Literature DB >> 12149363

Development of a rapid real-time PCR assay for quantitation of Pneumocystis carinii f. sp. carinii.

Hans Henrik Larsen1, Joseph A Kovacs, Frida Stock, Vibeke H Vestereng, Bettina Lundgren, Steven H Fischer, Vee J Gill.   

Abstract

A method for reliable quantification of Pneumocystis carinii in research models of P. carinii pneumonia (PCP) that is more convenient and reproducible than microscopic enumeration of organisms would greatly facilitate investigations of this organism. We developed a rapid quantitative touchdown (QTD) PCR assay for detecting P. carinii f. sp. carinii, the subspecies of P. carinii commonly used in research models of PCP. The assay was based on the single-copy dihydrofolate reductase gene and was able to detect <5 copies of a plasmid standard per tube. It was reproducibly quantitative (r = 0.99) over 6 log values for standards containing > or =5 copies/tube. Application of the assay to a series of 10-fold dilutions of P. carinii organisms isolated from rat lung demonstrated that it was reproducibly quantitative over 5 log values (r = 0.99). The assay was applied to a recently reported in vitro axenic cultivation system for P. carinii and confirmed our microscopy findings that no organism multiplication had occurred during culture. For all cultures analyzed, QTD PCR assays showed a decrease in P. carinii DNA that exceeded the expected decrease due to dilution of the inoculum upon transfer. In conclusion, a rapid, sensitive, and reproducible quantitative PCR assay for P. carinii f. sp. carinii has been developed and is applicable to in vivo as well as in vitro systems. The assay should prove useful for conducting studies in which quantification of organism burden or growth assessment is critical, such as in vitro antimicrobic susceptibility testing or in vivo immunopathological experiments.

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Year:  2002        PMID: 12149363      PMCID: PMC120631          DOI: 10.1128/JCM.40.8.2989-2993.2002

Source DB:  PubMed          Journal:  J Clin Microbiol        ISSN: 0095-1137            Impact factor:   5.948


  22 in total

1.  Development and evaluation of a quantitative, touch-down, real-time PCR assay for diagnosing Pneumocystis carinii pneumonia.

Authors:  Hans Henrik Larsen; Henry Masur; Joseph A Kovacs; Vee J Gill; Victoria A Silcott; Palaniandy Kogulan; Janine Maenza; Margo Smith; Daniel R Lucey; Steven H Fischer
Journal:  J Clin Microbiol       Date:  2002-02       Impact factor: 5.948

2.  S-adenosylmethionine and Pneumocystis carinii.

Authors:  S Merali; D Vargas; M Franklin; A B Clarkson
Journal:  J Biol Chem       Date:  2000-05-19       Impact factor: 5.157

3.  Real time quantitative PCR and RT--PCR for analysis of Pneumocystis carinii hominis.

Authors:  K Kaiser; M Rabodonirina; S Picot
Journal:  J Microbiol Methods       Date:  2001-06       Impact factor: 2.363

4.  Development and evaluation of a molecular viability assay for Pneumocystis carinii.

Authors:  N Maher; S Vermund; M Lasbury; C Lee; M Bartlett; T R Unnasch
Journal:  J Clin Microbiol       Date:  2000-05       Impact factor: 5.948

5.  Pneumocystis carinii dihydropteroate synthase but not dihydrofolate reductase gene mutations correlate with prior trimethoprim-sulfamethoxazole or dapsone use.

Authors:  L Ma; L Borio; H Masur; J A Kovacs
Journal:  J Infect Dis       Date:  1999-12       Impact factor: 5.226

6.  Genetic divergence of the dihydrofolate reductase and dihydropteroate synthase genes in Pneumocystis carinii from 7 different host species.

Authors:  L Ma; H Imamichi; A Sukura; J A Kovacs
Journal:  J Infect Dis       Date:  2001-10-10       Impact factor: 5.226

7.  S-adenosyl methionine requiring mutants in Saccharomyces cerevisiae: evidences for the existence of two methionine adenosyl transferases.

