New method for quantification of gasotransmitter hydrogen sulfide in biological matrices by LC-MS/MS

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作者
Bo Tan
Sheng Jin
Jiping Sun
Zhongkai Gu
Xiaotian Sun
Yichun Zhu
Keke Huo
Zonglian Cao
Ping Yang
Xiaoming Xin
Xinhua Liu
Lilong Pan
Furong Qiu
Jian Jiang
Yiqun Jia
Fuyuan Ye
Ying Xie
Yi Zhun Zhu
机构
[1] Shuguang Hospital Affiliated to Shanghai University of Traditional Chinese Medicine,Department of Clinical Pharmacology
[2] State Key Laboratory of Quality Research in Chinese Medicine and School of Pharmacy,Department of Pharmacology
[3] Macau University of Science and Technology,Department of Physiology
[4] Shanghai Key Laboratory of Bioactive Small Molecules,Department of Physiology and Pathophysiology
[5] School of Pharmacy,Department of Cardiothoracic Surgery
[6] Fudan University,undefined
[7] Hebei Medical University,undefined
[8] Shanghai Medical College,undefined
[9] Fudan University,undefined
[10] Institutes of Biological Sciences,undefined
[11] Fudan University,undefined
[12] State Key Laboratory of Genetic Engineering,undefined
[13] School of Life Sciences,undefined
[14] Fudan University,undefined
[15] Huashan Hospital of Fudan University,undefined
[16] Analysis Center,undefined
[17] School of Pharmacy,undefined
[18] Fudan University,undefined
[19] Instrumental Analysis Center,undefined
[20] Shanghai University of Traditional Chinese Medicine,undefined
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摘要
Hydrogen sulfide exists widely in mammalian tissues and plays a vital role in physiological and pathophysiological processes. However, striking differences with orders of magnitude were observed for the detected hydrogen sulfide concentrations in biological matrices among different measurements in literature, which lead to the uncertainty for examination the biological relevance of hydrogen sulfide. Here, we developed and validated a liquid chromatography- mass spectrometry (LC-MS/MS) method for the determination of hydrogen sulfide in various biological matrices by determination of a derivative of hydrogen sulfide and monobromobimane named sulfide dibimane (SDB). 36S-labeled SDB was synthesized and validated for using as an internal standard. This method has been successfully used to measure hydrogen sulfide levels in a broad range of biological matrices, such as blood, plasma, tissues, cells, and enzymes, across different species. Moreover, a novel mode that hydrogen sulfide could loosely and non-covalently bind to human serum protein (HSA) and hemoglobin (HB) was revealed by using the developed method.
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