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解析 B-ALL 抗 CD19 CAR-T 细胞治疗耐药机制:新型体外模型与靶抗原动态洞见

英文原题:Unraveling resistance mechanisms in anti-CD19 chimeric antigen receptor-T therapy for B-ALL: a novel in vitro model and insights into target antigen dynamics.

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Unraveling resistance mechanisms in anti-CD19 chimeric antigen receptor-T therapy for B-ALL: a novel in vitro model and insights into target antigen dynamics.

PubMed 2024/05/21(内容时间) J Transl Med Q1 · IF 9.7(JCR 2025)

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研究概要

我们成功制备了 CART-19 细胞,并获得了一种 CD19 阴性的难治性复发性 B-ALL 细胞系,为耐药性的潜在机制提供了新的见解,并为治疗抗原密度低的 r/r B-ALL 患者提供了一种新的体外模型。

中文摘要

以CAR-T 细胞为代表的细胞免疫疗法,在体外和临床试验中已显示较高缓解率、持久缓解及良好安全性。然而,单独使用抗 CD19 CAR-T(CART-19)容易复发,对复发/难治性(r/r)B 细胞急性淋巴细胞白血病(B-ALL)患者尤其预后不佳。目前,解决或减少复发仍是推动其广泛临床应用的研究重点之一。

我们制备了第二代 CART-19 细胞,并在体内外验证其疗效与安全性。通过将 Nalm-6 细胞与短期培养的 CART-19 细胞共培养,采用流式细胞术检测 CD19 阴性 Nalm-6 细胞,并在体外进一步研究复发细胞及其耐药机制。

本研究证实 CART-19 细胞具有增强且特异的抗白血病活性,接受 CART-19 治疗的 B-ALL 小鼠模型生存期显著延长。随后,我们缩短 CAR-T 细胞培养时间,并采用无血清培养扩增细胞,再将 CART-19 与 Nalm-6 细胞共培养。令人意外的是,约 28 天后观察到 CD19 阴性 Nalm-6 细胞增殖。对潜在耐药机制的鉴定发现,复发细胞表达截短的 CD19 蛋白,且其水平降低;更重要的是,在复发细胞表面检测到 CAR 表达,这可能最终使其保持抗原阴性。此外,研究证实 CART-22 和串联型 CART-22/19 细胞可有效杀伤复发细胞,但均无法将其彻底清除。

我们成功制备了 CART-19 细胞,并获得 CD19 阴性的难治复发 B-ALL 细胞系,为理解耐药机制提供新见解,也为低抗原密度 r/r B-ALL 患者的治疗提供新的体外模型。

展开英文摘要原文

Cellular immunotherapy, represented by the chimeric antigen receptor T cell (CAR-T), has exhibited high response rates, durable remission, and safety in vitro and in clinical trials. Unfortunately, anti-CD19 CAR-T (CART-19) treatment alone is prone to relapse and has a particularly poor prognosis in relapsed/refractory (r/r) B-ALL patients. To date, addressing or reducing relapse remains one of the research priorities to achieve broad clinical application.

We manufactured second generation CART-19 cells and validated their efficacy and safety in vitro and in vivo. Through co-culture of Nalm-6 cells with short-term cultured CART-19 cells, CD19-negative Nalm-6 cells were detected by flow cytometry, and further investigation of the relapsed cells and their resistance mechanisms was evaluated in vitro.

In this study, we demonstrated that CART-19 cells had enhanced and specific antileukemic activities, and the survival of B-ALL mouse models after CART-19 treatment was significantly prolonged. We then shortened the culture time and applied the serum-free culture to expand CAR-T cells, followed by co-culturing CART-19 cells with Nalm-6 cells. Surprisingly, we observed the proliferation of CD19-negative Nalm-6 cells around 28 days. Identification of potential resistance mechanisms showed that the relapsed cells express truncated CD19 proteins with decreased levels and, more importantly, CAR expression was detected on the relapsed cell surface, which may ultimately keep them antigen-negative. Furthermore, it was validated that CART-22 and tandem CART-22/19 cells could effectively kill the relapsed cells, but neither could completely eradicate them.

We successfully generated CART-19 cells and obtained a CD19-negative refractory relapsed B-ALL cell line, providing new insights into the underlying mechanisms of resistance and a new in vitro model for the treatment of r/r B-ALL patients with low antigen density.

论文信息

作者
Li H、Wang Y、Liu R、Li X、Zhang P、Chen P、Zhao N、Li B
第一作者单位
Department/Center of Hematology-oncology, Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health, Hangzhou, Zhejiang, China.China
通讯作者单位
Department/Center of Hematology-oncology, Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health, Hangzhou, Zhejiang, China. y_m_tang@zju.edu.cn.China
文献类型
非美国政府资助研究
期刊
Journal of translational medicine2024 May 21
原文标识
PubMed 38773607 · DOI 10.1186/s12967-024-05254-z