Polarization of Tumor Cells and Tumor-Associated Macrophages: Molecular Mechanisms and Therapeutic Targets

IF 10.7 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
MedComm Pub Date : 2025-09-01 DOI:10.1002/mco2.70372
Guohao Wei, Bin Li, Mengyang Huang, Mengyao Lv, Zihui Liang, Chuandong Zhu, Lilin Ge, Jing Chen
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Abstract

Tumor-associated macrophages (TAMs) are prominent constituents of solid tumors, and their prevalence is often associated with poor clinical outcomes. These highly adaptable immune cells undergo dynamic functional changes within the immunosuppressive tumor microenvironment (TME), engaging in reciprocal interactions with malignant cells. This bidirectional communication facilitates concurrent phenotypic transformation: tumor cells shift toward invasive mesenchymal states, whereas TAMs develop immunosuppressive, pro-tumorigenic traits. Increasing evidence highlights metabolic reprogramming, characterized by dysregulation of lipid metabolism, amino acid utilization, and glycolytic activity, as the fundamental molecular basis orchestrating this pathological symbiosis. However, a comprehensive understanding of how metabolic reprogramming specifically coordinates the mutual polarization of tumor cells and TAMs is lacking. This review thoroughly examines the molecular mechanisms governing this co-polarization process, detailing critical transcriptional regulators, essential signaling pathways, and the maintenance of adaptive phenotypes within the TME. Furthermore, this review critically assesses promising therapeutic strategies aimed at disrupting this alliance, including the use of metabolically targeted agents, engineered chimeric antigen receptor macrophages, and TAM-selective nanoparticle delivery systems. These insights provide a crucial foundation for the development of next-generation cancer immunotherapies focused on reprogramming pathological polarization dynamics to overcome treatment resistance and improve clinical outcomes.

Abstract Image

肿瘤细胞和肿瘤相关巨噬细胞的极化:分子机制和治疗靶点
肿瘤相关巨噬细胞(tam)是实体瘤的重要组成部分,其患病率通常与不良临床结果相关。这些高度适应性的免疫细胞在免疫抑制肿瘤微环境(TME)中发生动态功能变化,与恶性细胞相互作用。这种双向交流促进了同时发生的表型转化:肿瘤细胞向侵袭性间质状态转移,而tam则产生免疫抑制、促肿瘤特性。越来越多的证据强调代谢重编程,以脂质代谢、氨基酸利用和糖酵解活性失调为特征,是协调这种病理共生的基本分子基础。然而,对代谢重编程如何具体协调肿瘤细胞和tam的相互极化还缺乏全面的了解。这篇综述深入研究了控制这种共极化过程的分子机制,详细介绍了关键的转录调节因子、必要的信号通路以及TME中适应性表型的维持。此外,本综述批判性地评估了旨在破坏这种联盟的有希望的治疗策略,包括使用代谢靶向药物、工程嵌合抗原受体巨噬细胞和tam选择性纳米颗粒递送系统。这些见解为下一代癌症免疫疗法的发展提供了重要的基础,这些疗法的重点是重新编程病理极化动力学,以克服治疗耐药性并改善临床结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.70
自引率
0.00%
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0
审稿时长
10 weeks
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