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光热普鲁士蓝纳米颗粒产生强效多靶向肿瘤特异性 T 细胞作为过继细胞疗法

英文原题:Photothermal Prussian blue nanoparticles generate potent multi-targeted tumor-specific T cells as an adoptive cell therapy.

PubMed 2023/12/22(内容时间) Bioeng Transl Med Q1 · IF 6.2(JCR 2025)

研究概要

基于普鲁士蓝纳米颗粒的光热治疗(PBNP-PTT)是一种有效的肿瘤治疗方法,能够引发抗肿瘤免疫反应。

中文摘要

基于普鲁士蓝纳米颗粒的光热疗法(PBNP-PTT)是一种有效的肿瘤治疗方法,能够引发抗肿瘤免疫反应。受PBNP-PTT增强内源性免疫反应能力的启发,我们最近证明PBNP-PTT可在体外用于生成针对胶质母细胞瘤(GBM)细胞系的肿瘤特异性T细胞,作为过继性T细胞疗法(ATCT)。在本研究中,我们进一步开发了这一有前景的T细胞生成平台。首先,我们评估了使用PBNP-PTT生成的T细胞的表型和功能。我们观察到,PBNP-PTT促进了来自健康供者PBMC的CD8+ T细胞扩增,这些T细胞在响应靶向U87细胞时分泌IFNγ和TNFα并上调CD107a,表明存在特异性抗肿瘤T细胞活化和脱颗粒。此外,与U87细胞共培养后,CD8+效应和效应记忆T细胞群体显著扩增,与肿瘤特异性效应反应一致。在体内原位植入的U87 GBM肿瘤中,与用PBS、非特异性T细胞或从裂解U87细胞扩增的T细胞治疗的小鼠中0%的存活率相比,PBNP-PTT衍生的T细胞有效减少了U87肿瘤生长,并在第100天使>80%的荷瘤小鼠获得长期生存,证明该ATCT平台具有增强的抗肿瘤疗效。最后,我们通过生成靶向髓母细胞瘤(D556)、乳腺癌(MDA-MB-231)、神经母细胞瘤(SH-SY5Y)和急性单核细胞白血病(THP-1)细胞系的T细胞,测试了该方法的普适性。与对照相比,所得T细胞分泌IFNγ并发挥增强的肿瘤特异性细胞溶解功能,证明PBNP-PTT在生成用于ATCT的肿瘤特异性T细胞方面具有多功能性。

展开英文摘要原文

Prussian blue nanoparticle-based photothermal therapy (PBNP-PTT) is an effective tumor treatment capable of eliciting an antitumor immune response. Motivated by the ability of PBNP-PTT to potentiate endogenous immune responses, we recently demonstrated that PBNP-PTT could be used ex vivo to generate tumor-specific T cells against glioblastoma (GBM) cell lines as an adoptive T cell therapy (ATCT). In this study, we further developed this promising T cell development platform. First, we assessed the phenotype and function of T cells generated using PBNP-PTT. We observed that PBNP-PTT facilitated CD8+ T cell expansion from healthy donor PBMCs that secreted IFNγ and TNFα and upregulated CD107a in response to engagement with target U87 cells, suggesting specific antitumor T cell activation and degranulation. Further, CD8+ effector and effector memory T cell populations significantly expanded after co-culture with U87 cells, consistent with tumor-specific effector responses. In orthotopically implanted U87 GBM tumors in vivo, PBNP-PTT-derived T cells effectively reduced U87 tumor growth and generated long-term survival in >80% of tumor-bearing mice by Day 100, compared to 0% of mice treated with PBS, non-specific T cells, or T cells expanded from lysed U87 cells, demonstrating an enhanced antitumor efficacy of this ATCT platform. Finally, we tested the generalizability of our approach by generating T cells targeting medulloblastoma (D556), breast cancer (MDA-MB-231), neuroblastoma (SH-SY5Y), and acute monocytic leukemia (THP-1) cell lines. The resulting T cells secreted IFNγ and exerted increased tumor-specific cytolytic function relative to controls, demonstrating the versatility of PBNP-PTT in generating tumor-specific T cells for ATCT.

论文信息

作者
Sweeney EE、Sekhri P、Muniraj N、Chen J、Feng S、Terao J、Chin SJ、Schmidt DE
第一作者单位
Department of Biochemistry & Molecular Medicine, School of Medicine and Health Sciences George Washington University Washington District of Columbia USA.United States
通讯作者单位
Center for Cancer and Immunology Research Children's National Hospital Washington District of Columbia USA.United States
期刊
Bioengineering & translational medicine2024 May
原文标识
PubMed 38818122 · DOI 10.1002/btm2.10639