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在利妥昔单抗靶向 B 细胞治疗期间,肿瘤相关 EBV 特异性 T 细胞驱动的细胞介导免疫增强

英文原题:Reinforcement of cell-mediated immunity driven by tumor-associated Epstein-Barr virus (EBV)-specific T cells during targeted B-cell therapy with rituximab.

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Reinforcement of cell-mediated immunity driven by tumor-associated Epstein-Barr virus (EBV)-specific T cells during targeted B-cell therapy with rituximab.

PubMed 2023/03/24(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

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研究概要

在这项研究中,我们首次表明,利妥昔单抗介导的 EBV 感染肿瘤细胞裂解可通过交叉呈递 EBV 来源抗原,有效增强 EBV 特异性内源性效应记忆 T 细胞应答。这促进了抗病毒细胞免疫的恢复,并为改善 CD20+ EBV 相关恶性肿瘤的治疗提供了一种有效机制。这种效应也可能适用于其他治疗性抗体,甚至适用于治疗性应用的未经修饰或经基因修饰的 T 细胞,这些 T 细胞在特异性细胞裂解后导致肿瘤抗原释放。

研究思路结论见上方概要

在免疫功能低下的患者中,EBV感染或再激活与发病率和死亡率增加相关,包括B细胞淋巴瘤的发生。一线治疗包括减少免疫抑制和给予利妥昔单抗(抗CD20抗体)。此外,针对潜伏EBV蛋白的EBV特异性T细胞的存在对于控制EBV相关疾病至关重要。因此,除了有效的治疗策略外,对高风险患者T细胞的适当监测对于改善临床结局具有重要意义。在本研究中,我们假设利妥昔单抗介导的恶性EBV感染B细胞裂解导致EBV相关抗原的释放和呈递,并导致EBV特异性效应记忆T细胞反应的增强。

EBV 感染的 B 淋巴母细胞样细胞系(B-LCL)被用作 EBV 相关淋巴瘤的模型,其能够表达潜伏期 II 和 III 期 EBV 蛋白,这些蛋白存在于所有已知的 EBV 阳性恶性细胞中。给予利妥昔单抗以获得含有 EBV 抗原的细胞裂解物(AC EBV)。通过体外 T 细胞免疫测定,研究了 B-LCL 对 EBV 抗原的交叉呈递效率,并与专业抗原呈递细胞(APC)如树突状细胞(DC)和 B 细胞的交叉呈递进行了比较。对肿瘤反应性 EBV 特异性 T 细胞进行了深入的 T 细胞分析,包括活化、耗竭、靶细胞杀伤和细胞因子谱,通过干扰素-γ(IFN-γ)EliSpot 测定、多色流式细胞术和多重分析评估了 T 细胞分化和活化标志物以及调节性和细胞毒性分子的表达。

通过抑制交叉呈递通路的某些部分,B-LCL被证明主要通过主要组织相容性复合体(MHC)I类分子交叉呈递所获取的外源性AC EBV衍生抗原。该机制与DCs和B细胞的机制相当,并导致了强烈的EBV特异性CD8+细胞毒性T细胞反应。用负载AC EBV的APCs刺激还导致CD4+辅助性T细胞的激活,表明较长的肽片段通过经典MHC II类通路被加工。此外,还发现B-LCL能够通过内吞作用从周围细胞摄取外源性抗原,从而诱导EBV特异性T细胞反应,尽管其程度远低于AC EBV衍生抗原的交叉呈递。在用负载AC EBV的APCs刺激的EBV特异性T细胞上检测到激活标志物CD25、CD71和CD137的表达增加,这些T细胞表现出高增殖和细胞毒性能力,表现为EBV特异性频率增强以及细胞毒性效应分子(如IFN-γ、颗粒酶B、穿孔素和颗粒溶素)分泌水平增加。调节蛋白PD-1和Tim-3的表达被诱导,但对效应T细胞功能没有负面影响。

展开英文摘要原文

EBV-infected B lymphoblastoid cell lines (B-LCLs) were used as a model for EBV-associated lymphomas, which are capable of expressing latency stage II and III EBV proteins present in all known EBV-positive malignant cells. Rituximab was administered to obtain cell lysates containing EBV antigens (AC EBV ). Efficiency of cross-presentation of EBV-antigen by B-LCLs compared to cross-presentation by professional antigen presenting cells (APCs) such as dendritic cells (DCs) and B cells was investigated by in vitro T-cell immunoassays. Deep T-cell profiling of the tumor-reactive EBV-specific T cells in terms of activation, exhaustion, target cell killing, and cytokine profile was performed, assessing the expression of T-cell differentiation and activation markers as well as regulatory and cytotoxic molecules by interferon-γ (IFN-γ) EliSpot assay, multicolor flow cytometry, and multiplex analyses.

By inhibiting parts of the cross-presentation pathway, B-LCLs were shown to cross-present obtained exogenous AC EBV -derived antigens mainly through major histocompatibility complex (MHC) class I molecules. This mechanism is comparable to that for DCs and B cells and resulted in a strong EBV-specific CD8 + cytotoxic T-cell response. Stimulation with AC EBV -loaded APCs also led to the activation of CD4 + T helper cells, suggesting that longer peptide fragments are processed via the classical MHC class II pathway. In addition, B-LCLs were also found to be able to take up exogenous antigens from surrounding cells by endocytosis leading to induction of EBV-specific T-cell responses although to a much lesser extent than cross-presentation of AC EBV -derived antigens. Increased expression of activation markers CD25, CD71 and CD137 were detected on EBV-specific T cells stimulated with AC EBV -loaded APCs, which showed high proliferative and cytotoxic capacity as indicated by enhanced EBV-specific frequencies and increased secretion levels of cytotoxic effector molecules (e.g. IFN-γ, granzyme B, perforin, and granulysin). Expression of the regulatory proteins PD-1 and Tim-3 was induced but had no negative impact on effector T-cell functions.

In this study, we showed for the first time that rituximab-mediated lysis of EBV-infected tumor cells can efficiently boost EBV-specific endogenous effector memory T-cell responses through cross-presentation of EBV-derived antigens. This promotes the restoration of antiviral cellular immunity and presents an efficient mechanism to improve the treatment of CD20 + EBV-associated malignancies. This effect is also conceivable for other therapeutic antibodies or even for therapeutically applied unmodified or genetically modified T cells, which lead to the release of tumor antigens after specific cell lysis.

论文信息

作者
Tischer-Zimmermann S、Bonifacius A、Santamorena MM、Mausberg P、Stoll S、Döring M、Kalinke U、Blasczyk R
单位
Institute of Transfusion Medicine and Transplant Engineering, Hannover Medical School, Hannover, Germany.Germany
文献类型
非美国政府资助研究
期刊
Frontiers in immunology2023
原文标识
PubMed 37033971 · DOI 10.3389/fimmu.2023.878953