Reprogramming the immunosuppressive tumor microenvironment through nanomedicine: an immunometabolism perspective.

IF 9.7 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL EBioMedicine Pub Date : 2024-09-01 Epub Date: 2024-08-22 DOI:10.1016/j.ebiom.2024.105301
Jieyu Liu, Yinan Bai, Yinggang Li, Xiaoling Li, Kui Luo
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引用次数: 0

Abstract

Increasing evidence indicates that immunotherapy is hindered by a hostile tumor microenvironment (TME) featured with deprivation of critical nutrients and pooling of immunosuppressive metabolites. Tumor cells and immunosuppressive cells outcompete immune effector cells for essential nutrients. Meanwhile, a wide range of tumor cell-derived toxic metabolites exerts negative impacts on anti-tumor immune response, diminishing the efficacy of immunotherapy. Nanomedicine with excellent targetability offers a novel approach to improving cancer immunotherapy via metabolically reprogramming the immunosuppressive TME. Herein, we review recent strategies of enhancing immunotherapeutic effects through rewiring tumor metabolism via nanomedicine. Attention is drawn on immunometabolic tactics for immune cells and stromal cells in the TME via nanomedicine. Additionally, we discuss future directions of developing metabolism-regulating nanomedicine for precise and efficacious cancer immunotherapy.

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通过纳米药物重编程免疫抑制性肿瘤微环境:免疫代谢的视角。
越来越多的证据表明,恶劣的肿瘤微环境(TME)会阻碍免疫疗法的进行,其特点是缺乏关键营养物质和免疫抑制代谢物的聚集。肿瘤细胞和免疫抑制细胞与免疫效应细胞竞争必需的营养物质。同时,多种肿瘤细胞衍生的有毒代谢物对抗肿瘤免疫反应产生负面影响,降低了免疫疗法的疗效。具有良好靶向性的纳米药物通过对具有免疫抑制作用的TME进行代谢重编程,为改善癌症免疫疗法提供了一种新方法。在此,我们回顾了通过纳米药物重构肿瘤代谢以增强免疫治疗效果的最新策略。我们关注的是通过纳米药物对肿瘤组织和器官中的免疫细胞和基质细胞进行免疫代谢的策略。此外,我们还讨论了开发代谢调节型纳米药物以实现精确有效的癌症免疫疗法的未来方向。
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来源期刊
EBioMedicine
EBioMedicine Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
17.70
自引率
0.90%
发文量
579
审稿时长
5 weeks
期刊介绍: eBioMedicine is a comprehensive biomedical research journal that covers a wide range of studies that are relevant to human health. Our focus is on original research that explores the fundamental factors influencing human health and disease, including the discovery of new therapeutic targets and treatments, the identification of biomarkers and diagnostic tools, and the investigation and modification of disease pathways and mechanisms. We welcome studies from any biomedical discipline that contribute to our understanding of disease and aim to improve human health.
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