Sep 2026· Signal Transduction and Targeted Therapy· Vol 11· 0 citations· 364 references
Medicine
TL;DR
This review systematically summarizes the classification and identification of myeloid-derived suppressor cells, their biological properties in the context of tumors and autoimmune diseases, genetic and signaling pathway regulatory mechanisms, differentiation skewing in the TME, and cellular interactions with the TME.
Abstract
Despite the remarkable progress in cancer treatment, drug resistance and immune escape still severely limit clinical efficacy, largely due to tumor-induced immunosuppression. The main driver of this suppressive environment is myeloid-derived suppressor cells (MDSCs). Tumor-derived cytokines and chemokines can induce the expansion, activation, and recruitment of MDSCs, enabling them to effectively protect tumor cells from being recognized and cleared by immune cells by establishing an immunosuppressive barrier in peripheral lymphoid organs and the tumor microenvironment (TME). Upon arrival in the TME, MDSCs may alter their gene expression patterns through metabolic reprogramming, undergo skewed differentiation toward tumor-associated macrophages (TAMs) and tumor-associated neutrophils (TANs), and initiate immunosuppression to promote tumor growth. Furthermore, they can shape an environment conducive to tumor development and metastasis through various nonimmune mechanisms. Currently, the overall understanding of the systematic integration of MDSC biological properties into therapeutic strategies remains underdeveloped. Therefore, in this review, we systematically summarize: (i) the classification and identification of MDSCs; (ii) their biological properties in the context of tumors and autoimmune diseases; (iii) tumor-promoting effects; (iv) genetic and signaling pathway regulatory mechanisms; (v) differentiation skewing in the TME; and (vi) cellular interactions with the TME. We also propose the clinical potential of MDSC-based predictive and prognostic biomarkers and outline strategies for targeting MDSCs for oncotherapy.
Together, current evidence indicates that MDSCs represent context-dependent therapeutic nodes, while functional reprogramming, spatially resolved profiling, and patient stratification may improve immunotherapy outcomes.
Lisichen Zhu, Hui Liu, Sihan Zhang et al.· Cancer Letters· 1 citation
Targeting the mechanisms regulating Treg recruitment, stability, or suppressive function may represent a promising strategy to enhance the efficacy of immunotherapies including Bacillus Calmette–Guérin therapy.
Yusuke Fukiage, Nodoka Okubo, M. Taga et al.· Frontiers in Molecular Biosc...· 0 citations
Myeloid-derived suppressor cells (MDSCs) play an important role in colorectal cancer progression by contributing to the evasion of the antitumor immune response, treatment resistance, and metastasis formation. This integrative review aimed to analyze the mechanisms by which MDSCs promote the suppression of the antitumo...
Maria Fernanda Imperio Pereira, Emilly Paschoal de Oliveira, Valéria de Lima Kaminski· Research, Society and Develo...· 0 citations
This review synthesizes newly emerging mechanisms of TAM-mediated immunotherapy resistance, including spatial heterogeneity, stromal-vascular remodeling, and exosomal crosstalk, with the latest clinical advances in macrophage-directed immunotherapies.
Xiao-Feng Cui, Xue-Rui Wang, Nan Jiang et al.· Frontiers in Immunology· 0 citations
The mechanisms governing MDSCs interactions within the myeloma TME are elucidated, potential therapeutic strategies targeting MDSCs are discussed, and a rational framework for integrating MDSC-directed approaches with current MM therapies and immunotherapy is outlined.
Jing-Jing Wen, Qiao-Lin Zhou, Jing Yue et al.· Frontiers in Immunology· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.