Zacytuj

1. Abe K, Kimura H. The possible role of hydrogen sulfide as an endogenous neuromodulator J Neurosci. 1996;16(3):1066-71.Search in Google Scholar

2. Łowicka E. Bełtowski J. Hydrogen sulfide (H2S) – the third gas of interest for pharmacologists. Pharmacol Rep. 2007;59:4-24.Search in Google Scholar

3. Zaichko NV, Melnik AV, Yoltukhivskyy MM, Olhovskiy AS, Palamarchuk IV. Hydrogen sulfide: metabolism, biological and medical role. Ukr Biochem J. 2014;86(5):5-25.10.15407/ubj86.05.005Search in Google Scholar

4. Huang Xu, Wen-Xie. Synthesis of H2S in the Gastrointestinal Tract. J Gastroenterol Hepatol Res. 2015;4(2):1459-64.10.17554/j.issn.2224-3992.2015.04.478Search in Google Scholar

5. Sha L, Linden DR, Farrugia G, Szurszewski JH. Effect of endogenous hydrogen sulfide on the transwall gradient of the mouse colon circular smooth muscle. J Physiol. 2014;592 (5):1077-89.10.1113/jphysiol.2013.266841394856424366262Search in Google Scholar

6. Módis K, Coletta C, Erdélyi K, Papapetropoulos A, Szabo C. Intramitochondrial hydrogen sulfide production by 3-mercaptopyruvate sulfurtransferase maintains mitochondrial electron flow and supports cellular bioenergetics. FASEB J. 2013;27(2):601-11.10.1096/fj.12-21650723104984Search in Google Scholar

7. Pouokam E, Steidle J, Diener M. Regulation of colonic ion transport by gasotransmitters. Biol Pharm Bull. 2011;34(6):789-93.10.1248/bpb.34.78921628873Search in Google Scholar

8. Kimura H. Hydrogen sulfide and polysulfides as signaling molecules. Proc Jpn Acad Ser B. Phys Biol Sci. 2015;91(4):131-59.Search in Google Scholar

9. Cheng P, Wang F, Chen K, Guo C. Hydrogen sulfide ameliorates ischemia/reperfusion–induced hepatitis by inhibiting apoptosis and autophagy pathways. Mediators Inflamm. 2014(2):93525110.1155/2014/935251405538424966472Search in Google Scholar

10. Voloshchuk NІ, Taran ІV. Expression of gastrotoxic activity of sodium diclofenac with deficiency and excess hydrogen sulfide in the experiment. Farmakologіya ta lіkars’ka toksikologіya. 2014;4-5(40):17-24.Search in Google Scholar

11. Myasoedova OA. Korzhov VI. The role of hydrogen sulfide in the implementation of the physiological functions of the body. Zhurn NAMN Ukraїni. 2011;17(3):191-200.Search in Google Scholar

12. Tan BH, Wong PT, Bian JS. Hydrogen sulfide: a novel signaling molecule in the central nervous system. Neurochem Int. 2010;56:3-10.10.1016/j.neuint.2009.08.00819703504Search in Google Scholar

13. Kimura H. Hydrogen sulfide: its production and functions. Exp Physiol. 2011;96(9):833-5.10.1113/expphysiol.2011.05745521527544Search in Google Scholar

14. Huang X, Meng XM, Liu DH, Wu YS, Guo X, Lu HL, et al. Different regulatory effects of hydrogen sulfide and nitric oxide on gastric motility in mice. Eur J Pharmacol. 2013;720(1-3):276-85.10.1016/j.ejphar.2013.10.01724157974Search in Google Scholar

15. Lu W, Li J, Gong L. H2S modulates duodenal motility in male rats via activating TRPV1 and K(ATP) channels. Br J Pharmacol. 2014;171(6):1534-50.10.1111/bph.12562395449124345161Search in Google Scholar

16. 1Kasparek MS, Linden DR, Farrugia G, Sarr MG. Hydrogen sulfide modulates contractile function in rat jejunum. J Surg Res. 2012;175(2):234-42.10.1016/j.jss.2011.03.069316970221571312Search in Google Scholar

