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从 PBMCs 或脾细胞中训练出的自体细胞毒性 T 细胞用于神经母细胞瘤的免疫治疗

英文原题:Trained autologous cytotoxic T-cells derived from PBMCs or splenocytes for immunotherapy of neuroblastoma.

查看英文原题

Trained autologous cytotoxic T-cells derived from PBMCs or splenocytes for immunotherapy of neuroblastoma.

PubMed 2025/06/09(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

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研究概要

本研究提供了初步证据,支持基于 PBMC 的个体化免疫疗法对神经母细胞瘤的疗效。这些发现凸显了进一步开发该方法作为新型治疗策略的潜力,为改善儿科肿瘤学的临床结局铺平了道路。

研究思路结论见上方概要

儿童实体瘤,尤其是神经母细胞瘤,由于现有疗法疗效有限,构成重大治疗挑战。过继性免疫治疗涉及转移免疫细胞,已显示出临床前景。优化体外免疫细胞的制备对于增强肿瘤免疫至关重要。本研究介绍了一种提高自体外周血单个核细胞(PBMCs)治疗神经母细胞瘤疗效的新方法。

经IRB批准的方案用于从八名接受神经母细胞瘤活检或切除术的患者中采集肿瘤样本和PBMCs。分离原发肿瘤细胞,进行培养,并使用Phox2b和突触素染色进行表征。将自体PBMCs与经辐照的肿瘤细胞共培养,这些肿瘤细胞预先用MYC抑制剂(I-BET726、JQ1)和STING拮抗剂(C170)处理,以增强免疫原性并训练肿瘤特异性PBMCs。通过多重ELISA和NanoString Tumor Signaling profiling评估处理过的肿瘤细胞中的免疫原性和基因表达变化。通过流式细胞术、IFN-γ ELISA和IncuCyte测定评估训练后的PBMCs的表型和细胞毒性。

经过训练的PBMC主要在患者来源的细胞产品中诱导了强效的肿瘤细胞毒性。在临床前神经母细胞瘤小鼠模型中,类似训练后的脾细胞展现出强大疗效,与患者来源PBMC中的发现一致。该方法通过小分子抑制剂和辐射调控产生免疫原性肿瘤细胞,使PBMC或脾细胞能够在受控的体外条件下诱导具有细胞毒性的训练后自体肿瘤特异性T细胞。这些训练后的PBMC和脾细胞对神经母细胞瘤表现出强效细胞毒性,作为过继性细胞免疫疗法在体内具有显著治疗效果。

展开英文摘要原文

Pediatric solid tumors, particularly neuroblastoma, present significant treatment challenges due to the limited efficacy of existing therapies. Adoptive immunotherapy, which involves transferring immune cells has shown clinical promise. Optimizing the preparation of immune cells ex vivo is critical to enhancing tumor immunity. This study introduces a novel method for improving the efficacy of autologous peripheral blood mononuclear cells (PBMCs) for neuroblastoma treatment.

An IRB-approved protocol was used to collect tumor samples and PBMCs from eight patients undergoing neuroblastoma biopsy or resection. Primary tumor cells were isolated, cultured, and characterized using Phox2b and synaptophysin staining. Autologous PBMCs were co-cultured with irradiated tumor cells pre-treated with MYC inhibitors (I-BET726, JQ1) and a STING antagonist (C170) to enhance immunogenicity and train tumor-specific PBMCs. The immunogenicity and gene expression changes in treated tumor cells were assessed through multiplex ELISA and NanoString Tumor Signaling profiling. The phenotype and cytotoxicity of the trained PBMCs were evaluated by flow cytometry, IFN-γ ELISA, and IncuCyte assays.

Trained PBMCs primarily induced potent tumor cell cytotoxicity in patient-derived cellular products. In a preclinical neuroblastoma mouse model, similarly trained splenocytes demonstrated powerful efficacy, mirroring the findings in patient-derived PBMCs. This approach generates immunogenic tumor cells through modulation with small molecule inhibitors and radiation, enabling PBMCs or splenocytes to induce cytotoxic trained autologous tumor-specific T cells under controlled in vitro conditions. These trained PBMCs and splenocytes exhibit potent cytotoxicity against neuroblastoma, with significant therapeutic effects as an adoptive cellular immunotherapy in vivo .

This study provides preliminary evidence supporting the efficacy of a personalized, PBMC-based immunotherapy for neuroblastoma. These findings highlight the potential for further development of this approach as a novel treatment strategy, paving the way for improved clinical outcomes in pediatric oncology.

论文信息

作者
Wu X、Basu M、Wright SL、Li S、Petrosyan M、Nelson MV、Halpern AI、Shea D
单位
The Joseph E. Robert Jr. Center for Surgical Care and The Sheikh Zayed Institute for Pediatric Surgical Innovation, Children's National Hospital, George Washington University, Washington, DC, United States.United States
期刊
Frontiers in immunology2025
原文标识
PubMed 40552293 · DOI 10.3389/fimmu.2025.1546441