Literature DB >> 9203662

Evidence for a commensal, symbiotic relationship between Gardnerella vaginalis and Prevotella bivia involving ammonia: potential significance for bacterial vaginosis.

V Pybus1, A B Onderdonk.   

Abstract

Six strains of Prevotella bivia and 4 of Gardnerella vaginalis were examined for nutrient substrate utilization as part of ongoing studies on the pathogenesis of bacterial vaginosis. Addition of single amino acids to vaginal defined medium (VDM) was stimulatory to the growth of P. bivia but not to G. vaginalis. However, peptides significantly promoted the growth of both organisms. Growth of P. bivia in VDM and VDM supplemented with either amino acids or peptone was accompanied by net ammonia production, while growth of G. vaginalis under the same conditions resulted in net ammonia utilization. Ammonia-enriched supernatants from the growth of P. bivia in peptone-supplemented VDM were stimulatory to G. vaginalis growth. However, ammonia-reduced supernatants from G. vaginalis growth in peptone-supplemented VDM had a neutral effect on P. bivia growth. A commensal relationship between P. bivia to G. vaginalis is proposed, with ammonia flow as a mechanism to support this hypothesis.

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Year:  1997        PMID: 9203662     DOI: 10.1093/infdis/175.2.406

Source DB:  PubMed          Journal:  J Infect Dis        ISSN: 0022-1899            Impact factor:   5.226


  61 in total

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3.  Findings associated with recurrence of bacterial vaginosis among adolescents attending sexually transmitted diseases clinics.

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5.  An Updated Conceptual Model on the Pathogenesis of Bacterial Vaginosis.

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6.  Gardnerella and Prevotella: Co-conspirators in the Pathogenesis of Bacterial Vaginosis.

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7.  Gardnerella vaginalis and Prevotella bivia Trigger Distinct and Overlapping Phenotypes in a Mouse Model of Bacterial Vaginosis.

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Journal:  J Infect Dis       Date:  2019-08-30       Impact factor: 5.226

8.  Detection of Atopobium vaginae in postmenopausal women by cultivation-independent methods warrants further investigation.

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9.  Molecular analysis of the diversity of vaginal microbiota associated with bacterial vaginosis.

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Review 10.  New Systems for Studying Intercellular Interactions in Bacterial Vaginosis.

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