3,500
Views
2
CrossRef citations to date
0
Altmetric
Research Paper/Report

Modulation of colonic hydrogen sulfide production by diet and mesalazine utilizing a novel gas-profiling technology

, , , , &
Pages 510-522 | Received 10 Nov 2017, Accepted 05 Mar 2018, Published online: 09 May 2018

References

  • Roediger WEW, Moore J, Babidge W. Colonic sulfide in pathogenesis and treatment of ulcerative colitis. Dig Dis Sciences. 1997;42:1571–9. doi:10.1023/A:1018851723920.
  • Roediger W, Babidge W. Nitric oxide effect on coloncyte metabolism: Co-action of sulfides and peroxide. Mol Cell biochem. 2000;206:159–67. doi:10.1023/A:1007034417320. PMID:10839206
  • Pitcher MCL, Beatty ER, Cummings JH. The contribution of sulphate reducing bacteria and 5-aminosalicylic acid to faecal sulphide in patients with ulcerative colitis. Gut. 2000;46:64–72. doi:10.1136/gut.46.1.64. PMID:10601057
  • Cummings JH, Hill MJ, Bone ES, Branch WJ, Jenkins DJ. The effect of meat protein and dietary fiber on colonic function and metabolism. II. Bacterial metabolites in feces and urine. Am J Clin Nutr. 1979;32:2094–101. doi:10.1093/ajcn/32.10.2094. PMID:484528
  • Blachier F, Davila AM, Mimoun S, Benetti PH, Atanasiu C, Andriamihaja M, Benamouzig R, Bouillaud F, Tome D. Luminal sulfide and large intestine mucosa: friend or foe? Amino Acids. 2010;39:335–47. doi:10.1007/s00726-009-0445-2. PMID:20020161
  • Le Leu RK, Young GP, Hu Y, Winter J, Conlon MA. Dietary red meat aggravates dextran sulfate sodium-induced colitis in mice whereas resistant starch attenuates inflammation. Dig Dis Sci. 2013;58:3475–82. doi:10.1007/s10620-013-2844-1. PMID:23990000
  • Yao CK, Muir JG, Gibson PR. Review article: insights into colonic protein fermentation, its modulation and potential health implications. Aliment Pharmacol & Ther. 2016;43:181–96. doi:10.1111/apt.13456.
  • Roediger W. Decreased sulphur amino acid intake in ulcerative colitis. Lancet. 1998;351:1555. doi:10.1016/S0140-6736(05)61120-8. PMID:10326542
  • Tangerman A. Measurement and biological significance of the volatile sulfur compounds hydrogen sulfide, methanethiol and dimethyl sulfide in various biological matrices. Journal of chromatography B, Analytical technologies in the biomedical and life sciences. 2009;877:3366–77. doi:10.1016/j.jchromb.2009.05.026. PMID:19505855
  • Herulf M, Ljung T, Hellström P, Weitzberg E, Lundberg J. Increased luminal nitric oxide in inflammatory bowel disease as shown with a novel minimally invasive method. Scand J Gastroenterol. 1998;33:164–9. doi:10.1080/00365529850166897. PMID:9517527
  • Rotbart A, Yao C, Ha N, Chrisp MD, Muir JG, Gibson PR, Kalantar-zadeh K, Ou JZ. Designing an in-vitro gas profiling system for human faecal samples. Sensors and Actuators B: Chemical. 2017;238:754–64. doi:10.1016/j.snb.2016.07.120.
  • Pimentel M, Mathur R, Chang C. Gas and the microbiome. Curr Gastroenterol Rep. 2013;15:1–6. doi:10.1007/s11894-013-0356-y.
  • Wallace JL, Ferraz JG, Muscara MN. Hydrogen sulfide: an endogenous mediator of resolution of inflammation and injury. Antioxidants & Redox Signaling. 2012;17:58–67. doi:10.1089/ars.2011.4351.
  • Beaumont M, Andriamihaja M, Lan A, Khodorova N, Audebert M, Blouin JM, Grauso M, Lancha L, Benetti PH, Benamouzig R, et al. Detrimental effects for colonocytes of an increased exposure to luminal hydrogen sulfide: The adaptive response. Free Radical Biology & Medicine. 2016;93:155–64. doi:10.1016/j.freeradbiomed.2016.01.028.
  • Rotbart A, Yao CK, Ha N, Muir J, Gibson P, Kalantar-zadeh K, Ou JZ. Designing an in-vitro gas profiling system for human faecal samples. Sensors and Actuators B. 2017;238:754–64.
  • Levine J, Ellis CJ, Furne JK, Springfield J, Levitt MD. Fecal hydrogen sulfide production in ulcerative colitis. Am J Gastroenterol. 1998;93:83–7. doi:10.1111/j.1572-0241.1998.083_c.x. PMID:9448181
  • Strocchi A, Furne JK, Levitt MD. A modification of the methylene blue method to measure bacterial sulfide production in feces. J Microbiol Meth. 1992;15:75–82. doi:10.1016/0167-7012(92)90071-B.
  • Carbonero F, Benefiel AC, Alizadeh-Ghamsari AH, Gaskins HR. Microbial pathways in colonic sulfur metabolism and links with health and disease. Front physiol. 2012;3:448. doi:10.3389/fphys.2012.00448. PMID:23226130
  • Lewis S, Brazier J, Beard D, Nazem N, Proctor D. Effects of metronidazole and oligofructose on faecal concentrations of sulphate-reducing bacteria and their activity in human volunteers. Scand J Gastroenterol. 2005;40:1296–303. doi:10.1080/00365520510023585. PMID:16334439
