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:A novel approach for relapsed/refractory FLT3(mut+) acute myeloid leukaemia: synergistic effect of the combination of bispecific FLT3scFv/NKG2D-CAR T cells and gilteritinib.
A novel approach for relapsed/refractory FLT3(mut+) acute myeloid leukaemia: synergistic effect of the combination of bispecific FLT3scFv/NKG2D-CAR T cells and gilteritinib.
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双特异性 FLT3scFv/NKG2D-CAR-T 细胞能有效清除 AML 细胞。FLT3 抑制剂 gilteritinib 可通过上调 AML 细胞中 NF- B2 依赖的 NKG2DL 表达,协同增强这一效应。
复发/难治性急性髓系白血病(AML)伴FMS样酪氨酸激酶3内部串联重复(FLT3-ITD)的患者治疗选择有限,预后较差。因此,需要新的治疗方式。由于FLT3抑制剂可诱导自然杀伤组2成员D配体(NKG2DLs)高表达,我们构建了双靶向FLT3单链可变片段(scFv)/NKG2D-嵌合抗原受体(CAR)T细胞,并探讨FLT3抑制剂联合FLT3scFv/NKG2D-CAR-T 细胞是否具有协同抗白血病作用。
通过流式细胞术评估了CAR-T 细胞中FLT3scFv和NKG2D的表达、AML细胞中FLT3和NKG2DL的表达,以及CAR-T 细胞与gilteritinib联合的体外细胞毒性。在通过注射MOLM-13细胞建立的异种移植小鼠模型中评估了治疗效果。使用siRNA、ChIP-QPCR和荧光素酶试验研究了gilteritinib诱导NKG2DL上调的机制。
FLT3scFv/NKG2D-CAR-T 细胞在体外和异种移植小鼠模型中均能特异性裂解AML细胞。gilteritinib预处理提高了FLT3scFv/NKG2D-CAR-T 细胞的疗效。研究发现,非经典NF- B2/Rel B信号通路介导了gilteritinib诱导的AML细胞中NKG2DL上调。
Patients with relapsed/refractory acute myeloid leukaemia (AML) with FMS-like tyrosine kinase 3-internal tandem duplication (FLT3-ITD) have limited treatment options and poor prognosis. Therefore, novel treatment modalities are needed. Since high expression of natural killer group 2 member D ligands (NKG2DLs) can be induced by FLT3 inhibitors, we constructed dual-target FLT3 single-chain fragment variable (scFv)/NKG2D-chimeric antigen receptor (CAR) T cells, and explored whether FLT3 inhibitors combined with FLT3scFv/NKG2D-CAR T cells could have synergistic anti-leukaemia effects.
FLT3scFv and NKG2D expression in CAR T cells, FLT3 and NKG2DL expression in AML cells, and the in vitro cytotoxicity of combining CAR T cells with gilteritinib were assessed by flow cytometry. The therapeutic effect was evaluated in a xenograft mouse model established by injection of MOLM-13 cells. Mechanisms underlying the gilteritinib-induced NKG2DL upregulation were investigated using siRNA, ChIP-QPCR and luciferase assays.
The FLT3scFv/NKG2D-CAR T cells specifically lysed AML cells both in vitro and in the xenograft mouse model. The efficacy of FLT3scFv/NKG2D-CAR T cells was improved by gilteritinib-pretreatment. The noncanonical NF- B2/Rel B signalling pathway was found to mediate gilteritinib-induced NKG2DL upregulation in AML cells.
Bispecific FLT3scFv/NKG2D-CAR T cells can effectively eradicate AML cells. The FLT3 inhibitor gilteritinib can synergistically improve this effect by upregulating NF- B2-dependent NKG2DL expression in AML cells.
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