Authors:  H Cherest; Y Surdin-Kerjan
Journal:  Mol Gen Genet       Date:  1978-07-11

8.  Pneumocystis carinii and specific fungi have a common epitope, identified by a monoclonal antibody.

Authors:  B Lundgren; J A Kovacs; N N Nelson; F Stock; A Martinez; V J Gill
Journal:  J Clin Microbiol       Date:  1992-02       Impact factor: 5.948

9.  Identification of antigens and antibodies specific for Pneumocystis carinii.

Authors:  J A Kovacs; J L Halpern; J C Swan; J Moss; J E Parrillo; H Masur
Journal:  J Immunol       Date:  1988-03-15       Impact factor: 5.422

10.  Isolation and expression of the Pneumocystis carinii dihydrofolate reductase gene.

Authors:  J C Edman; U Edman; M Cao; B Lundgren; J A Kovacs; D V Santi
Journal:  Proc Natl Acad Sci U S A       Date:  1989-11       Impact factor: 11.205

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  16 in total

1.  Clinical significance of quantifying Pneumocystis jirovecii DNA by using real-time PCR in bronchoalveolar lavage fluid from immunocompromised patients.

Authors:  Françoise Botterel; Odile Cabaret; Françoise Foulet; Catherine Cordonnier; Jean-Marc Costa; Stéphane Bretagne
Journal:  J Clin Microbiol       Date:  2011-12-07       Impact factor: 5.948

Review 2.  Real-time PCR in clinical microbiology: applications for routine laboratory testing.

Authors:  M J Espy; J R Uhl; L M Sloan; S P Buckwalter; M F Jones; E A Vetter; J D C Yao; N L Wengenack; J E Rosenblatt; F R Cockerill; T F Smith
Journal:  Clin Microbiol Rev       Date:  2006-01       Impact factor: 26.132

3.  Validation of the MycAssay Pneumocystis kit for detection of Pneumocystis jirovecii in bronchoalveolar lavage specimens by comparison to a laboratory standard of direct immunofluorescence microscopy, real-time PCR, or conventional PCR.

Authors:  Lisa R McTaggart; Nancy L Wengenack; Susan E Richardson
Journal:  J Clin Microbiol       Date:  2012-03-14       Impact factor: 5.948

4.  Usefulness of 1,3 Beta-D-Glucan Detection in non-HIV Immunocompromised Mechanical Ventilated Critically Ill Patients with ARDS and Suspected Pneumocystis jirovecii Pneumonia.

Authors:  Tobias Lahmer; Clarissa Prazeres da Costa; Jürgen Held; Sebastian Rasch; Ursula Ehmer; Roland M Schmid; Wolfgang Huber
Journal:  Mycopathologia       Date:  2017-04-04       Impact factor: 2.574

5.  Pneumocystis murina MSG gene family and the structure of the locus associated with its transcription.

Authors:  Scott P Keely; Michael J Linke; Melanie T Cushion; James R Stringer
Journal:  Fungal Genet Biol       Date:  2007-01-10       Impact factor: 3.495

6.  Detection of Pneumocystis jirovecii by two staining methods and two quantitative PCR assays.

Authors:  P Rohner; V Jacomo; R Studer; J Schrenzel; J-D Graf
Journal:  Infection       Date:  2008-12-05       Impact factor: 3.553

7.  Primary pneumocystis infection in infants hospitalized with acute respiratory tract infection.

Authors:  Hans Henrik Larsen; Marie-Louise von Linstow; Bettina Lundgren; Birthe Høgh; Henrik Westh; Jens D Lundgren
Journal:  Emerg Infect Dis       Date:  2007-01       Impact factor: 6.883

8.  Sequencing and characterization of the complete mitochondrial genomes of three Pneumocystis species provide new insights into divergence between human and rodent Pneumocystis.

Authors:  Liang Ma; Da-Wei Huang; Christina A Cuomo; Sean Sykes; Giovanna Fantoni; Biswajit Das; Brad T Sherman; Jun Yang; Charles Huber; Yun Xia; Emma Davey; Geetha Kutty; Lisa Bishop; Monica Sassi; Richard A Lempicki; Joseph A Kovacs
Journal:  FASEB J       Date:  2013-02-07       Impact factor: 5.191

9.  Comparison of quantitative reverse transcription-PCR to viral culture for assessment of respiratory syncytial virus shedding.

Authors:  Ann R Falsey; Maria A Formica; John J Treanor; Edward E Walsh
Journal:  J Clin Microbiol       Date:  2003-09       Impact factor: 5.948

Review 10.  The Persistent Challenge of Pneumocystis Growth Outside the Mammalian Lung: Past and Future Approaches.

Authors:  Melanie T Cushion; Nikeya Tisdale-Macioce; Steven G Sayson; Aleksey Porollo
Journal:  Front Microbiol       Date:  2021-05-20       Impact factor: 5.640

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