Redox-Activated Contrast-Enhanced T 1‑Weighted Imaging Visualizes Glutathione-Mediated Biotransformation Dynamics in the Liver

GSH-mediated liver biotransformation is a crucial physiological process demanding efficient research tools. Here, we report a type of amorphous Fe x Mn y O nanoparticles (AFMO-ZDS NPs) as redox-activated probes for in vivo visualization of the dynamics of GSH-mediated biotransformation in liver with...

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Veröffentlicht in:ACS nano 2021-11, Vol.15 (11), p.17831-17841
Hauptverfasser: Liu, Kun, Kang, Bilun, Luo, Xiangjie, Yang, Zhaoxuan, Sun, Chengjie, Li, Ao, Fan, Yifan, Chen, Xiaoyuan, Gao, Jinhao, Lin, Hongyu
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Sprache:eng
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Zusammenfassung:GSH-mediated liver biotransformation is a crucial physiological process demanding efficient research tools. Here, we report a type of amorphous Fe x Mn y O nanoparticles (AFMO-ZDS NPs) as redox-activated probes for in vivo visualization of the dynamics of GSH-mediated biotransformation in liver with T 1-weighted magnetic resonance imaging (MRI). This imaging technique reveals the periodic variations in GSH concentration during the degradation of AFMO-ZDS NPs due to the limited transportation capacity of GSH carriers in the course of GSH efflux from hepatocytes to perisinusoidal space, providing direct imaging evidence for this important carrier-mediated process during GSH-mediated biotransformation. Therefore, this technique offers an effective method for in-depth investigations of GSH-related biological processes in liver under various conditions as well as a feasible means for the real-time assessment of liver functions, which is highly desirable for early diagnosis of liver diseases and prompt a toxicity evaluation of pharmaceuticals.
ISSN:1936-0851
1936-086X
DOI:10.1021/acsnano.1c06026