Metabolically Specific In Situ Fluorescent Visualization of Bacterial Infection on Wound Tissues

细菌 原位 荧光团 荧光 生物化学 DHPS公司 微生物代谢 乳酸 微生物 微生物学 生物 有机化学 遗传学 免疫学 化学 物理 量子力学 疟疾 恶性疟原虫
作者
Chenjian Zhong,Xi‐Le Hu,Xiaolan Yang,Hui-Qi Gan,Kai‐Cheng Yan,Fu-Ting Shu,Pei Wei,Teng Gong,Pengfei Luo,Tony D. James,Zhao-Hong Chen,Yongjun Zheng,Xiao‐Peng He,Zhaofan Xia
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:14 (35): 39808-39818 被引量:16
标识
DOI:10.1021/acsami.2c10115
摘要

The ability to effectively detect bacterial infection in human tissues is important for the timely treatment of the infection. However, traditional techniques fail to visualize bacterial species adhered to host cells in situ in a target-specific manner. Dihydropteroate synthase (DHPS) exclusively exists in bacterial species and metabolically converts p-aminobenzoic acid (PABA) to folic acid (FA). By targeting this bacterium-specific metabolism, we have developed a fluorescent imaging probe, PABA-DCM, based on the conjugation of PABA with a long-wavelength fluorophore, dicyanomethylene 4H-pyran (DCM). We confirmed that the probe can be used in the synthetic pathway of a broad spectrum of Gram-positive and negative bacteria, resulting in a significantly extended retention time in bacterial over mammalian cells. We validated that DHPS catalytically introduces a dihydropteridine group to the amino end of the PABA motif of PABA-DCM, and the resulting adduct leads to an increase in the FA levels of bacteria. We also constructed a hydrogel dressing containing PABA-DCM and graphene oxide (GO), termed PABA-DCM@GO, that achieves target-specific fluorescence visualization of bacterial infection on the wounded tissues of mice. Our research paves the way for the development of fluorescent imaging agents that target species-conserved metabolic pathways of microorganisms for the in situ monitoring of infections in human tissues.
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