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Rationally designed pure-inorganic upconversion nanoprobes for ultra-highly selective hydrogen sulfide imaging and elimination in vivo.


ABSTRACT: Lung injury is a hydrogen sulfide (H2S)-associated complication with high mortality in acute pancreatitis (AP) cases. Herein, we used Prussian Blue (PB) as a H2S-responsive acceptor to develop a novel pure-inorganic upconversion nanoprobe for detecting and eliminating H2S, which can be used for diagnosing AP and alleviating lung injury. Upconversion nanoprobes with 5 nm PB shells were optimized to achieve outstanding in vitro H2S detection capacity (linear range: 0-150 ?M, LOD: 50 nM), which met the in vivo serum H2S range, and thus were feasible for imaging H2S in vivo. More importantly, when combined with the traditional H2S synthetase inhibitor dl-PAG, the nanoprobes also served as a therapeutic agent that synergistically alleviated lung injury. As PB is an FDA-approved drug, our work proposes a potential clinical modality for the early diagnosis of AP, which will decrease lung injury-induced mortality and increase the survival rates of AP cases.

SUBMITTER: Liu Y 

PROVIDER: S-EPMC6349023 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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Rationally designed pure-inorganic upconversion nanoprobes for ultra-highly selective hydrogen sulfide imaging and elimination <i>in vivo</i>.

Liu Yuxin Y   Jia Qi Q   Zhai Xuejiao X   Mao Fang F   Jiang Anqi A   Zhou Jing J  

Chemical science 20181112 4


Lung injury is a hydrogen sulfide (H<sub>2</sub>S)-associated complication with high mortality in acute pancreatitis (AP) cases. Herein, we used Prussian Blue (PB) as a H<sub>2</sub>S-responsive acceptor to develop a novel pure-inorganic upconversion nanoprobe for detecting and eliminating H<sub>2</sub>S, which can be used for diagnosing AP and alleviating lung injury. Upconversion nanoprobes with 5 nm PB shells were optimized to achieve outstanding <i>in vitro</i> H<sub>2</sub>S detection capac  ...[more]

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