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探索髓源性抑制细胞中糖酵解调节在免疫治疗和疾病管理中的潜力。

Exploring the Potential of Glycolytic Modulation in Myeloid-Derived Suppressor Cells for Immunotherapy and Disease Management.

作者信息

Kim Jisu, Choi Jee Yeon, Min Hyeyoung, Hwang Kwang Woo

机构信息

College of Pharmacy, Chung-Ang University, Seoul 06974, Korea.

出版信息

Immune Netw. 2024 Jun 24;24(3):e26. doi: 10.4110/in.2024.24.e26. eCollection 2024 Jun.


DOI:10.4110/in.2024.24.e26
PMID:38974210
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11224668/
Abstract

Recent advancements in various technologies have shed light on the critical role of metabolism in immune cells, paving the way for innovative disease treatment strategies through immunometabolism modulation. This review emphasizes the glucose metabolism of myeloid-derived suppressor cells (MDSCs), an emerging pivotal immunosuppressive factor especially within the tumor microenvironment. MDSCs, an immature and heterogeneous myeloid cell population, act as a double-edged sword by exacerbating tumors or mitigating inflammatory diseases through their immune-suppressive functions. Numerous recent studies have centered on glycolysis of MDSC, investigating the regulation of altered glycolytic pathways to manage diseases. However, the specific changes in MDSC glycolysis and their exact functions continue to be areas of ongoing discussion yet. In this paper, we review a range of current findings, including the latest research on the alteration of glycolysis in MDSCs, the consequential functional alterations in these cells, and the outcomes of attempts to modulate MDSC functions by regulating glycolysis. Ultimately, we will provide insights into whether these research efforts could be translated into clinical applications.

摘要

各种技术的最新进展揭示了代谢在免疫细胞中的关键作用,为通过免疫代谢调节制定创新的疾病治疗策略铺平了道路。本综述着重探讨髓系来源的抑制细胞(MDSC)的糖代谢,MDSC是一种新兴的关键免疫抑制因子,尤其在肿瘤微环境中发挥作用。MDSC是一种不成熟且异质性的髓系细胞群体,通过其免疫抑制功能,在加剧肿瘤或减轻炎症性疾病方面起着双刃剑的作用。最近的许多研究都集中在MDSC的糖酵解上,研究改变糖酵解途径的调控以治疗疾病。然而,MDSC糖酵解的具体变化及其确切功能仍是持续讨论的领域。在本文中,我们综述了一系列当前的研究结果,包括关于MDSC中糖酵解改变的最新研究、这些细胞随之发生的功能改变,以及通过调节糖酵解来调节MDSC功能的尝试结果。最终,我们将深入探讨这些研究成果是否能够转化为临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e79c/11224668/b344cd592272/in-24-e26-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e79c/11224668/b344cd592272/in-24-e26-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e79c/11224668/b344cd592272/in-24-e26-g001.jpg

相似文献

[1]
Exploring the Potential of Glycolytic Modulation in Myeloid-Derived Suppressor Cells for Immunotherapy and Disease Management.

Immune Netw. 2024-6-24

[2]
Glycolysis regulates the expansion of myeloid-derived suppressor cells in tumor-bearing hosts through prevention of ROS-mediated apoptosis.

Cell Death Dis. 2017-5-11

[3]
mTOR-mediated glycolysis contributes to the enhanced suppressive function of murine tumor-infiltrating monocytic myeloid-derived suppressor cells.

Cancer Immunol Immunother. 2018-7-2

[4]
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[5]
mTOR signaling disruption from myeloid-derived suppressive cells protects against immune-mediated hepatic injury through the HIF1α-dependent glycolytic pathway.

J Leukoc Biol. 2016-7-26

[6]
Metabolic Regulation of Myeloid-Derived Suppressor Cell Function in Cancer.

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[7]
Glycolysis inhibition ameliorates brain injury after ischemic stroke by promoting the function of myeloid-derived suppressor cells.

Pharmacol Res. 2022-5

[8]
A Complex Metabolic Network Confers Immunosuppressive Functions to Myeloid-Derived Suppressor Cells (MDSCs) within the Tumour Microenvironment.

Cells. 2021-10-9

[9]
Myeloid-derived suppressor cells: The green light for myeloma immune escape.

Blood Rev. 2016-9

[10]
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J Mol Med (Berl). 2019-5-25

引用本文的文献

[1]
Impact of lactate on immune cell function in the tumor microenvironment: mechanisms and therapeutic perspectives.

Front Immunol. 2025-3-26

[2]
Targeting myeloid-derived suppressor cells in the tumor microenvironment: potential therapeutic approaches for osteosarcoma.

Oncol Res. 2025-2-28

[3]
Modulation of Immune Responses by Metabolic Reprogramming: The Key Role of Immunometabolism.

Immune Netw. 2025-2-24

[4]
Regulation of Ferroptosis in Cancer and Immune Cells.

Immune Netw. 2025-2-11

[5]
Metabolic crossroads: unravelling immune cell dynamics in gastrointestinal cancer drug resistance.

Cancer Drug Resist. 2025-2-8

[6]
Targeting ROS-sensing Nrf2 potentiates anti-tumor immunity of intratumoral CD8 T and CAR-T cells.

Mol Ther. 2024-11-6

本文引用的文献

[1]
Diverse functions of myeloid-derived suppressor cells in autoimmune diseases.

Immunol Res. 2024-2

[2]
Myeloid-derived suppressor cells impair CD4+ T cell responses during chronic Staphylococcus aureus infection via lactate metabolism.

Cell Mol Life Sci. 2023-7-22

[3]
G-MDSC-derived exosomes mediate the differentiation of M-MDSC into M2 macrophages promoting colitis-to-cancer transition.

J Immunother Cancer. 2023-6

[4]
Regulatory Mechanism of M1/M2 Macrophage Polarization in the Development of Autoimmune Diseases.

Mediators Inflamm. 2023

[5]
M-MDSC generation from mouse bone marrow with IL-3 reveals high expression and functional activity of arginase 1.

Front Immunol. 2023

[6]
Discovery of Myeloid-Derived Suppressor Cell-Specific Metabolism by Metabolomic and Lipidomic Profiling.

Metabolites. 2023-3-27

[7]
Inhibition of hexokinase 2 with 3-BrPA promotes MDSCs differentiation and immunosuppressive function.

Cell Immunol. 2023-3

[8]
FcγRIIIA activation-mediated up-regulation of glycolysis alters MDSCs modulation in CD4 T cell subsets of Sjögren syndrome.

Cell Death Dis. 2023-2-6

[9]
Metabolites as signalling molecules.

Nat Rev Mol Cell Biol. 2023-5

[10]
3-Bromopyruvate inhibits pancreatic tumor growth by stalling glycolysis, and dismantling mitochondria in a syngeneic mouse model.

Am J Cancer Res. 2022-11-15

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