Literature DB >> 18667557

Germination of spores of Clostridium difficile strains, including isolates from a hospital outbreak of Clostridium difficile-associated disease (CDAD).

Daniel Paredes-Sabja1, Colton Bond, Robert J Carman, Peter Setlow, Mahfuzur R Sarker.   

Abstract

Clostridium difficile is an emerging nosocomial pathogen and one of the major causes of antibiotic-associated diarrhoea. Cases of Clostridium difficile-associated disease (CDAD) are likely initiated by the ingestion of dormant C. difficile spores, which then germinate, outgrow and rapidly proliferate to cause gastrointestinal (GI) infections. To understand the initial stages of CDAD pathogenesis, we have characterized the germination of spores from a collection of C. difficile strains, including some clinical isolates obtained from a CDAD outbreak (CDAD isolates). Spores of one laboratory strain and five CDAD isolates did not germinate with amino acids, but did germinate on a nutrient-rich medium. However, bile salts had little effect on spore germination, either alone or in a nutrient-rich medium. These spores also germinated with KCl, as well as the non-nutrient germinants dodecylamine and a 1 : 1 chelate of Ca(2+) and dipicolinic acid. An unexpected finding was that spores of most of the C. difficile strains also germinated with inorganic phosphate (P(i)) with a pH optimum of 6. The in vitro germination of spores of CDAD strains with KCl and P(i), two molecules present at significant levels in the GI tract, suggests that C. difficile spores germinate in the human body by sensing P(i) in the early segments of the duodenum and KCl in the colon.

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Year:  2008        PMID: 18667557     DOI: 10.1099/mic.0.2008/016592-0

Source DB:  PubMed          Journal:  Microbiology        ISSN: 1350-0872            Impact factor:   2.777


  20 in total

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Authors:  Paul Moayyedi; Grigorios I Leontiadis
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2012-02-14       Impact factor: 46.802

2.  Functional characterization of Clostridium difficile spore coat proteins.

Authors:  Patima Permpoonpattana; Jutarop Phetcharaburanin; Anna Mikelsone; Marcin Dembek; Sisareuth Tan; Marie-Clémence Brisson; Roberto La Ragione; Alain R Brisson; Neil Fairweather; Huynh A Hong; Simon M Cutting
Journal:  J Bacteriol       Date:  2013-01-18       Impact factor: 3.490

3.  Surface layers of Clostridium difficile endospores.

Authors:  Patima Permpoonpattana; Elisabeth H Tolls; Ramez Nadem; Sisareuth Tan; Alain Brisson; Simon M Cutting
Journal:  J Bacteriol       Date:  2011-09-23       Impact factor: 3.490

4.  The Impact of pH on Clostridioides difficile Sporulation and Physiology.

Authors:  Daniela Wetzel; Shonna M McBride
Journal:  Appl Environ Microbiol       Date:  2020-02-03       Impact factor: 4.792

Review 5.  A possible route for foodborne transmission of Clostridium difficile?

Authors:  Barbara M Lund; Michael W Peck
Journal:  Foodborne Pathog Dis       Date:  2015-01-19       Impact factor: 3.171

6.  Moist-heat resistance, spore aging, and superdormancy in Clostridium difficile.

Authors:  Alexander Rodriguez-Palacios; Jeffrey T Lejeune
Journal:  Appl Environ Microbiol       Date:  2011-03-11       Impact factor: 4.792

Review 7.  Prescribing proton pump inhibitors: is it time to pause and rethink?

Authors:  Nimish Vakil
Journal:  Drugs       Date:  2012-03-05       Impact factor: 9.546

8.  Identification and characterization of glycoproteins on the spore surface of Clostridium difficile.

Authors:  Philippa C R Strong; Kelly M Fulton; Annie Aubry; Simon Foote; Susan M Twine; Susan M Logan
Journal:  J Bacteriol       Date:  2014-05-09       Impact factor: 3.490

9.  Isolating and Purifying Clostridium difficile Spores.

Authors:  Adrianne N Edwards; Shonna M McBride
Journal:  Methods Mol Biol       Date:  2016

10.  Potentiating Effect of Mandelate and Lactate on Chemically Induced Germination in Members of Bacillus cereus Sensu Lato.

Authors:  Alistair H Bishop
Journal:  Appl Environ Microbiol       Date:  2017-12-01       Impact factor: 4.792

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