17. Medani M, Collins D, Docherty NG, Baird AW, O’Connell PR, Winter DC. Emerging role of hydrogen sulfide in colonic physiology and pathophysiology. Inflamm Bowel Dis. 2011;17(7):1620-5.10.1002/ibd.2152821674719Search in Google Scholar

18. Mimoun S, Andriamihaja M, Chaumontet C, Atanasiu C, Benamouzig R, Blouin JM, et al. Detoxification of H(2)S by differentiated colonic epithelial cells: implication of the sulfide oxidizing unit and of the cell respiratory capacity. Antioxid Redox Signal. 2012;17(1):1-10.10.1089/ars.2011.418622369066Search in Google Scholar

19. Mard SA, Askari H, Neisi N, Veisi A. Antisecretory effect of hydrogen sulfide on gastric acid secretion and the involvement of nitric oxide. Biomed Res Int. 2014;2014:480921.10.1155/2014/480921395366224707486Search in Google Scholar

20. Ise F, Takasuka H, Hayashi S, Takahashi K, Koyama M, Aihara E, et al. Stimulation of duodenal HCO3 secretion by hydrogen sulphide in rats: relation to prostaglandins, nitric oxide and sensory neurones. Acta Physiol (Oxf). 2011;201(1):117-26.10.1111/j.1748-1716.2010.02152.x20528800Search in Google Scholar

21. Berg A, Redeen S, Erics A, Sjostrand SE. Nitric oxide – an endogenous inhibitor of gastric acid secretion in isolated human gastric glands. BMC Gastroenterol. 2004;4(1):16.10.1186/1471-230X-4-1651454615298720Search in Google Scholar

22. Mard SA, Askari H, Neisi N, Veisi A. Antisecretory Effect of Hydrogen Sulfide on Gastric Acid Secretion and the Involvement of Nitric Oxide. Biomed Res Int. 2014;480921.10.1155/2014/480921Search in Google Scholar

23. Zhao P, Huang X, Wang ZY, Qiu ZX, Han YF, Lu HL, et al. Dual effect of exogenous hydrogen sulfide on the spontaneous contraction of gastric smooth muscle in guinea-pig. Eur J Pharmacol. 2009;616(1-3):223-8.10.1016/j.ejphar.2009.05.01419470382Search in Google Scholar

24. Wallace JL, Vong L, McKnight W Dicay M, Martin GR. Endogenous and exogenous hydrogen sulfide promotes resolution of colitis in rats. Gastroenterol. 2009;137(2):569-78.10.1053/j.gastro.2009.04.01219375422Search in Google Scholar

25. Chen ZF, Zhao B, Tang XY, Li W, Zhu LL, Tang CS, et al. Hydrogen sulfide regulates vascular endoplasmic reticulum stress in apolipoprotein E knockout mice. Chin Med J (Engl). 2011;124(21):3460-7.Search in Google Scholar

26. Kubo S, Doe I, Kurokawa Y, Kawabata A. Hydrogen sulfide causes relaxation in mouse bronchial smooth muscle. J Pharmacol Sci. 2007;104(4):392-6.10.1254/jphs.SC007019917675793Search in Google Scholar

27. Han YF, Huang X, Guo X, Wu YS, Liu DH, Lu HL, et al. Evidence that endogenous hydrogen sulfide exerts an excitatory effect on gastric motility in mice. Eur J Pharmacol. 2011;673(1-3):85-95.10.1016/j.ejphar.2011.10.01822047765Search in Google Scholar

28. Gil V, Parsons S, Gallego D, Huizinga J, Jimenez M. Effects of hydrogen sulphide on motility patterns in the rat colon. Br J Pharmacol. 2013;169(1):34-50.10.1111/bph.12100363223723297830Search in Google Scholar

29. Ondrias K, Stasko A, Cacanyiova S, Sulova Z, Krizanova O, Kristek F, et al. H(2)S and HS(-) donor NaHS releases nitric oxide from nitrosothiols, metal nitrosyl complex, brain homogenate and murine L1210 leukaemia cells. Pflugers Arch. 2008;457:271-9.10.1007/s00424-008-0519-018458940Search in Google Scholar

