Dysregulated iron homeostasis underlies diverse pathologies, from ischemia-reperfusion injury to epithelial-mesenchymal transition and drug-tolerant "persister" cancer cell states. Here, we introduce ferrous iron-activatable luciferin-1 (FeAL-1), a small-molecule probe for bioluminescent imaging of the labile iron pool (LIP) in luciferase-expressing cells and animals. We find that FeAL-1 detects LIP fluctuations in cells after iron supplementation, depletion, or treatment with hepcidin, the master regulator of systemic iron in mammalian physiology. Utilizing FeAL-1 and a dual-luciferase reporter system, we quantify LIP in mouse liver and three different orthotopic pancreatic ductal adenocarcinoma tumors. We observed up to a 10-fold increase in FeAL-1 bioluminescent signal in xenograft tumors as compared to healthy liver, the major organ of iron storage in mammals. Treating mice with hepcidin further elevated hepatic LIP, as predicted. These studies reveal a therapeutic index between tumoral and hepatic LIP and suggest an approach to sensitize tumors toward LIP-activated therapeutics.
In vivo bioluminescence imaging of labile iron in xenograft models and liver using FeAL-1, an iron-activatable form of D-luciferin.
利用 FeAL-1(一种铁激活形式的 D-荧光素)对异种移植模型和肝脏中的不稳定铁进行体内生物发光成像
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作者:Gonciarz Ryan L, Jiang Honglin, Tram Linh, Hugelshofer Cedric L, Ekpenyong Oscar, Knemeyer Ian, Aron Allegra T, Chang Christopher J, Flygare John A, Collisson Eric A, Renslo Adam R
| 期刊: | Cell Chemical Biology | 影响因子: | 7.200 |
| 时间: | 2023 | 起止号: | 2023 Nov 16; 30(11):1468-1477 |
| doi: | 10.1016/j.chembiol.2023.09.006 | ||
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