show that a subset of foetal lymphoid-primed multipotent progenitors (LMPPs) expressing the Colony-Stimulating Factor 1 receptor (CSF1R) gives rise to acute myeloid leukaemia (AML) upon KMT2A::MLLT3 induction in a mouse model, with the myeloid phenotype, at least in part, being dependent on CSF1R signalling.
In line with their leukaemia-propagating properties, KMT2A::MLLT3 + CSF1R+ LMPPs possess a stem cell-like and myeloid-biased expression signature and require autophagy to expand and form blast-like colonies in methylcellulose. Interrogation of public datasets confirms the existence of a human foetal-restricted CSF1R+ LMPP population at early stages of embryonic development.
Finally, CSF1R inhibition on a KMT2A::MLLT3+ paediatric leukaemia cell line resulted in significant cell death, suggesting that CSF1R could be therapeutically targeted in these patients.
Our findings suggest that KMT2A::MLLT3+ infant AML may originate from foetal liver CSF1R+ LMPPs, and that these patients may benefit from anti-CSF1R-CAR-T cell therapy.
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