  • Lewis S, Cochrane S. Alteration of sulfate and hydrogen metabolism in the human colon by changing intestinal transit rate. Am J Gastroenterol. 2007;102:624–33. doi:10.1111/j.1572-0241.2006.01020.x. PMID:17156141
  • Florin THJ. Hydrogen sulphide and total acid-volatile sulphide in faeces, determined with a direct spectrophotometric method. Clinica Chimica Acta. 1991;196:127–34. doi:10.1016/0009-8981(91)90065-K.
  • Edmond LM, Hopkins MJ, Magee EA, Cummings JH. The effect of 5-aminosalicylic acid-containing drugs on sulfide production by sulfate-reducing and amino acid-fermenting bacteria. Inflamm Bowel Dis. 2003;9:10–7. doi:10.1097/00054725-200301000-00002. PMID:12656132
  • Deng YF, Di Liao X, Wang Y, Liang JB, Tufarelli V. Prebiotics Mitigate In Vitro Sulfur-Containing Odour Generation in Caecal Content of Pigs. Ital J Anim Sci. 2015;14:3762. doi:10.4081/ijas.2015.3762.
  • Morine SJ, Drewnoski ME, Johnson AK, Hansen SL. Determining the influence of dietary roughage concentration and source on ruminal parameters related to sulfur toxicity. J Anim Sci. 2014;92:4068–76. doi:10.2527/jas.2013-6925. PMID:24663190
  • Toden S, Bird AR, Topping DL, Conlon MA. Resistant starch attenuates colonic DNA damage induced by higher dietary protein in rats. Nutr Cancer. 2005;51:45–51. doi:10.1207/s15327914nc5101_7. PMID:15749629
  • Younes H, Garleb K, Behr S, Remesy C, Demigne C. Fermentable fibers or oligosaccharides reduce urinary nitrogen excretion by increasing urea disposal in the rat cecum. J Nutr. 1995;125:1010–6. PMID:7722679
  • Birkett A, Muir J, Phillips J, Jones G, O'Dea K. Resistant starch lowers fecal concentrations of ammonia and phenols in humans. Am J Clin Nutr. 1996;63:766–72. doi:10.1093/ajcn/63.5.766. PMID:8615362
  • Geboes KP, De Hertogh G, De Preter V, Luypaerts A, Bammens B, Evenepoel P, Ghoos Y, Geboes K, Rutgeerts P, Verbeke K. The influence of inulin on the absorption of nitrogen and the production of metabolites of protein fermentation in the colon. Br J Nutr. 2006;96:1078–86. doi:10.1017/BJN20061936. PMID:17181883
  • Ross AB, Pere-Trepat E, Montoliu I, Martin FP, Collino S, Moco S, Godin JP, Cleroux M, Guy PA, Breton I, et al. A whole-grain-rich diet reduces urinary excretion of markers of protein catabolism and gut microbiota metabolism in healthy men after one week. J Nutr. 2013;143:766–73. doi:10.3945/jn.112.172197. PMID:23616503
  • Eswaran S, Muir J, Chey WD. Fiber and functional gastrointestinal disorders. Am J Gastroenterol. 2013;108:718–27. doi:10.1038/ajg.2013.63. PMID:23545709
  • Topping DL, Clifton PM. Short-chain fatty acids and human colonic function: roles of resistant starch and nonstarch polysaccharides. Physiol Rev. 2001;81:1031–64. doi:10.1152/physrev.2001.81.3.1031. PMID:11427691
  • Govers MJAP, Gannon NJ, Dunshea FR, Gibson PR, Muir JG. Wheat bran affects the site of fermentation of resistant starch and luminal indexes related to colon cancer risk: a study in pigs. Gut. 1999;45:840–7. doi:10.1136/gut.45.6.840. PMID:10562582
  • McIntyre A, Young GP, Taranto T, Gibson PR, Ward PB. Different fibers have different regional effects on luminal contents of rat colon. Gastroenterol. 1991;101:1274–81. doi:10.1016/0016-5085(91)90077-X.
  • Muir JG, Yeow EG, Keogh J, Pizzey C, Bird AR, Sharpe K, O'Dea K, Macrae FA. Combining wheat bran with resistant starch has more beneficial effects on fecal indexes than does wheat bran alone. Am J Clin Nutr. 2004;79:1020–8. doi:10.1093/ajcn/79.6.1020. PMID:15159232
  • Edwards CA, Gibson G, Champ M, Jensen BB, Mathers JC, Nagengast F, Rumney C, Quehl A. In vitro method for quantification of the fermentation of starch by Human faecal bacteria. J Sci Food Agri. 1996;71:209–17. doi:10.1002/(SICI)1097-0010(199606)71:2%3c209::AID-JSFA571%3e3.0.CO;2-4.
  • Florin T, Neale G, Gibson GR, Christl SU, Cummings JH. Metabolism of dietary sulphate: absorption and excretion in humans. Gut. 1991;32:766–73. doi:10.1136/gut.32.7.766. PMID:1855683
  • Florin TH, Neale G, Cummings JH. The effect of dietary nitrate on nitrate and nitrite excretion in man. Br J Nutr. 1990;64:387–97. doi:10.1079/BJN19900040. PMID:2223742
  • Mardini H, Lindsay D, Deighton C, Record C. Effect of polymer coating on faecal recovery of ingested 5-amino salicylic acid in patients with ulcerative colitis. Gut. 1987; 28:1084–9. doi:10.1136/gut.28.9.1084. PMID:3678967
  • McBurney M, Thompson L. Effect of human faecal donor on in vitro fermentation variables. Scand J Gastroenterol. 1989;24:359–67. doi:10.3109/00365528909093060. PMID:2544024

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.