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:Poliovirus receptor-based chimeric antigen receptor T cells combined with NK-92 cells exert potent activity against glioblastoma.
Poliovirus receptor-based chimeric antigen receptor T cells combined with NK-92 cells exert potent activity against glioblastoma.
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基于脊髓灰质炎病毒受体的 CAR-T 细胞能够杀伤胶质瘤干细胞,并在与 NK-92 细胞联合使用时抑制肿瘤复发。
脊髓灰质炎病毒受体与3种受体相互作用:T细胞免疫球蛋白免疫受体酪氨酸抑制基序、CD96和DNAX辅助分子1,这些受体主要表达于T细胞和自然杀伤(NK)细胞。据报道,包括IDH野生型胶质母细胞瘤在内的许多实体瘤过表达脊髓灰质炎病毒受体,且这种过表达与不良预后相关。然而,尚无临床前或临床试验研究针对IDH野生型胶质母细胞瘤中使用靶向脊髓灰质炎病毒受体的细胞免疫疗法。
我们分析了转录组测序数据库和IDH野生型胶质母细胞瘤患者标本中的脊髓灰质炎病毒受体表达。我们使用慢病毒开发了靶向脊髓灰质炎病毒受体的CAR-T 细胞。CAR-T 细胞的抗肿瘤活性在患者来源的胶质瘤干细胞、颅内和皮下小鼠异种移植模型中得到证实。
我们验证了原发胶质瘤干细胞、IDH野生型胶质母细胞瘤患者的手术标本以及类器官中脊髓灰质炎病毒受体的表达。据此,我们开发了基于脊髓灰质炎病毒受体的第二代CAR-T 细胞。CAR-T 细胞的抗肿瘤活性在胶质瘤干细胞和异种移植模型中得到了证实。由于抗原丢失,颅内异种移植模型出现了肿瘤复发。基于酪氨酸抑制基序胞外域的CAR-T 细胞与NK-92细胞的联合治疗显著抑制了肿瘤复发并延长了生存期。
Poliovirus receptor interacts with 3 receptors: T-cell immunoglobulin immunoreceptor tyrosine-based inhibitory motif, CD96, and DNAX accessory molecule 1, which are predominantly expressed on T cells and natural killer (NK) cells. Many solid tumors, including IDH wild-type glioblastoma, have been reported to overexpress poliovirus receptor, and this overexpression is associated with poor prognosis. However, there are no preclinical or clinical trials investigating the use of cell-based immunotherapies targeting poliovirus receptor in IDH wild-type glioblastoma.
We analyzed poliovirus receptor expression in transcriptome sequencing databases and specimens from IDH wild-type glioblastoma patients. We developed poliovirus receptor targeting chimeric antigen receptor T cells using lentivirus. The antitumor activity of chimeric antigen receptor T cells was demonstrated in patient-derived glioma stem cells, intracranial and subcutaneous mouse xenograft models.
We verified poliovirus receptor expression in primary glioma stem cells, surgical specimens from IDH wild-type glioblastoma patients, and organoids. Accordingly, we developed poliovirus receptor-based second-generation chimeric antigen receptor T cells. The antitumor activity of chimeric antigen receptor T cells was demonstrated in glioma stem cells and xenograft models. Tumor recurrence occurred in intracranial xenograft models because of antigen loss. The combinational therapy of tyrosine-based inhibitory motif extracellular domain-based chimeric antigen receptor T cells and NK-92 cells markedly suppressed tumor recurrence and prolonged survival.
Poliovirus receptor-based chimeric antigen receptor T cells were capable of killing glioma stem cells and suppressing tumor recurrence when combined with NK-92 cells.
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