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:Leukemia-intrinsic determinants of CAR-T response revealed by iterative in vivo genome-wide CRISPR screening.
Leukemia-intrinsic determinants of CAR-T response revealed by iterative in vivo genome-wide CRISPR screening.
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CAR-T 疗法是治疗B细胞恶性肿瘤的一种有前景的新型方式,但许多患者会通过多种机制复发,包括CAR-T 细胞丢失和抗原逃逸。为研究白血病细胞内在的CAR-T 耐药机制,我们在免疫功能健全的小鼠B细胞急性淋巴细胞白血病(B-ALL)模型中,利用模块化引导RNA文库开展了全基因组CRISPR-Cas9功能缺失筛选。
我们发现,IFN受体/JAK/STAT信号通路以及抗原加工与呈递通路组分是体内CAR-T 治疗耐药的关键介质;值得注意的是,在体外,丢失该通路却产生相反作用,使白血病细胞对CAR-T 细胞更敏感。该模型的转录特征分析显示,CAR-T 治疗后复发肿瘤中这些通路表达上调;功能研究则意外发现,自然杀伤(NK)细胞参与启动这一耐药程序。
最后,对接受CAR-T 治疗的B-ALL患者数据进行分析发现,白血病细胞中JAK/STAT和MHC-I表达升高与不良结局相关。
总体而言,我们发现了一种意外的CAR-T 耐药机制:肿瘤细胞与体内肿瘤微环境(包括NK细胞)相互作用,诱导肿瘤细胞表达适应性、治疗诱导的T细胞耐药程序。
CAR-T therapy is a promising, novel treatment modality for B-cell malignancies and yet many patients relapse through a variety of means, including loss of CAR-T cells and antigen escape. To investigate leukemia-intrinsic CAR-T resistance mechanisms, we performed genome-wide CRISPR-Cas9 loss-of-function screens in an immunocompetent murine model of B-cell acute lymphoblastic leukemia (B-ALL) utilizing a modular guide RNA library.
We identified IFN R/JAK/STAT signaling and components of antigen processing and presentation pathway as key mediators of resistance to CAR-T therapy in vivo; intriguingly, loss of this pathway yielded the opposite effect in vitro (sensitized leukemia to CAR-T cells). Transcriptional characterization of this model demonstrated upregulation of these pathways in tumors relapsed after CAR-T treatment, and functional studies showed a surprising role for natural killer (NK) cells in engaging this resistance program.
Finally, examination of data from B-ALL patients treated with CAR-T revealed an association between poor outcomes and increased expression of JAK/STAT and MHC-I in leukemia cells.
Overall, our data identify an unexpected mechanism of resistance to CAR-T therapy in which tumor cell interaction with the in vivo tumor microenvironment, including NK cells, induces expression of an adaptive, therapy-induced, T-cell resistance program in tumor cells.
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