Hypoxia-Responsive Luminescent CEST MRI Agent for In Vitro and In Vivo Tumor Detection and Imaging

Hypoxia is a feature of most solid tumors and a key determinant of cancer growth and propagation. Sensing hypoxia effectively could lead to more favorable clinical outcomes. Here, we report a molecular antenna-based bimodal probe designed to exploit the complementary advantages of magnetic resonance...

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Veröffentlicht in:Journal of medicinal chemistry 2022-05, Vol.65 (10), p.7106-7117
Hauptverfasser: Karan, Sanu, Cho, Mi Young, Lee, Hyunseung, Park, Hye Sun, Han, Eun Hee, Song, Youngkyu, Lee, Youlee, Kim, Mina, Cho, Jee-Hyun, Sessler, Jonathan L., Hong, Kwan Soo
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Sprache:eng
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Zusammenfassung:Hypoxia is a feature of most solid tumors and a key determinant of cancer growth and propagation. Sensing hypoxia effectively could lead to more favorable clinical outcomes. Here, we report a molecular antenna-based bimodal probe designed to exploit the complementary advantages of magnetic resonance (MR)- and optical-based imaging. Specifically, we describe the synthesis and evaluation of a dual-action probe (NO 2 -Eu) that permits hypoxia-activated chemical exchange saturation transfer (CEST) MR and optical imaging. In CT26 cells, this NO 2 -Eu probe not only provides an enhanced CEST MRI signal but also turns “on” the optical signal under hypoxic conditions. Time-dependent in vivo CEST imaging in a hypoxic CT26 tumor xenograft mouse model revealed probe-dependent tumor detection by CEST MRI contrast in the tumor area. We thus suggest that dual-action hypoxia probes, like that reported here, could have a role to play in solid tumor diagnosis and monitoring.
ISSN:0022-2623
1520-4804
DOI:10.1021/acs.jmedchem.1c01745