Literature DB >> 12065476

Borrelia burgdorferi population kinetics and selected gene expression at the host-vector interface.

Emir Hodzic1, Sunlian Feng, Kimberly J Freet, Dori L Borjesson, Stephen W Barthold.   

Abstract

By using real-time quantitative PCR, the population dynamics and gene transcription of Borrelia burgdorferi were examined in ticks and skin of mice during acquisition of the infection from mice by ticks and during transmission of the infection from ticks to mice. Population dynamics were determined by using a flaB DNA target. A quantitative analysis of flaB, ospA, ospC, dbpA, and arp transcription was also performed. The results revealed that both uninfected larval and nymphal Ixodes scapularis ticks acquired B. burgdorferi as early as 1 day after attachment and that the sizes of spirochete populations within ticks increased during feeding. In addition, all gene targets revealed that there was RNA transcription during feeding. Similar events occurred within infected nymphal ticks feeding on uninfected hosts. Transmission from infected nymphal ticks to mice could be detected within 1 day after attachment. Analysis of skin during the first 3 days after attachment of infected ticks revealed rising numbers of spirochetes but minimal gene transcription. In contrast, the skin of mice with established infections revealed static populations of spirochetes and active but stable transcription of flaB, ospC, dbpA, and arp. There were consistent reductions in the number of spirochetes in the skin at the tick attachment sites compared to the number of spirochetes in the skin at nontick sites, but there were no differences in gene expression between tick and nontick skin sites. Evidence of ospA transcription in skin could be found 1 day after tick attachment but not thereafter.

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Year:  2002        PMID: 12065476      PMCID: PMC128091          DOI: 10.1128/IAI.70.7.3382-3388.2002

Source DB:  PubMed          Journal:  Infect Immun        ISSN: 0019-9567            Impact factor:   3.441


  45 in total

1.  Tick factors and in vitro cultivation influence the protein profile, antigenicity and pathogenicity of a cloned Borrelia garinii isolate from Ixodes ricinus hemolymph.

Authors:  C M Hu; M Simon; M D Kramer; L Gern
Journal:  Infection       Date:  1996 May-Jun       Impact factor: 3.553

Review 2.  Arthropod- and host-specific gene expression by Borrelia burgdorferi.

Authors:  A M de Silva; E Fikrig
Journal:  J Clin Invest       Date:  1997-02-01       Impact factor: 14.808

3.  Plasminogen is required for efficient dissemination of B. burgdorferi in ticks and for enhancement of spirochetemia in mice.

Authors:  J L Coleman; J A Gebbia; J Piesman; J L Degen; T H Bugge; J L Benach
Journal:  Cell       Date:  1997-06-27       Impact factor: 41.582

4.  Growth and migration of Borrelia burgdorferi in Ixodes ticks during blood feeding.

Authors:  A M De Silva; E Fikrig
Journal:  Am J Trop Med Hyg       Date:  1995-10       Impact factor: 2.345

5.  Cell-density-dependent expression of Borrelia burgdorferi lipoproteins in vitro.

Authors:  K J Indest; R Ramamoorthy; M Solé; R D Gilmore; B J Johnson; M T Philipp
Journal:  Infect Immun       Date:  1997-04       Impact factor: 3.441

6.  Temperature-related differential expression of antigens in the Lyme disease spirochete, Borrelia burgdorferi.

Authors:  B Stevenson; T G Schwan; P A Rosa
Journal:  Infect Immun       Date:  1995-11       Impact factor: 3.441

7.  Transmission of Borrelia burgdorferi by Ixodes pacificus nymphs and reservoir competence of deer mice (Peromyscus maniculatus) infected by tick-bite.

Authors:  C A Peavey; R S Lane
Journal:  J Parasitol       Date:  1995-04       Impact factor: 1.276

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Authors:  S W Barthold; M S de Souza; J L Janotka; A L Smith; D H Persing
Journal:  Am J Pathol       Date:  1993-09       Impact factor: 4.307

9.  Expression of outer surface proteins A and C of Borrelia burgdorferi in Ixodes ricinus.

Authors:  V Fingerle; U Hauser; G Liegl; B Petko; V Preac-Mursic; B Wilske
Journal:  J Clin Microbiol       Date:  1995-07       Impact factor: 5.948

10.  Borrelia burgdorferi shows specificity of binding to glycosphingolipids.

Authors:  P B Backenson; J L Coleman; J L Benach
Journal:  Infect Immun       Date:  1995-08       Impact factor: 3.441

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  59 in total

1.  Dynamic changes in Lyme disease spirochetes during transmission by nymphal ticks.

Authors:  Joseph Piesman; Bradley S Schneider
Journal:  Exp Appl Acarol       Date:  2002       Impact factor: 2.132

2.  Immunogenicity of Borrelia burgdorferi arthritis-related protein.

Authors:  Sunlian Feng; Emir Hodzic; Kimberly Freet; Stephen W Barthold
Journal:  Infect Immun       Date:  2003-12       Impact factor: 3.441

3.  Borrelia burgdorferi population dynamics and prototype gene expression during infection of immunocompetent and immunodeficient mice.

Authors:  Emir Hodzic; Sunlian Feng; Kim J Freet; Stephen W Barthold
Journal:  Infect Immun       Date:  2003-09       Impact factor: 3.441

4.  Feeding of ticks on animals for transmission and xenodiagnosis in Lyme disease research.

Authors:  Monica E Embers; Britton J Grasperge; Mary B Jacobs; Mario T Philipp
Journal:  J Vis Exp       Date:  2013-08-31       Impact factor: 1.355

5.  Improving the yield of blood cultures from patients with early Lyme disease.

Authors:  Dionysios Liveris; Ira Schwartz; Susan Bittker; Denise Cooper; Radha Iyer; Mary E Cox; Gary P Wormser
Journal:  J Clin Microbiol       Date:  2011-04-13       Impact factor: 5.948

6.  Reservoir targeted vaccine against Borrelia burgdorferi: a new strategy to prevent Lyme disease transmission.

Authors:  Luciana Meirelles Richer; Dustin Brisson; Rita Melo; Richard S Ostfeld; Nordin Zeidner; Maria Gomes-Solecki
Journal:  J Infect Dis       Date:  2014-02-11       Impact factor: 5.226

Review 7.  Biology of infection with Borrelia burgdorferi.

Authors:  Kit Tilly; Patricia A Rosa; Philip E Stewart
Journal:  Infect Dis Clin North Am       Date:  2008-06       Impact factor: 5.982

8.  Borrelia burgdorferi bba74 is expressed exclusively during tick feeding and is regulated by both arthropod- and mammalian host-specific signals.

Authors:  Vishwaroop B Mulay; Melissa J Caimano; Radha Iyer; Star Dunham-Ems; Dionysios Liveris; Mary M Petzke; Ira Schwartz; Justin D Radolf
Journal:  J Bacteriol       Date:  2009-02-13       Impact factor: 3.490

9.  A chromosomally encoded virulence factor protects the Lyme disease pathogen against host-adaptive immunity.

Authors:  Xiuli Yang; Adam S Coleman; Juan Anguita; Utpal Pal
Journal:  PLoS Pathog       Date:  2009-03-06       Impact factor: 6.823

10.  Interaction of Borrelia burgdorferi Hbb with the p66 promoter.

Authors:  Melisa S Medrano; Paul F Policastro; Tom G Schwan; Jenifer Coburn
Journal:  Nucleic Acids Res       Date:  2009-11-12       Impact factor: 16.971

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