3.8 Review

Hydrogen sulfide therapy in brain diseases: from bench to bedside

Journal

MEDICAL GAS RESEARCH
Volume 7, Issue 2, Pages 113-119

Publisher

WOLTERS KLUWER MEDKNOW PUBLICATIONS
DOI: 10.4103/2045-9912.208517

Keywords

hydrogen sulfide; gaseous signal molecule; neuroprotection; antioxidation; anti-inflammation; anti-apoptosis; therapy; brain diseases

Funding

  1. Suzhou Key Medical Center [Szzx201501]
  2. National Natural Science Foundation of China [81571115, 81422013, 81471196]
  3. Scientific Department of Jiangsu Province [BL2014045]
  4. Project of Invigorating Health Care through Science, Technology and Education, Suzhou Government [SZS201413, SYS201608, LCZX201601]
  5. Jiangsu Province [16KJB320008]

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Hydrogen sulfide (H2S) has been recognized and studied for nearly 300 years, but past researches mainly focus on its toxicity effect. During the past two decades, the majority of researches have reported that H2S is a novel endogenous gaseous signal molecule in organisms, and play an important role in various systems and diseases. H2S is mainly produced by three enzymes, including cystathionine 3-synthase, cystathionine y-lyase and 3-mercaptopyruvate sulfurtransferase along with cysteine aminotransferase. H2S had been firstly reported as a neuromodulator in the brain, because of its essential role in the facilitating hippocampal long-term potentiation at physiological concentration. It is subsequently reported that H2S may have relevance to neurologic disorders through antioxidative, anti-inflammatory, anti-apoptotic and additional effects. Recent basic medical studies and preclinical studies on neurologic diseases have demonstrated that the administration of H2S at physiological or pharmacological levels attenuates brain injury. However, the neuroprotective effect of H2S is concentration-dependent, only a comparatively low dose of H2S can provide beneficial effect. Herein, we review the neuroprotevtive role of H2S therapy in brain diseases from its mechanism to clinical application in animal and human subjects, and therefore provide the potential strategies for further clinical treatment.

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