In vivo detection of hydrogen sulfide in the brain of live mouse: application in neuroinflammation models.

Nam, Bora; Lee, Woonghee; Sarkar, Swarbhanu; Kim, Jae-Hong; Bhise, Abhinav; Park, Hyun; Kim, Jung Young; Huynh, Phuong Tu et al. · Eur J Nucl Med Mol Imaging · 2022

basic_science · Level V

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Abstract

Hydrogen sulfide (H<sub>2</sub>S) plays important roles in brain pathophysiology. However, nuclear imaging probes for the in vivo detection of brain H<sub>2</sub>S in living animals have not been developed. Here, we report the first nuclear imaging probe that enables in vivo imaging of endogenous H<sub>2</sub>S in the brain of live mice. Utilizing a bis(thiosemicarbazone) backbone, a fluorescent ATSM-FITC conjugate was synthesized. Its copper complex, Cu(ATSM-FITC) was thoroughly tested as a biosensor for H<sub>2</sub>S. The same ATSM-FITC ligand was quantitatively labeled with [<sup>64</sup>Cu]CuCl<sub>2</sub> to obtain a radioactive [<sup>64</sup>Cu][Cu(ATSM-FITC)] imaging probe. Biodistribution and positron emission tomography (PET) imaging studies were performed in healthy mice and neuroinflammation models. The Cu(ATSM-FITC) complex reacts instantly with H<sub>2</sub>S to release CuS and becomes fluorescent. It showed excellent reactivity, sensitivity, and selectivity to H<sub>2</sub>S. Endogenous H<sub>2</sub>S levels in living cells were successfully detected by fluorescence microscopy. Exceptionally high brain uptake of [<sup>64</sup>Cu][Cu(ATSM-FITC)] (> 9% ID/g) was observed in biodistribution and PET imaging studies. Subtle changes in brain H<sub>2</sub>S concentrations in live mice were accurately detected by quantitative PET imaging. Due to its dual modality feature, increased H<sub>2</sub>S levels in neuroinflammation models were characterized at the subcellular level by fluorescence imaging and at the whole-body scale by PET imaging. Our biosensor can be readily utilized to study brain H<sub>2</sub>S function in live animal models and shows great potential as a novel imaging agent for diagnosing brain diseases.

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