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质子相比光子免疫放疗实现了更优越的抗肿瘤免疫应答,并被纳米放射增强剂 NBTXR3 放大

英文原题:Superior antitumor immune response achieved with proton over photon immunoradiotherapy is amplified by the nanoradioenhancer NBTXR3.

查看英文原题

Superior antitumor immune response achieved with proton over photon immunoradiotherapy is amplified by the nanoradioenhancer NBTXR3.

PubMed 2024/10/01(内容时间) J Nanobiotechnology Q1 · IF 15(JCR 2025)

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中文摘要

近期研究提示,免疫放疗(IRT)将光子放疗(XRT)或质子放疗(PRT)与免疫检查点阻断联合,可增强全身肿瘤控制。然而,XRT与PRT在IRT中的疗效比较仍研究不足。为解决这一问题,我们在小鼠αPD1耐药肺癌(344SQR)中比较了XRT + αPD1与PRT + αPD1的结局。

我们还评估了纳米颗粒放射增强剂NBTXR3对XRT + αPD1和PRT + αPD1肿瘤控制的影响,并使用单细胞RNA测序(scRNAseq)检查了肿瘤免疫微环境。

此外,将经NBTXR3 + PRT + αPD1治愈的小鼠用三种肺癌细胞系再次攻击,以评估记忆抗肿瘤免疫。与XRT + αPD1相比,PRT + αPD1显示出更优的局部肿瘤控制和远隔效应。NBTXR3 + PRT + αPD1在肿瘤控制方面显著优于NBTXR3 + XRT + αPD1,促进更多抗肿瘤淋巴细胞浸润至受照射肿瘤。与NBTXR3 + XRT + αPD1相比,接受NBTXR3 + PRT + αPD1治疗的未照射肿瘤中有更多NKT细胞、CD4 T细胞和B细胞,Tregs更少。与NBTXR3 + XRT + αPD1相比,NBTXR3 + PRT + αPD1还刺激淋巴细胞中IFN-γ、GzmB和Nkg7更高表达,降低TGF-β通路,并增加肿瘤坏死因子α表达。

此外,NBTXR3 + PRT + αPD1在受照射和未照射肿瘤中均导致更强的M1巨噬细胞极化。通过NBTXR3 + PRT + αPD1实现缓解的小鼠表现出强健的记忆免疫反应,有效抑制来自三种不同肺癌细胞系的后续肿瘤生长。质子IRT联合NBTXR3在治疗αPD1耐药肺癌方面,相比光子治疗提供了更高的肿瘤控制率和生存率,表明其作为一种强效全身性治疗的潜力。

展开英文摘要原文

Recent findings suggest that immunoradiotherapy (IRT), combining photon radiotherapy (XRT) or proton radiotherapy (PRT) with immune checkpoint blockade, can enhance systemic tumor control.

However, the comparative efficacy of XRT and PRT in IRT remains understudied. To address this, we compared outcomes between XRT + αPD1 and PRT + αPD1 in murine αPD1-resistant lung cancer (344SQR).

We also assessed the impact of the nanoparticle radioenhancer NBTXR3 on both XRT + αPD1 and PRT + αPD1 for tumor control and examined the tumor immune microenvironment using single-cell RNA sequencing (scRNAseq).

Additionally, mice cured by NBTXR3 + PRT + αPD1 were rechallenged with three lung cancer cell lines to evaluate memory antitumor immunity. PRT + αPD1 showed superior local tumor control and abscopal effects compared to XRT + αPD1. NBTXR3 + PRT + αPD1 significantly outperformed NBTXR3 + XRT + αPD1 in tumor control, promoting greater infiltration of antitumor lymphocytes into irradiated tumors.

Unirradiated tumors treated with NBTXR3 + PRT + αPD1 had more NKT cells, CD4 T cells, and B cells, with fewer Tregs, than those treated with NBTXR3 + XRT + αPD1. NBTXR3 + PRT + αPD1 also stimulated higher expression of IFN-γ, GzmB, and Nkg7 in lymphocytes, reduced the TGF-β pathway, and increased tumor necrosis factor alpha expression compared to NBTXR3 + XRT + αPD1.

Moreover, NBTXR3 + PRT + αPD1 resulted in greater M1 macrophage polarization in both irradiated and unirradiated tumors. Mice achieving remission through NBTXR3 + PRT + αPD1 exhibited a robust memory immune response, effectively inhibiting growth of subsequent tumors from three distinct lung cancer cell lines. Proton IRT combined with NBTXR3 offers enhanced tumor control and survival rates over photon-based treatments in managing αPD1-resistant lung cancer, indicating its potential as a potent systemic therapy.

论文信息

作者
Hu Y、Paris S、Sahoo N、Wang Q、Wang Q、Barsoumian HB、Huang A、Da Silva J
第一作者单位
Department of Radiation Oncology, The University of Texas MD Anderson Cancer Center, 6565 MD Anderson Blvd, Houston, TX, 77030, USA.United States
通讯作者单位
Department of Radiation Oncology, The University of Texas MD Anderson Cancer Center, 6565 MD Anderson Blvd, Houston, TX, 77030, USA. Jwelsh@mdanderson.org.United States
期刊
Journal of nanobiotechnology2024 Oct 1
原文标识
PubMed 39354474 · DOI 10.1186/s12951-024-02855-0