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==Sensitivity==
==Sensitivity==
''C. diphtheriae'' is sensitive to the following antibiotics:<ref name="pmid4627747">{{cite journal |vauthors=Zamiri I, McEntegart MG |title=The sensitivity of diphtheria bacilli to eight antibiotics |journal=J. Clin. Pathol. |volume=25 |issue=8 |pages=716–7 |year=1972 |pmid=4627747 |pmc=477485 |doi= |url=}}</ref>
''C. diphtheriae'' is sensitive to the following antibiotics:<ref name="pmid4627747">{{cite journal |vauthors=Zamiri I, McEntegart MG |title=The sensitivity of diphtheria bacilli to eight antibiotics |journal=J. Clin. Pathol. |volume=25 |issue=8 |pages=716–7 |year=1972 |pmid=4627747 |pmc=477485 |doi= |url=}}</ref>
**[[Benzylpenicillin]]
*[[Benzylpenicillin]]
**[[Ampicillin]]
*[[Ampicillin]]
**[[Oxytetracycline]]
*[[Oxytetracycline]]
**[[Erythromycin]]
*[[Erythromycin]]
**[[Cephaloradine]]
*[[Cephaloradine]]
**[[Lincomycin]]
*[[Lincomycin]]
**[[Clindamycin]]
*[[Clindamycin]]
**[[Neomycin]]
*[[Neomycin]]


==Genetics==
==Genetics==

Revision as of 15:38, 13 October 2016

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This page is about microbiologic aspects of the organism(s).  For clinical aspects of the disease, see Diphtheria.

Editor-In-Chief: C. Michael Gibson, M.S., M.D. [1];

Corynebacterium diphtheriae
Gram stained Corynebacterium diphtheriae culture
Gram stained Corynebacterium diphtheriae culture
Scientific classification
Kingdom: Bacteria
Phylum: Actinobacteria
Order: Actinomycetales
Family: Corynebacteriaceae
Genus: Corynebacterium
Species: C. diphtheriae
Binomial name
Corynebacterium diphtheriae
Kruse, 1886

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Overview

Corynebacterium diphtheriae is a pathogenic bacterium that causes diphtheria. It is also known as the Klebs-Löffler bacillus, because it was discovered in 1884 by Germany|German bacteriologists Edwin Klebs (1834 – 1912) and Friedrich Löffler (1852 – 1915).

Morphology and Structure

Classification

C. diphtheriae can be classified into the following three subspecies:[1][5]

  • C. diphtheriae mitis
  • C. diphtheriae intermedius
  • C. diphtheriae gravis
  • C. diphtheriea belfanti[6]

Diagnosis

  • Diagnosis ofC. diphtheriae includes a Gram stain procedure.
    • Results will indicate gram-positive, pleomorphic bacteria that will dye violet-blue, club-shaped resembling Chinese characters.[6]
  • Additional tests include Albert's stain and Loeffler's stain.
  • C. diphtheriae should be cultured on an erichment medium, namely to allow it to overgrow any other organisms present in the specimen.[7]
    • A selective plate tellurite agar which allows all Corynebacteria (including C. diphtheriae) to reduce tellurite to metallic tellurium and produce brown colonies
      • C. diphtheriae is the only corynebacterium that will produce a black halo around the colonies.

Pathophysiology

  • C.diphtheriae causes diphtheria disease in non-immunized human hosts via secreted toxins.[1]
    • Toxigenic strains of the bacterium will secrete toxins in nasopharyngeal or skin lesions; it is common for hosts to carry C. diphtheriae in the nasopharyngeal region without displaying symptoms.
    • A low concentration of iron is required in the medium for toxin production; at high iron concentrations, iron molecules bind to a repressor which shuts down toxin production[8]
  • C.diphtheriae is transmitted through respiratory droplets, secretions, or direct contact.
  • Lysogenic conversion of nontoxigenic-toxigenic phenotypes of the bacterium can occur following transmission, allowing non-human/affected hosts to transmit diphtheria to humans.

Sensitivity

C. diphtheriae is sensitive to the following antibiotics:[9]

Genetics

References

  1. 1.0 1.1 1.2 Baron S, Murphy JR. PMID 21413281. Missing or empty |title= (help)
  2. Cerdeno-Tarraga, A. M. (2003). "The complete genome sequence and analysis of Corynebacterium diphtheriae NCTC13129". Nucleic Acids Research. 31 (22): 6516–6523. doi:10.1093/nar/gkg874. ISSN 1362-4962.
  3. Nester, Eugene W.; et al. (2004). Microbiology: A Human Perspective (Fourth ed.). Boston: McGraw-Hill. ISBN 0-07-247382-7.
  4. von Behring E, Kitasato S (1991). "[The mechanism of diphtheria immunity and tetanus immunity in animals. 1890]". Mol. Immunol. (in German). 28 (12): 1317, 1319–20. PMID 1749380.
  5. Chang DN, Laughren GS, Chalvardjian NE (1978). "Three variants of Corynebacterium diphtheriae subsp. mitis (Belfanti) isolated from a throat specimen". J. Clin. Microbiol. 8 (6): 767–8. PMC 275340. PMID 106070.
  6. 6.0 6.1 "Pinkbook | Diphtheria | Epidemiology of Vaccine Preventable Diseases | CDC".
  7. Nester, Eugene W.; et al. (2004). Microbiology: A Human Perspective (Fourth ed.). Boston: McGraw-Hill. ISBN 0-07-247382-7.
  8. Nester, Eugene W.; et al. (2004). Microbiology: A Human Perspective (Fourth ed.). Boston: McGraw-Hill. ISBN 0-07-247382-7.
  9. Zamiri I, McEntegart MG (1972). "The sensitivity of diphtheria bacilli to eight antibiotics". J. Clin. Pathol. 25 (8): 716–7. PMC 477485. PMID 4627747.

External links

  • CoryneRegNet - Database of Corynebacterial Transcription Factors and Regulatory Networks



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