Metabolic And Cardiac Signaling Effects Of Inhaled Hydrogen Sulfide And Low Oxygen In Male Rats

JOURNAL OF APPLIED PHYSIOLOGY(2012)

引用 15|浏览16
暂无评分
摘要
Stein A, Mao Z, Morrison JP, Fanucchi MV, Postlethwait EM, Patel RP, Kraus DW, Doeller JE, Bailey SM. Metabolic and cardiac signaling effects of inhaled hydrogen sulfide and low oxygen in male rats. J Appl Physiol 112: 1659-1669, 2012. First published March 8, 2012; doi:10.1152/japplphysiol.01598.2011.- Low concentrations of inhaled hydrogen sulfide (H2S) induce hypometabolism in mice. Biological effects of H2S in in vitro systems are augmented by lowering O-2 tension. Based on this, we hypothesized that reduced O-2 tension would increase H2S-mediated hypometabolism in vivo. To test this, male Sprague-Dawley rats were exposed to 80 ppm H2S at 21% O-2 or 10.5% O-2 for 6 h followed by 1 h recovery at room air. Rats exposed to H2S in 10.5% O-2 had significantly decreased body temperature and respiration compared with preexposure levels. Heart rate was decreased by H2S administered under both O-2 levels and did not return to preexposure levels after 1 h recovery. Inhaled H2S caused epithelial exfoliation in the lungs and increased plasma creatine kinase-MB activity. The effect of inhaled H2S on prosurvival signaling was also measured in heart and liver. H2S in 21% O-2 increased Akt-P-Ser473 and GSK-3 beta-P-Ser9 in the heart whereas phosphorylation was decreased by H2S in 10.5% O-2, indicating O-2 dependence in regulating cardiac signaling pathways. Inhaled H2S and low O-2 had no effect on liver Akt. In summary, we found that lower O-2 was needed for H2S-dependent hypometabolism in rats compared with previous findings in mice. This highlights the possibility of species differences in physiological responses to H2S. Inhaled H2S exposure also caused tissue injury to the lung and heart, which raises concerns about the therapeutic safety of inhaled H2S. In conclusion, these findings demonstrate the importance of O-2 in influencing physiological and signaling effects of H2S in mammalian systems.
更多
查看译文
关键词
hydrogen sulfide, hypometabolism, mitochondria, heart, signal transduction
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要