工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
我们的方法将酶/前药治疗和免疫治疗整合到一个单一的细菌递送系统中,通过提供合理设计的空间控制化学免疫治疗框架,克服了传统疗法的关键局限性。
英文原题:NY-ESO-1-specific redirected T cells with endogenous TCR knockdown mediate tumor response and cytokine release syndrome.
该试验显示,内源性 TCR 沉默且亲和力增强的 NY-ESO-1 TCR-T 细胞可安全给药,除 3 级肺损伤外。
背景:由于理想细胞表面抗原有限,开发靶向NY-ESO-1等细胞内抗原的T细胞受体工程化T细胞(TCR-T),是治疗实体瘤的有前景方法。然而,载体转导T细胞中的内源性TCR可能损害转导TCR在细胞表面的表达,并产生错配TCR,后者可能引起自身反应。方法:本研究开展一项首次人体I期临床试验,在表达NY-ESO-1的实体瘤患者中使用TCR转导T细胞产品TBI-1301。制造TCR-T时,研究采用亲和力增强型NY-ESO-1特异性TCR,并由一种逆转录病毒载体转导;该载体可通过小干扰RNA(siRNA)沉默内源性TCR。患者分入两个队列:队列1接受5×10⁸个细胞(包括TCR-T细胞在内的全部细胞),并使用环磷酰胺1500 mg/m²预处理;队列2接受5×10⁹个细胞,并采用相同预处理。结果:体外研究显示,TCR-T细胞中的CD8+和CD4+组分均可杀伤表达NY-ESO-1的肿瘤细胞。队列1和队列2分别纳入3人和6人。接受5×10⁹个细胞的6名患者中,3人出现肿瘤应答;另有3人发生早发型细胞因子释放综合征(CRS)。1人出现与TCR-T细胞浸润相关的3级肺损伤。除CRS外,未发现与siRNA相关的不良事件。发生CRS患者血清IL-6及单核细胞趋化蛋白1/CCL2等细胞因子升高;体外分析显示这些细胞因子并非由输注T细胞分泌。发生CRS患者所制备T细胞中,相当一部分高表达CD244、CD39或两者。结论:试验显示,沉默内源性TCR且经亲和力增强的NY-ESO-1 TCR-T细胞可安全给药,除一例3级肺损伤外未见重大安全问题。在NY-ESO-1高表达肿瘤患者中,TCR-T输注出现显著肿瘤应答及早发型CRS。制备T细胞的分化特征可能有助于预测TCR-T相关CRS。临床试验注册号:NCT02366546。
BACKGROUND: Because of the shortage of ideal cell surface antigens, the development of T-cell receptor (TCR)-engineered T cells (TCR-T) that target intracellular antigens such as NY-ESO-1 is a promising approach for treating patients with solid tumors. However, endogenous TCRs in vector-transduced T cells have been suggested to impair cell-surface expression of transduced TCR while generating mispaired TCRs that can become self-reactive. METHODS: We conducted a first-in-human phase I clinical trial with the TCR-transduced T-cell product (TBI-1301) in patients with NY-ESO-1-expressing solid tumors. In manufacturing TCR-T cells, we used a novel affinity-enhanced NY-ESO-1-specific TCR that was transduced by a retroviral vector that enables siRNA (small interfering RNA)-mediated silencing of endogenous TCR. The patients were divided into two cohorts. Cohort 1 was given a dose of 5 10 8 cells (whole cells including TCR-T cells) preconditioned with 1500 mg/m 2 cyclophosphamide. Cohort 2 was given 5 10 9 cells preconditioned with 1500 mg/m 2 cyclophosphamide. RESULTS: In vitro study showed that both the CD8 + and CD4 + T fractions of TCR-T cells exhibited cytotoxic effects against NY-ESO-1-expressing tumor cells. Three patients and six patients were allocated to cohort 1 and cohort 2, respectively. Three of the six patients who received 5 10 9 cells showed tumor response, while three patients developed early-onset cytokine release syndrome (CRS). One of the patients developed a grade 3 lung injury associated with the infiltration of the TCR-T cells. No siRNA-related adverse events other than CRS were observed. Cytokines including interleukin 6 I and monocyte chemotactic protein-1/chemokine (C-C motif) ligand (CCL2)increased in the sera of patients with CRS. In vitro analysis showed these cytokines were not secreted from the T cells infused. A significant fraction of the manufactured T cells in patients with CRS was found to express either CD244, CD39, or both at high levels. CONCLUSIONS: The trial showed that endogenous TCR-silenced and affinity-enhanced NY-ESO-1 TCR-T cells were safely administered except for grade 3 lung injury. The TCR-T cell infusion exhibited significant tumor response and early-onset CRS in patients with tumors that express NY-ESO-1 at high levels. The differentiation properties of the manufactured T cells may be prognostic for TCR-T-related CRS. TRIAL REGISTRATION NUMBER: NCT02366546.
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