Key Laboratory of Smart Drug Delivery, Ministry of Education; Innovative Center for New Drug Development of Immune Inflammatory Diseases, Ministry of Education, School of Pharmacy, Fudan University, Shanghai, 201203, China.
Department of Forensic Toxicology, Academy of Forensic Science, Ministry of Justice, Shanghai Key Laboratory of Forensic Medicine, Shanghai Forensic Science Platform, Shanghai, 200063, China.
Adv Healthc Mater. 2023 Oct;12(27):e2301000. doi: 10.1002/adhm.202301000. Epub 2023 Aug 24.
Macrophage performs multiple functions such as pathogen phagocytosis, antigen presentation, and tissue remodeling by polarizing toward a spectrum of phenotypes. Dynamic imaging of macrophage phenotypes is critical for evaluating disease progression and the therapeutic response of drug candidates. However, current technologies cannot identify macrophage phenotypes in vivo. Herein, a surface-enhanced Raman scattering nanoprobe, AH1, which enables the accurate determination of physiological pH with high sensitivity and tissue penetration depth through ratiometric Raman signals is developed. Due to the phenotype-dependent metabolic reprogramming, AH1 can effectively identify macrophage subpopulations by measuring the acidity levels in phagosomes. After intravenous administration, AH1 not only visualizes the spatial distribution of macrophage phenotypes in brain tumors and epileptic regions of mouse models, but also reveals the repolarization of macrophages in brain lesions after drug intervention. This work provides a new tool for dynamically monitoring the disease-associated immune microenvironment and evaluating the efficacy of immune-therapeutics in vivo.
巨噬细胞通过向一系列表型极化来执行多种功能,如病原体吞噬、抗原呈递和组织重塑。通过动态成像来观察巨噬细胞表型对于评估疾病进展和候选药物的治疗反应至关重要。然而,目前的技术无法在体内识别巨噬细胞表型。在此,开发了一种表面增强拉曼散射纳米探针 AH1,它通过比率拉曼信号实现了对生理 pH 值的高灵敏度和组织穿透深度的精确测定。由于表型依赖性的代谢重编程,AH1 可以通过测量吞噬体中的酸度水平来有效识别巨噬细胞亚群。静脉注射后,AH1 不仅可以在脑肿瘤和癫痫小鼠模型的区域中可视化巨噬细胞表型的空间分布,还可以揭示药物干预后脑损伤中巨噬细胞的再极化。这项工作为动态监测与疾病相关的免疫微环境以及评估免疫治疗在体内的疗效提供了一种新工具。