Li Yue, Du Yuwei, Xu Zhengqing, He Yuan, Yao Ran, Jiang Huiran, Ju Wen, Qiao Jianlin, Xu Kailin, Liu Tzu-Ming, Zeng Lingyu
School of Medical Technology, Xuzhou Medical University, Xuzhou, Jiangsu, China.
Blood Diseases Institute, Xuzhou Medical University, Xuzhou, Jiangsu, China; Key Laboratory of Bone Marrow Stem Cell, Xuzhou, Jiangsu, China; Department of Hematology, The Affiliated Hospital of Xuzhou Medical University, Xuzhou, Jiangsu, China.
J Lipid Res. 2022 May;63(5):100207. doi: 10.1016/j.jlr.2022.100207. Epub 2022 Apr 6.
Macrophages play pivotal roles in the maintenance of tissue homeostasis. However, the reactivation of macrophages toward proinflammatory states correlates with a plethora of inflammatory diseases, including atherosclerosis, obesity, neurodegeneration, and bone marrow (BM) failure syndromes. The lack of methods to reveal macrophage phenotype and function in vivo impedes the translational research of these diseases. Here, we found that proinflammatory macrophages accumulate intracellular lipid droplets (LDs) relative to resting or noninflammatory macrophages both in vitro and in vivo, indicating that LD accumulation serves as a structural biomarker for macrophage phenotyping. To realize the staining and imaging of macrophage LDs in vivo, we developed a fluorescent fatty acid analog-loaded poly(lactic-co-glycolic acid) nanoparticle to label macrophages in mice with high efficiency and specificity. Using these novel nanoparticles, we achieved in situ functional identification of single macrophages in BM, liver, lung, and adipose tissues under conditions of acute or chronic inflammation. Moreover, with this intravital imaging platform, we further realized in vivo phenotyping of individual macrophages in the calvarial BM of mice under systemic inflammation. In conclusion, we established an efficient in vivo LD labeling and imaging system for single macrophage phenotyping, which will aid in the development of diagnostics and therapeutic monitoring. Moreover, this method also provides new avenues for the study of lipid trafficking and dynamics in vivo.
巨噬细胞在维持组织稳态中发挥着关键作用。然而,巨噬细胞向促炎状态的重新激活与多种炎症性疾病相关,包括动脉粥样硬化、肥胖、神经退行性变和骨髓(BM)衰竭综合征。缺乏在体内揭示巨噬细胞表型和功能的方法阻碍了这些疾病的转化研究。在这里,我们发现相对于静息或非炎症性巨噬细胞,促炎巨噬细胞在体外和体内都积累细胞内脂滴(LDs),这表明LD积累可作为巨噬细胞表型分析的结构生物标志物。为了实现体内巨噬细胞LDs的染色和成像,我们开发了一种负载荧光脂肪酸类似物的聚(乳酸-共-乙醇酸)纳米颗粒,以高效、特异性地标记小鼠体内的巨噬细胞。使用这些新型纳米颗粒,我们在急性或慢性炎症条件下实现了对BM、肝脏、肺和脂肪组织中单个巨噬细胞的原位功能鉴定。此外,利用这个活体成像平台,我们进一步实现了在全身炎症条件下对小鼠颅骨BM中单个巨噬细胞的体内表型分析。总之,我们建立了一个高效的用于单个巨噬细胞表型分析的体内LD标记和成像系统,这将有助于诊断和治疗监测的发展。此外,这种方法还为体内脂质转运和动力学研究提供了新途径。