30. Miyamoto R, Koike S., Takano Y, Shibuya N, Kimura Y, Hanaoka K, et al. Polysulfides (H2Sn) produced from the interaction of hydrogen sulfide (H2S) and nitric oxide (NO) activate TRPA1 channels. Sci Rep. 2017;7:45995.10.1038/srep45995538098928378773Search in Google Scholar

31. Huang X, Xu Wen-Xie. Synthesis of H2S in the gastrointestinal tract. J Gastroenterol Hepatol Res. 2015;4(2)1459-64.10.17554/j.issn.2224-3992.2015.04.478Search in Google Scholar

32. Zhao W, Zhang J, Lu Y, Wang R. The vasorelaxant effect of H(2)S as a novel endogenous gaseous K(ATP) channel opener. EMBO J. 2010;20(21):6008-16.10.1093/emboj/20.21.600812569311689441Search in Google Scholar

33. Medeiros JV, Bezerra Lucetti VH, Lima-Jnior RC, Lima-Júnior RC, Barbosa AL, Tavares BM, et al. Role of KATP channels and TRPV1 receptors in hydrogen sulfide-enhanced gastric emptying of liquid in awake mice. Eur J Pharmacol. 2012;693(1-3):57-63.10.1016/j.ejphar.2012.07.00422884438Search in Google Scholar

34. Nagao M, Duenes JA, Sarr MG. Role of hydrogen sulfide as a gasotransmitter in modulating contractile activity of circular muscle of rat jejunum. J Gastrointest Surg. 2012;16(2):334-43.10.1007/s11605-011-1734-0326562822058041Search in Google Scholar

35. Linden DR. Hydrogen sulfide signaling in the gastrointestinal tract. Antioxid Redox Signal. 2014;20(5):818-30.10.1089/ars.2013.5312391045223582008Search in Google Scholar

36. Yamane S, Kanno T, Nakamura H, Fujino H, Murayama T. Hydrogen sulfide-mediated regulation of contractility in the mouse ileum with electrical stimulation: Roles of l-cysteine, cystathionine-synthase, and K+-channels. Eur J Pharmacol. 2014;740:112-20.10.1016/j.ejphar.2014.06.05425008073Search in Google Scholar

37. Parajuli SP, Choi S, Lee J, Kim YD, Park CG, Kim MY, et al. The inhibitory effects of hydrogen sulfide on pacemaker activity of interstitial cells of cajal from mouse small intestine. Korean J Physiol Pharmacol. 2010;14(2):83-9.10.4196/kjpp.2010.14.2.83286945520473379Search in Google Scholar

38. Linden DR, Sha L, Mazzone A, Stoltz GJ, Bernard CE, Furne JK, et al. Production of the gaseous signal molecule hydrogen sulfide in mouse tissues. J Neurochem. 2008;106(4):1577-85.10.1111/j.1471-4159.2008.05502.x283685618513201Search in Google Scholar

39. Distrutti E, Sediari L, Mencarelli A, Renga B, Orlandi S, Antonelli E, et al. Evidence that hydrogen sulfide exerts antinociceptive effects in the gastrointestinal tract by activating KATP channels. J Pharmacol Exp Ther. 2006;316(1):325-35.10.1124/jpet.105.09159516192316Search in Google Scholar

40. Gil V, Gallego D, Jimnez M. Effects of inhibitors of hydrogen sulphide synthesis on rat colonic motility. Br J Pharmacol. 2011;164(2):485-98.10.1111/j.1476-5381.2011.01431.x318890121486289Search in Google Scholar

41. Ma L, Wallace JL. Endothelial nitric oxide synthase modulates gastric ulcer healing in rats. Am J Physiol. 2000;279:341-6.10.1152/ajpgi.2000.279.2.G34110915643Search in Google Scholar

42. Zhu YZ, Wang ZJ, Ho P, Loke YY, Zhu YC, Huang SH, et al. Hydrogen sulfide and its possible roles in myocardial ischemia in experimental rats. J Appl Physiol. 2007;102(1):261-8.10.1152/japplphysiol.00096.200617038495Search in Google Scholar

