Lactobacillus gasseri Gasser AM63(T) degrades oxalate in a multistage continuous culture simulator of the human colonic microbiota.
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Summary
Oxalate degradation was initiated in the first stage of the CCS, corresponding to the proximal colon, suggesting that this organism may have potential therapeutic use in managing oxalate kidney stone disease in humans.
- Type
- article
- Published
- 2007-07-01
- Cited by
- 46
- References
- 45
- Access
- Open access
- OpenAlex
- https://openalex.org/W17506826
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:46037368
Keywords
Art, Folklore, Humanities, Art history, Literature
References
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- The crystal structure of Cs[VOF3] · 12H2O
- DNA sequencing and expression of the formyl coenzyme A transferase gene, frc, from Oxalobacter formigenes
- Probiotics: an overview of beneficial effects
- Evidence for two functional gal promoters in intact Escherichia coli cells.
- Studies on the effect of system retention time on bacterial populations colonizing a three-stage continuous culture model of the human large gut using FISH techniques.
- Anaerobe Laboratory manual
- Purification and characterization of oxalyl-coenzyme A decarboxylase from Oxalobacter formigenes
- Oxalate:formate exchange. The basis for energy coupling in Oxalobacter.
- Fecal weight, colon cancer risk, and dietary intake of nonstarch polysaccharides (dietary fiber)
- Use of a probiotic to decrease enteric hyperoxaluria.
- Influence of retention time on degradation of pancreatic enzymes by human colonic bacteria grown in a 3-stage continuous culture system.
- Role of Oxalobacter formigenes in calcium oxalate stone disease: a study from North India.
- Survival of lactic acid bacteria in the human stomach and adhesion to intestinal cells.
- Oxalobacter formigenes gen. nov., sp. nov.: oxalate-degrading anaerobes that inhabit the gastrointestinal tract
- Validation of a Three-Stage Compound Continuous Culture System for Investigating the Effect of Retention Time on the Ecology and Metabolism of Bacteria in the Human Colon
- Environmental factors in the pathophysiology of recurrent idiopathic calcium urolithiasis (RCU), with emphasis on nutrition
Cited by
- Cross-Talk tra Bifidobacterium e intestino umano: impatto sulle attività health promoting
- Oxalate-degrading bacteria of the human gut as probiotics in the management of kidney stone disease.
- Role of oxalate metabolizing bacteria in calcium oxalate urolithiasis in dogs
- Evaluating oxalate-degrading Lactobacillus spp. for their ability to be used as probiotics in the treatment of kidney stone disease
- Construction of vectors for inducible and constitutive gene expression in Lactobacillus
- Molecular identification of oxalate-degrading lactobacillus in patients with calcium oxalate urolithiasis
- Probiotic-induced reduction of gastrointestinal oxalate absorption in healthy subjects
- In vitro degradation of oxalate by recombinant Lactobacillus plantarum expressing heterologous oxalate decarboxylase
- A functional analysis of the formyl‐coenzyme A (frc) gene from Lactobacillus reuteri 100‐23C
- Factors Related to Colonization with Oxalobacter formigenes in U.S. Adults
- Selective Breeding of Oxygen-Tolerant and Oxalate-Degrading Lactic Acid Bacteria by Protoplast Fusion
- Genomic features of Lactobacillus species.
- Prozdrowotne właściwości mikroorganizmów probiotycznych
- Analysis of the Genome Sequence of Lactobacillus gasseri ATCC 33323 Reveals the Molecular Basis of an Autochthonous Intestinal Organism
- Genomic and phenotypic evidence for probiotic influences of Lactobacillus gasseri on human health.
- Oxalate-Degrading Activity in Bifidobacterium animalis subsp. lactis: Impact of Acidic Conditions on the Transcriptional Levels of the Oxalyl Coenzyme A (CoA) Decarboxylase and Formyl-CoA Transferase Genes
- Experimental models of the gut microbiome.
- Effect of Blending and the Simultaneous Ingestion of a Probiotic Containing Oxalate-Degrading Bacteria on Oxalate Absorption
- Functional Genomic Analysis and Protein Expression in Lactobacillus
- Evaluation of the role of ltaS in the in vitro adhesion and immunomodulatory capacity of Lactobacillus gasseri ATCC 33323.
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