HYDROGEN SULFIDE DETECTION METHODS<br>1. Mechanistic Chemical Perspective of Hydrogen Sulfide Signaling <br>Péter Nagy<br>2. Measurement of H2S in vivo and in vitro by the Monobromobimane Method<br>Xinggui Shen, Gopi K. Kolluru, Shuai Yuan and Christopher Kevil<br>3. Hydrogen Sulfide Detection Using Nucleophilic Substitution-Cyclization Based Fluorescent Probes<br>Bo Peng, Ming Xian<br>4. Azide-Based Fluorescent Probes: Imaging Hydrogen Sulfide in Living Systems<br>Vivian S. Lin, Alexander R. Lippert and Christopher J. Chang<br>5. Chemiluminescent Detection of Enzymatically Produced H2S<br>T. Spencer Bailey and Michael D. Pluth<br>6. Quantification of Hydrogen Sulfide Concentration Using Methylene Blue and 5,5’-dithiobis(2-nitrobenzoic acid) Methods in Plants<br>Zhong-Guang Li<br>7. H2S Analysis in Biological Samples Using Gas Chromatography with Sulfur Chemiluminescence Detection<br>Victor Vitvitsky and Ruma Banerjee<br>HYDROGEN SULFIDE DONORS AND THEIR PHARMACOLOGICAL ACTIVITY<br>8. Use of Phosphorodithioate-Based Compounds as Hydrogen Sulfide Donors<br>Chung-Min Park and Ming Xian<br>9. GYY4137, a Novel Water-soluble, H2S-releasing Molecule<br>Peter Rose, Brian W. Dymock and Philip K. Moore<br>10. Neuroprotective Effects of Hydrogen Sulfide in Parkinson’s Disease Animal Models: Methods and Protocols<br>Xue Xue and Jin-Song Bian<br>HYDROGEN SULFIDE METABOLISM IN MAMMALIAN TISSUES<br>11. Assay Methods for H2S Biogenesis and Catabolism Enzymes<br>Ruma Banerjee, Taurai Chiku, Omer Kabil, Marouane Libiad, Nicole Motl and Pramod K. Yadav<br>12. Oxidation of H2S in Mammalian Cells and Mitochondria<br>Abbas Abou-Hamdan, Hala Guedouari-Bounihi, Véronique Lenoir, Mireille Andriamihaja, François Blachier and Frédéric Bouillaud<br>13. Redox Regulation of Mammalian 3-mercaptopyruvate Sulfurtransferase<br>Noriyuki Nagahara, Masatoshi Nagano, Takaaki Ito and Hidenori Suzuki<br>14. Role of Human Sulfide:quinone Oxidoreductase in H2S Metabolism<br>Michael R. Jackson, Scott L. Melideo and Marilyn Schuman Jorns<br>15. H2S Regulation of Nitric Oxide Metabolism<br>Gopi K. Kolluru, Shuai Yuan, Xinggui Shen and Christopher G. Kevil