代谢氟标记和小鼠动态肠道微生物组的热点成像。
Metabolic fluorine labeling and hotspot imaging of dynamic gut microbiota in mice.
机构信息
Department of Chemical Biology, The MOE Key Laboratory of Spectrochemical Analysis and Instrumentation, Fujian Provincial Key Laboratory of Chemical Biology, and State Key Laboratory of Physical Chemistry of Solid Surfaces, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.
Institute of Molecular Medicine, Shanghai Key Laboratory for Nucleic Acid Chemistry and Nanomedicine, Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200127, China.
出版信息
Sci Adv. 2023 Jan 27;9(4):eabg6808. doi: 10.1126/sciadv.abg6808.
Real-time localization and microbial activity information of indigenous gut microbiota over an extended period of time remains a challenge with existing visualizing methods. Here, we report a metabolic fluorine labeling (MEFLA)-based strategy for monitoring the dynamic gut microbiota via F magnetic resonance imaging (F MRI). In situ labeling of different microbiota subgroups is achieved by using a panel of peptidoglycan-targeting MEFLA probes containing F atoms of different chemical shifts, and subsequent real-time in vivo imaging is accomplished by multiplexed hotspot F MRI with high sensitivity and unlimited penetration. Using this method, we realize extended visualization (>24 hours) of native gut microbes located at different intestinal sections and semiquantitative analysis of their metabolic dynamics modulated by various conditions, such as the host death and different β-lactam antibiotics. Our strategy holds great potential for noninvasive and real-time assessing of the metabolic activities and locations of the highly dynamic gut microbiota.
现有的可视化方法仍然难以长时间实时定位和检测肠道内固有微生物菌群及其活性。在这里,我们报告了一种基于代谢性氟标记(MEFLA)的策略,通过 F 磁共振成像(F MRI)监测动态肠道微生物菌群。通过使用一组含有不同化学位移 F 原子的靶向肽聚糖 MEFLA 探针,可以原位标记不同的微生物菌群亚群,然后通过高灵敏度和无限穿透的多重热点 F MRI 进行实时体内成像。使用这种方法,我们实现了对位于不同肠道部位的天然肠道微生物的长时间(>24 小时)可视化,并对半定量分析了各种条件(如宿主死亡和不同β-内酰胺类抗生素)下它们代谢动力学的变化。我们的策略为非侵入性和实时评估高度动态的肠道微生物菌群的代谢活性和位置提供了巨大的潜力。