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在HCT116球体模型中,低密度脂蛋白平衡T细胞代谢并增强对抗PD-1阻断的反应。

Low-density lipoprotein balances T cell metabolism and enhances response to anti-PD-1 blockade in a HCT116 spheroid model.

作者信息

Babl Nathalie, Hofbauer Joshua, Matos Carina, Voll Florian, Menevse Ayse Nur, Rechenmacher Michael, Mair Ruth, Beckhove Philipp, Herr Wolfgang, Siska Peter J, Renner Kathrin, Kreutz Marina, Schnell Annette

机构信息

Department of Internal Medicine III, University Hospital Regensburg, Regensburg, Germany.

Division of Interventional Immunology, Leibniz Institute for Immunotherapy (LIT), Regensburg, Germany.

出版信息

Front Oncol. 2023 Jan 27;13:1107484. doi: 10.3389/fonc.2023.1107484. eCollection 2023.

Abstract

INTRODUCTION

The discovery of immune checkpoints and the development of their specific inhibitors was acclaimed as a major breakthrough in cancer therapy. However, only a limited patient cohort shows sufficient response to therapy. Hence, there is a need for identifying new checkpoints and predictive biomarkers with the objective of overcoming immune escape and resistance to treatment. Having been associated with both, treatment response and failure, LDL seems to be a double-edged sword in anti-PD1 immunotherapy. Being embedded into complex metabolic conditions, the impact of LDL on distinct immune cells has not been sufficiently addressed. Revealing the effects of LDL on T cell performance in tumor immunity may enable individual treatment adjustments in order to enhance the response to routinely administered immunotherapies in different patient populations. The object of this work was to investigate the effect of LDL on T cell activation and tumor immunity .

METHODS

Experiments were performed with different LDL dosages (LDL = 50 μg/ml and LDL = 200 μg/ml) referring to medium control. T cell phenotype, cytokines and metabolism were analyzed. The functional relevance of our findings was studied in a HCT116 spheroid model in the context of anti-PD-1 blockade.

RESULTS

The key points of our findings showed that LDL skewed the CD4 T cell subset into a central memory-like phenotype, enhanced the expression of the co-stimulatory marker CD154 (CD40L) and significantly reduced secretion of IL-10. The exhaustion markers PD-1 and LAG-3 were downregulated on both T cell subsets and phenotypical changes were associated with a balanced T cell metabolism, in particular with a significant decrease of reactive oxygen species (ROS). T cell transfer into a HCT116 spheroid model resulted in a significant reduction of the spheroid viability in presence of an anti-PD-1 antibody combined with LDL.

DISCUSSION

Further research needs to be conducted to fully understand the impact of LDL on T cells in tumor immunity and moreover, to also unravel LDL effects on other lymphocytes and myeloid cells for improving anti-PD-1 immunotherapy. The reason for improved response might be a resilient, less exhausted phenotype with balanced ROS levels.

摘要

引言

免疫检查点的发现及其特异性抑制剂的开发被誉为癌症治疗的一项重大突破。然而,只有有限的患者群体对治疗表现出足够的反应。因此,需要识别新的检查点和预测性生物标志物,以克服免疫逃逸和治疗耐药性。低密度脂蛋白(LDL)与治疗反应和失败均有关联,在抗程序性死亡蛋白1(PD1)免疫治疗中似乎是一把双刃剑。由于LDL处于复杂的代谢环境中,其对不同免疫细胞的影响尚未得到充分研究。揭示LDL在肿瘤免疫中对T细胞性能的影响,可能有助于进行个体化治疗调整,以增强不同患者群体对常规免疫治疗的反应。本研究的目的是探讨LDL对T细胞活化和肿瘤免疫的影响。

方法

以培养基作为对照,使用不同剂量的LDL(LDL = 50 μg/ml和LDL = 200 μg/ml)进行实验。分析T细胞表型、细胞因子和代谢情况。在抗PD - 1阻断的背景下,于HCT116球体模型中研究我们研究结果的功能相关性。

结果

我们研究结果的关键点表明,LDL使CD4 T细胞亚群偏向中央记忆样表型,增强共刺激标志物CD154(CD40L)的表达,并显著减少白细胞介素10的分泌。两种T细胞亚群上的耗竭标志物PD - 1和淋巴细胞活化基因3(LAG - 3)均下调,表型变化与平衡的T细胞代谢相关,特别是活性氧(ROS)显著减少。将T细胞转移至HCT116球体模型中,在抗PD - 1抗体联合LDL存在的情况下,球体活力显著降低。

讨论

需要进一步开展研究,以全面了解LDL在肿瘤免疫中对T细胞的影响,此外,还需阐明LDL对其他淋巴细胞和髓样细胞的作用,以改善抗PD - 1免疫治疗。反应改善的原因可能是具有平衡ROS水平的弹性、耗竭程度较低的表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b58e/9911890/9732a0a5bd01/fonc-13-1107484-g001.jpg

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