研究概要
基于免疫细胞的疗法通过将活细胞转化为能够识别、浸润和清除病变组织的治疗剂,改变了免疫肿瘤学。
中文摘要
基于免疫细胞的疗法通过将活细胞转化为能够识别、浸润和清除病变组织的治疗剂,已经改变了免疫肿瘤学。尽管 T 细胞、NK 细胞和树突状细胞平台已经带来了有意义的临床进展,但在实体瘤和慢性炎症组织中,较差的迁移和滞留,以及恶劣微环境中的功能性抑制,常常限制其疗效。巨噬细胞提供了一个互补的治疗平台,因为它们是丰富的组织驻留哨兵、专业吞噬细胞,以及局部炎症和适应性免疫的关键协调者。然而,成功的巨噬细胞免疫治疗需要解决两个核心的体内决定因素:在抑制性信号存在下仍保持治疗上有利的功能状态,以及实现稳健的、疾病选择性的定位和参与。这些决定因素对应巨噬细胞的两个定义性特性(即可塑性和归巢),它们可作为核心工程调控杠杆。在此,我们综述了近期策略,这些策略(1)在疾病环境中重编程并稳定工程化巨噬细胞表型,以及(2)通过工程化识别模块增强靶向、滞留和接触依赖性功能。我们进一步重点介绍了将表型维持与改善组织靶向相结合的新兴组合设计,并讨论了将遗传性和非遗传性巨噬细胞工程方法转化为复杂疾病微环境中有效疗法的设计考量。
展开英文摘要原文
Immune cell-based therapies have transformed immuno-oncology by converting living cells into therapeutic agents able to recognize, infiltrate, and eliminate diseased tissues. While T cell, NK cell, and dendritic cell platforms have delivered meaningful clinical advances, in solid tumors and chronically inflamed tissues, poor trafficking and retention, and functional suppression within hostile microenvironments, often constrain their efficacy. Macrophages provide a complementary therapeutic platform because they are abundant tissue-resident sentinels, professional phagocytes, and key coordinators of local inflammation and adaptive immunity. However, successful macrophage immunotherapy requires solving two central in vivo determinants: preserving a therapeutically favorable functional state despite suppressive cues, and achieving robust, disease-selective localization and engagement. These determinants map onto two defining macrophage properties (i.e., plasticity and homing), which serve as central engineering levers. Here, we review recent strategies that (1) reprogram and stabilize engineered macrophage phenotypes within the disease environment, and (2) enhance targeting, retention, and contact-dependent functions through engineered recognition modules. We further highlight emerging combinatorial designs that integrate phenotype maintenance with improved tissue targeting and discuss design considerations to translate both genetic and non-genetic macrophage engineering approaches into effective therapy in complex disease microenvironments.
论文信息
- 作者
- Kim E、Park M、Kim K
- 第一作者单位
- Department of Chemical & Biochemical Engineering, Dongguk University, 30, Pildong-ro 1-gil, Jung-gu, Seoul, Republic of Korea.South Korea
- 通讯作者单位
- Department of Chemical & Biochemical Engineering, Dongguk University, 30, Pildong-ro 1-gil, Jung-gu, Seoul, Republic of Korea; Cellbastian Inc, Seoul, Republic of Korea. Electronic address: kyobum.kim@dongguk.edu.South Korea
- 文献类型
- 综述
- 期刊
- Biotechnology advances2026 Aug 24