研究概要
巨噬细胞是肿瘤微环境(TME)的核心调控者,在实体癌中塑造免疫抑制、血管生成、代谢和治疗耐药。
中文摘要
巨噬细胞是肿瘤微环境(TME)的核心调控者,在实体瘤中塑造免疫抑制、血管生成、代谢及治疗耐药。早期策略试图清除肿瘤相关巨噬细胞(TAM)或阻断单核细胞募集,但疗效有限及代偿机制的出现表明,需要的是功能性重编程而非清除。病毒载体、CRISPR-Cas基因组编辑及基于RNA的递送平台的最新进展使巨噬细胞的精准基因修饰成为可能,由此催生了嵌合抗原受体巨噬细胞(CAR-M)及相关工程化产品。除抗原靶向之外,有效的巨噬细胞工程化还需要稳定促炎表型、抵抗肿瘤诱导的再极化、代谢强化以及整合检查点调控通路。本综述综合了当前基于DNA、mRNA和siRNA平台的策略,突出连接TAM重编程与CAR-M开发的趋同设计原则。我们讨论了重塑吞噬检查点、代谢与转录稳定化、细胞因子增强及合成受体结构,强调组合式与情境感知工程化,同时提出新的候选基因靶点。因此,工程化巨噬细胞正从简单的效应细胞演变为可编程的免疫协调者,能够将免疫“冷”肿瘤转化为炎症性、治疗应答性微环境。
展开英文摘要原文
Macrophages are central regulators of the tumor microenvironment (TME), shaping immune suppression, angiogenesis, metabolism, and therapeutic resistance in solid cancers. While early strategies sought to deplete tumor-associated macrophages (TAMs) or block monocyte recruitment, limited efficacy and compensatory mechanisms revealed the need for functional reprogramming rather than elimination. Recent advances in viral vectors, CRISPR-Cas genome editing, and RNA-based delivery platforms have enabled precise genetic modification of macrophages, giving rise to chimeric antigen receptor macrophages (CAR-Ms) and related engineered products. Beyond antigen targeting, effective macrophage engineering requires stabilization of pro-inflammatory identity, resistance to tumor-induced repolarization, metabolic reinforcement, and integration of checkpoint modulation pathways. This review synthesizes current strategies across DNA, mRNA, and siRNA-based platforms, highlighting convergent design principles that connect TAM reprogramming with CAR-M development. We discuss reshaping phagocytosis checkpoints, metabolic and transcriptional stabilization, cytokine augmentation, and synthetic receptor architecture, emphasizing combinatorial and context-aware engineering, while proposing new candidate gene targets. Engineered macrophages are thus evolving from simple effector cells into programmable immune coordinators capable of converting immunologically "cold" tumors into inflamed, therapy-responsive niches.
论文信息
- 作者
- Nilova O、Zajakina A
- 单位
- National Institute of Research and Innovation, Ratsupites 1 K.1, 1067 Riga, Latvia.Latvia
- 文献类型
- 综述
- 期刊
- Molecular therapy. Nucleic acids2026 Sep 8