In vitro degradation of oxalate by recombinant Lactobacillus plantarum expressing heterologous oxalate decarboxylase
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Summary
The aim of the present study is to constitutively express heterologous oxalate decarboxylase (OxdC) in Lactobacillus plantarum and to examine its ability to degrade oxalates in vitro for their future therapy against enteric hyperoxaluria.
- Type
- article
- Published
- 2013-09-01
- Cited by
- 51
- References
- 42
- OpenAlex
- https://openalex.org/W1992017503
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:43104788
Keywords
Lactobacillus plantarum, Recombinant DNA, In vitro, Oxalate, Heterologous
References
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- Heterologous Expression of Oxalate Decarboxylase in Lactobacillus plantarum NC8
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- Introduction of Plasmid DNA into Cells
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- Potential and opportunities for use of recombinant lactic acid bacteria in human health.
- Lactobacillus plantarum ldhL gene: overexpression and deletion
- A Closed Conformation of Bacillus subtilis Oxalate Decarboxylase OxdC Provides Evidence for the True Identity of the Active Site*
- Use of a probiotic to decrease enteric hyperoxaluria.
- Nephrolithiasis in childhood inflammatory bowel disease.
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- Genetically modified lactic acid bacteria: applications to food or health and risk assessment.
- Oxalobacter formigenes gen. nov., sp. nov.: oxalate-degrading anaerobes that inhabit the gastrointestinal tract
- An improved colorimetric procedure for urine oxalate.
- Inhibition of allergen-induced airway inflammation and hyperreactivity by recombinant lactic-acid bacteria.
- Oxalobacter formigenes: a potential tool for the treatment of primary hyperoxaluria type 1.
- Lactococcus lactis: high‐level expression of tetanus toxin fragment C and protection against lethal challenge
- Effect of lactic acid bacteria probiotic culture treatment timing on Salmonella Enteritidis in neonatal broilers.
- Treatment of murine colitis by Lactococcus lactis secreting interleukin-10.
- Oxalate degrading bacteria: new treatment option for patients with primary and secondary hyperoxaluria?
Cited by
- Genetically Engineered Lactobacillus plantarum WCFS1 Constitutively Secreting Heterologous Oxalate Decarboxylase and Degrading Oxalate Under In Vitro
- Screening of Indigenous Oxalate Degrading Lactic Acid Bacteria from Human Faeces and South Indian Fermented Foods: Assessment of Probiotic Potential
- Recombinant Lactobacillus plantarum expressing and secreting heterologous oxalate decarboxylase prevents renal calcium oxalate stone deposition in experimental rats
- Heterologous Protein Secretion in Lactobacilli with Modified pSIP Vectors
- Mobile group II intron based gene targeting in Lactobacillus plantarum WCFS1
- Secretory production of a beta-mannanase and a chitosanase using a Lactobacillus plantarum expression system
- Update on probiotics for the treatment of calcium oxalate stones
- Protein Secretion in Gram-Positive Bacteria: From Multiple Pathways to Biotechnology.
- Protective efficacy of Fc targeting conserved influenza virus M2e antigen expressed by Lactobacillus plantarum
- Cross-protective efficacy of dendritic cells targeting conserved influenza virus antigen expressed by Lactobacillus plantarum
- Screening of Oxalate Degrading Lactic Acid Bacteria of Food Origin
- Effect of pH and Temperature on Bacillus subtilis FNCC 0059 Oxalate Decarboxylase Activity.
- Recombinant Lactobacillus plantarum expressing HA2 antigen elicits protective immunity against H9N2 avian influenza virus in chickens
- Oxalate-Degrading Enzyme Recombined Lactic Acid Bacteria Strains Reduce Hyperoxaluria.
- Designer probiotic Lactobacillus plantarum expressing oxalate decarboxylase developed using group II intron degrades intestinal oxalate in hyperoxaluric rats.
- Construction and characterization of thymidine auxotrophic (ΔthyA) recombinant Lactobacillus casei expressing bovine lactoferricin
- Probiotics Supplements for the Management of Calcium Oxalate Kidney Stones-Are We Ready for it?
- Chromosomal integration of heterologous oxalate decarboxylase in Lactobacillus plantarum WCFS1 using mobile genetic element Ll.LtrB
- Manipulation of oxalate metabolism in plants for improving food quality and productivity.
- Targeting ideal oral vaccine vectors based on probiotics: a systematical view
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