Lower intraluminal colonic pH is an indication for the development of inflammatory bowel disease including active ulcerative colitis. Involvement of intestinal sulfate-reducing bacteria in decreasing bowel pH by the production of H2S and acetate as well as their sensitivity has never been reported before. The study of the relative pH and survival of Desulfovibrio piger Vib-7 by monitoring sulfate reduction parameters was the aim of this work. Monitoring was done through the measurement of bacterial growth (biomass), dissimilatory sulfate reduction parameters: sulfate consumption, lactate oxidation, hydrogen sulfide and acetate production. According to our results, we observed that lower pH (9 pH) was used, though the reduction was not at th...
There is increasing evidence that hydrogen sulfide (H2S), produced by intestinal sulfate-reducing ba...
It has been proposed that the reduction in n-butyrate oxidation by colonic epithelial cells observed...
The anaerobic, sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough has been suggested to...
Intestinal sulfate-reducing bacteria are often isolated from patients with inflammatory bowel diseas...
The small-large intestine axis in hydrogen sulfide accumulation and testing of sulfate and lactate i...
The study of the intestinal sulfate-reducing bacteria, the process of dissimilatory sulfate reductio...
Inflammatory bowel disease including ulcerative colitis are complex multifactorial diseases of unkno...
Growth of Desulfovibrio piger Vib-7 bacteria of human intestine under the influence of the electron ...
The sulfate-reducing bacteria have been isolated from human intestine. These bacteria are identified...
Sulfate-reducing bacteria (SRB) are often isolated from animals and people with ulcerative colitis a...
Sulfate-reducing bacteria (SRB) are anaerobic microorganisms, which use sulfate as an electron accep...
The gut microbiota is a complex component of humans that depends on diet, host genome, and lifestyle...
238 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.Ulcerative colitis (UC) and c...
New strains of sulfate-reducing bacteria from human intestine are obtained. These bacteria are vibri...
correspondence should be addressed. The product of the biological sulphate reduction is sulphide. Hi...
There is increasing evidence that hydrogen sulfide (H2S), produced by intestinal sulfate-reducing ba...
It has been proposed that the reduction in n-butyrate oxidation by colonic epithelial cells observed...
The anaerobic, sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough has been suggested to...
Intestinal sulfate-reducing bacteria are often isolated from patients with inflammatory bowel diseas...
The small-large intestine axis in hydrogen sulfide accumulation and testing of sulfate and lactate i...
The study of the intestinal sulfate-reducing bacteria, the process of dissimilatory sulfate reductio...
Inflammatory bowel disease including ulcerative colitis are complex multifactorial diseases of unkno...
Growth of Desulfovibrio piger Vib-7 bacteria of human intestine under the influence of the electron ...
The sulfate-reducing bacteria have been isolated from human intestine. These bacteria are identified...
Sulfate-reducing bacteria (SRB) are often isolated from animals and people with ulcerative colitis a...
Sulfate-reducing bacteria (SRB) are anaerobic microorganisms, which use sulfate as an electron accep...
The gut microbiota is a complex component of humans that depends on diet, host genome, and lifestyle...
238 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.Ulcerative colitis (UC) and c...
New strains of sulfate-reducing bacteria from human intestine are obtained. These bacteria are vibri...
correspondence should be addressed. The product of the biological sulphate reduction is sulphide. Hi...
There is increasing evidence that hydrogen sulfide (H2S), produced by intestinal sulfate-reducing ba...
It has been proposed that the reduction in n-butyrate oxidation by colonic epithelial cells observed...
The anaerobic, sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough has been suggested to...