43. Fiorucci S, Distrutti E, Cirino G, Wallace JL. The emerging roles of hydrogen sulfide in the gastrointestinal tract and liver. Gastroenterol. 2006;131:259-71.10.1053/j.gastro.2006.02.03316831608Search in Google Scholar

44. Zanardo RC, Brancaleone V, Distrutti E, Fiorucci S, Cirino G, Wallace JL. Hydrogen sulfide is an endogenous modulator of leukocyte–mediated inflammation. FASEB J. 2006;20:2118-20.10.1096/fj.06-6270fje16912151Search in Google Scholar

45. Fiorucci S, Antonelli E, Distrutti E, Rizzo G, Mencarelli A, Orlandi S, et al. Inhibition of hydrogen sulfide generation contributes to gastric injury caused by anti–inflammatory nonsteroidal drugs. Gastroenterol. 2005;129:1210-24.10.1053/j.gastro.2005.07.06016230075Search in Google Scholar

46. Wallace JL, Dicay M, McKnight W, Martin GR. Hydrogen sulfide enhances ulcer healing in rats. FASEB J. 2007;21(14):4070-6.10.1096/fj.07-8669com17634391Search in Google Scholar

47. Peura DA. Prevention of nonsteroidal anti–inflammatory drug-associated gastrointestinal symptoms and ulcer complications. Am J Med. 2004;117 (5):63-71.10.1016/j.amjmed.2004.07.01015478855Search in Google Scholar

48. Qu K, Chen CP, Halliwell B, Moore PK, Wong PT. Hydrogen sulfide is a mediator of cerebral ischemic damage. Stroke. 2006;37:889-93.10.1161/01.STR.0000204184.34946.4116439695Search in Google Scholar

49. Voloshchuk NI, Taran IV, Mel’nik AV. Vascular mechanism in the diclophenac induced gastrotoxicity: the association with the level of hydrogen sulfide. Curierul Med. 2015;58(1):7-11.Search in Google Scholar

50. Wallace JL, Ianaro A, de Nucci G. Gaseous mediators in gastrointestinal mucosal defense and injury. Digest Dis Sci. 2017; 62(9):2223-30.10.1007/s10620-017-4681-028733867Search in Google Scholar

51. Guo C, Liang F, Shah Masood W, Yan X. Hydrogen sulfide protected gastric epithelial cell from ischemia/reperfusion injury by Keap1 s-sulfhydration, MAPK dependent anti-apoptosis and NF-κB dependent anti-inflammation pathway. Eur J Pharmacol. 2014;15(725):70-8.10.1016/j.ejphar.2014.01.00924444438Search in Google Scholar

52. Elrod JW. Hydrogen sulfide attenuates myocardial ischemia – reperfusion injury by preservation of mitochondrial function Proc. Natl Acad Sci (USA). 2007;104:15560-5.10.1073/pnas.0705891104200050317878306Search in Google Scholar

53. Kimura H. Hydrogen sulfide: from brain to gut. Antioxid Redox Signal. 2010;12(9):1111-23.10.1089/ars.2009.291919803743Search in Google Scholar

54. Voloshchuk N, Taran I, Toziuk О, Chereshniuk І, Denysiuk O. Influence of H2S donor on changes in the cell cycle and the apoptosis process induced by diclofenac in the rat gastric mucosa. Georgian Med News. 2018;(282):140-5.Search in Google Scholar

55. Ma K, Liu Y, Zhu Q, Liu CH, Duan JL, Tan BK, et al. H2S donor, S-propargyl-cysteine, increases CSE in SGC-7901 and cancer-induced mice: evidence for a novel anti-cancer effect of endogenous H2S? PLoS One. 2011;6 (6):20525.10.1371/journal.pone.0020525312447021738579Search in Google Scholar

56. Yonezawa D, Sekiguchi F, Miyamoto M, Taniguchi E, Honjo M, Masuko T, et al. A protective role of hydrogen sulfide against oxidative stress in rat gastric mucosal epithelium. Toxicology. 2007;20(1-2):11-8.10.1016/j.tox.2007.07.02017825973Search in Google Scholar

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