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Open AccessJournal ArticleDOI

Hydrogen sulfide: a new gaseous signal molecule and blood pressure regulator

Carsten A. Wagner
- 01 Mar 2009 - 
- Vol. 22, Iss: 2, pp 173-176
TLDR
These data establish H2S as a new and important biologic signal molecule and as anew regulator of vascular blood flow and blood pressure.
Abstract
The gas hydrogen sulfide (H2S) is emerging as a novel regulator of important physiologic functions such as arterial diameter, blood flow and leukocyte adhesion. In addition, it may have antiinflammatory and antiapoptotic effects. H2S has recently attracted much interest as a potent vasorelaxative substance that may establish itself alongside another gaseous signal molecule, nitric oxide (NO). In contrast to NO, the major source of H2S in blood may be production by red blood cells or by vascular smooth muscle cells. H2S is produced from cysteine, involving the enzymes cystathionine beta-synthase and cystathionine gamma-lyase (CSE). The importance of CSE was recently demonstrated in a mouse lacking CSE which showed reduced H2S levels and developed hypertension and reduced endothelium-mediated vasorelaxation. These data establish H2S as a new and important biologic signal molecule and as a new regulator of vascular blood flow and blood pressure.

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Journal ArticleDOI

Reaction-based genetically encoded fluorescent hydrogen sulfide sensors.

TL;DR: Genetically encoded fluorescent protein (FP)-based probes that can selectively detect H(2)S are reported that were modified with the sulfide-reactive azide functional group by expanding the genetic codes of E. coli and mammalian cells.
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Emerging role of hydrogen sulfide in health and disease: critical appraisal of biomarkers and pharmacological tools.

TL;DR: The suitability of proposed 'biomarkers' of H2S synthesis and metabolism are critically discussed, and the complexities of the currently used pharmacological H 2S 'donor' molecules and 'specific' H2 S synthesis inhibitors are highlighted in their application to studying the role of H1N1 in human disease.
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Hydrogen sulfide: environmental factor or signalling molecule?

TL;DR: It appears that instead of thinking of H₂S as a phytotoxin, it needs to be considered as a signalling molecule that interacts with reactive oxygen species and NO metabolism, as well as having direct effects on the activity of proteins.
Journal ArticleDOI

The Therapeutic Potential of Hydrogen Sulfide: Separating Hype from Hope

TL;DR: The concentration of H(2)S in tissues and blood, as well as the intrinsic factors that affect these levels, has not been resolved, and it is imperative to address these points to distinguish between the physiological, pharmacological, and toxicological effects of this molecule.
Journal ArticleDOI

Near-infrared fluorescent probe for imaging mitochondrial hydrogen polysulfides in living cells and in vivo.

TL;DR: The probe Mito-ss replies a turn-on fluorescence signal and exhibits a higher selectivity toward H2Sn than other abundant competing biothiols, such as glutathione, cysteine and H2S, providing a potentially powerful approach for probing H2 Sn in biological systems.
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