Repurposing ICG enables MR/PA imaging signal amplification and iron depletion for iron-overload disorders

重新利用 ICG 可实现 MR/PA 成像信号放大和铁耗竭,治疗铁过载疾病

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作者:Huirong Lin, Yu Zhou, Jiaming Wang, Huimeng Wang, Tianhong Yao, Hu Chen, Huili Zheng, Yang Zhang, En Ren, Lai Jiang, Chengchao Chu, Xiaoyuan Chen, Jingsong Mao, Fudi Wang, Gang Liu

Abstract

Precise and noninvasive theranostic methods to quantify and deplete focal iron are of crucial importance for iron-overload disorders. Here, we developed an indocyanine green (ICG)–based imaging platform to reveal Fe3+ in vitro and in vivo. The high sensitivity and specificity of ICG-Fe interaction facilitated MR images with a marked correlation between T1 signal intensity ratio (T1SIR) changes and Fe3+ concentration in rodent models and humans. On the basis of these findings, a rational design for coordination-driven self-assembly ICG-Lecithin (ICG/Leci) was proposed to determine Fe3+. The enhancement of photoacoustic signal at 890 nm with increasing Fe3+ concentration showed an over 600% higher linear slope than that of T1SIR changes in animal models. ICG/Leci also promoted a 100% increase in iron depletion in the liver compared with deferoxamine. The high MR sensitivity and superior photoacoustic contrast, combined with enhanced iron depletion, demonstrate that ICG/Leci is a promising theranostic agent for simultaneous detection and treatment of iron-overload disorders.

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