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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CD44v6 chimeric antigen receptor T cell specificity towards AML with FLT3 or DNMT3A mutations.
CD44v6 chimeric antigen receptor T cell specificity towards AML with FLT3 or DNMT3A mutations.
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CD44v6 是 FLT3 或 DNMT3A 突变 AML 患者 CAR-T 治疗的一个有前景的靶点。
CAR-T 细胞疗法治疗急性髓系白血病(AML)迄今仍难以实现,部分原因是AML细胞的靶点限制和表型异质性。FMS样酪氨酸激酶3(FLT3)和DNA甲基转移酶3A(DNMT3A)基因突变是常见的驱动突变,在AML患者中提示预后不良。我们发现,与正常标本相比,携带FLT3或DNMT3A突变的AML患者CD44异构体6(CD44v6)表达更高。因此,我们旨在证明CD44v6可能成为伴有FLT3或DNMT3A突变的AML的一个特异性选择。
分别使用CRISPR/Cas9和慢病毒转染技术,构建了FLT3内部串联重复(ITD)突变(FLT3/ITD)敲入克隆和SKM-1细胞的DNMT3A-R882H突变克隆。通过用含有CD44v6 CAR的慢病毒转染T细胞,构建了CD44v6 CAR-T 细胞。通过流式细胞术评估了AML细胞系、AML患者和健康供者中CD44v6的表达。使用DNA甲基化试验分析了FLT3和DNMT3A突变影响CD44v6表达的机制。
与野生型SKM-1或K562细胞相比,在具有FLT3或DNMT3A突变的AML细胞系中观察到CD44v6的异常过表达。与正常标本相比,具有FLT3或DNMT3A突变的AML患者CD44v6表达更高。随后我们构建了CD44v6 CAR-T 细胞,发现CD44v6 CAR-T 特异性裂解CD44v6+细胞,并伴随细胞因子释放。CD44v6-AML细胞和正常细胞与CD44v6 CAR-T 共培养后未观察到显著杀伤效应。这些结果在体内也得到验证。此外,我们发现FLT3或DNMT3A突变通过下调CD44启动子的CpG甲基化诱导CD44v6过表达。
Chimeric antigen receptor T-cell (CAR-T) therapy for acute myeloid leukaemia (AML) has thus far been elusive, in part due to target restriction and phenotypic heterogeneity of AML cells. Mutations of the FMS-like tyrosine kinase 3 (FLT3) and DNA methyltransferase 3A (DNMT3A) genes are common driver mutations that present with a poor prognosis in AML patients. We found that AML patients with FLT3 or DNMT3A mutations had higher expression of CD44 isoform 6 (CD44v6) compared to normal specimens. Therefore, we intended to demonstrate CD44v6 could be a specific option for AML with FLT3 or DNMT3A mutations.
Internal tandem duplication (ITD) mutations of FLT3 (FLT3/ITD) knock-in clone and DNMT3A-R882H mutant clones of SKM-1 cells were generated using CRISPR/Cas9 and lentiviral transfection, respectively. CD44v6 CAR-T cells were constructed by transfecting T cells with lentivirus containing CD44v6 CAR. CD44v6 expression in AML cell lines, AML patients and healthy donors was evaluated by flow cytometry. DNA methylation assays were used to analyse the mechanisms of FLT3 and DNMT3A mutations affecting CD44v6 expression.
Aberrant overexpression of CD44v6 was observed in AML cell lines with FLT3 or DNMT3A mutations compared to the wild-type SKM-1 or K562 cells. AML patients with FLT3 or DNMT3A mutations had higher expression of CD44v6 compared to normal specimens. Then we constructed CD44v6 CAR-T cells and found that CD44v6 CAR-T specifically lysed CD44v6 + cells, accompanied by cytokines release. No significant killing effect was observed from CD44v6 - AML cells and normal cells after co-culture with CD44v6 CAR-T. These results were also observed in vivo. Furthermore, we found that FLT3 or DNMT3A mutations induced CD44v6 overexpression by downregulating the CpG methylation of CD44 promoter.
Collectively, CD44v6 is a promising target of CAR-T for AML patients with FLT3 or DNMT3A mutations.
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