Macrophage-specific in vivo RNA editing promotes phagocytosis and antitumor immunity in mice

IF 15.8 1区 医学 Q1 CELL BIOLOGY Science Translational Medicine Pub Date : 2025-01-15 DOI:10.1126/scitranslmed.adl5800
Yuxuan Chen, Xiaohong Chen, Yao Zhang, Meng Wang, Minqi Yang, Ruiji Wang, Xiaojie Yan, Shiyi Shao, Huhu Xin, Qida Hu, Wei Wei, Yuan Ping
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Abstract

Macrophages play a central role in antitumor immunity, making them an attractive target for gene therapy strategies. However, macrophages are difficult to transfect because of nucleic acid sensors that can trigger the degradation of foreign plasmid DNA. Here, we developed a macrophage-specific editing (MAGE) system by which compact plasmid DNA encoding a CasRx editor can be delivered to macrophages by a poly(β-amino ester) (PBAE) carrier to bypass the DNA sensor and enable RNA editing in vitro and in vivo. We identified a four-arm branched PBAE with 1-(2-aminoethyl)-4-methylpiperazine end-capping (PBAE29) that enables highly efficient macrophage transfection. PBAE29-mediated transfection of cultured macrophages stimulated less inflammatory cytokine production and inflammasome activation compared with traditional lipofectamine or electroporation-mediated plasmid delivery. Transfection efficiency was further improved by delivering CasRx by minicircle plasmid. The MAGE system incorporated a layer of carboxylated-mannan coating to target macrophage mannose receptors and a macrophage-specific promoter for enhanced selectivity. The delivery of CasRx with guide RNA targeting the transcripts for sialic acid–binding immunoglobulin similar to lectin 10 and signal regulatory protein alpha expression resulted in effective protein knockdown, improving macrophage phagocytosis. The MAGE system also showed efficacy in targeting macrophages in vivo, stimulating antitumor immune responses and reducing tumor volume in murine tumor models, including patient-derived pancreatic adenocarcinoma xenografts in humanized mice. In sum, the MAGE system presents a promising platform for in vivo macrophage-specific delivery of RNA editing tools that can be applied as a cancer therapy.
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巨噬细胞特异性体内RNA编辑促进小鼠吞噬和抗肿瘤免疫
巨噬细胞在抗肿瘤免疫中发挥着核心作用,因此成为基因治疗策略的一个有吸引力的靶点。然而,巨噬细胞很难被转染,因为核酸传感器会引发外来质粒DNA的降解。在这里,我们开发了一种巨噬细胞特异性编辑(MAGE)系统,通过该系统,编码CasRx编辑器的紧凑型质粒DNA可以通过聚(β-氨基酯)(PBAE)载体输送到巨噬细胞,从而绕过DNA传感器,实现体外和体内的RNA编辑。我们发现了一种具有 1-(2-氨基乙基)-4-甲基哌嗪末端封端的四臂支链 PBAE(PBAE29),它能实现高效的巨噬细胞转染。与传统的脂转染胺或电穿孔介导的质粒递送相比,PBAE29介导的巨噬细胞转染刺激炎性细胞因子的产生和炎性体的激活更少。通过微型环形质粒递送 CasRx 还进一步提高了转染效率。MAGE 系统加入了一层羧化甘露聚糖涂层,以靶向巨噬细胞甘露糖受体,还加入了巨噬细胞特异性启动子,以提高选择性。将 CasRx 与针对类似于凝集素 10 的唾液酸结合免疫球蛋白转录本和信号调节蛋白 alpha 表达的引导 RNA 一起递送,可有效敲除蛋白,提高巨噬细胞的吞噬能力。MAGE 系统在体内靶向巨噬细胞、刺激抗肿瘤免疫反应和减少小鼠肿瘤模型(包括人源化小鼠胰腺腺癌异种移植物)中的肿瘤体积方面也显示出疗效。总之,MAGE 系统为体内巨噬细胞特异性递送 RNA 编辑工具提供了一个前景广阔的平台,可用作癌症疗法。
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来源期刊
Science Translational Medicine
Science Translational Medicine CELL BIOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
26.70
自引率
1.20%
发文量
309
审稿时长
1.7 months
期刊介绍: Science Translational Medicine is an online journal that focuses on publishing research at the intersection of science, engineering, and medicine. The goal of the journal is to promote human health by providing a platform for researchers from various disciplines to communicate their latest advancements in biomedical, translational, and clinical research. The journal aims to address the slow translation of scientific knowledge into effective treatments and health measures. It publishes articles that fill the knowledge gaps between preclinical research and medical applications, with a focus on accelerating the translation of knowledge into new ways of preventing, diagnosing, and treating human diseases. The scope of Science Translational Medicine includes various areas such as cardiovascular disease, immunology/vaccines, metabolism/diabetes/obesity, neuroscience/neurology/psychiatry, cancer, infectious diseases, policy, behavior, bioengineering, chemical genomics/drug discovery, imaging, applied physical sciences, medical nanotechnology, drug delivery, biomarkers, gene therapy/regenerative medicine, toxicology and pharmacokinetics, data mining, cell culture, animal and human studies, medical informatics, and other interdisciplinary approaches to medicine. The target audience of the journal includes researchers and management in academia, government, and the biotechnology and pharmaceutical industries. It is also relevant to physician scientists, regulators, policy makers, investors, business developers, and funding agencies.
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