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Published on: April 7, 2015
Is the perceived association between Chlamydia pneumoniae and vascular diseases biased by methodology?
Boulos Maraha1, Hans Berg, Marjolein Kerver
1Regional Laboratory Medical Microbiology, P.O. Box 899, 3300 AW, Dordrecht, The Netherlands. b.maraha@asz.nl
Insights
Inconsistent detection of Chlamydia pneumoniae in vascular tissue is a concern. This study highlights factors like DNA polymerase choice and contamination that affect PCR results, impacting the understanding of its link to vascular diseases.
Area of Science:
- Microbiology
- Molecular Biology
- Cardiovascular Science
Background:
- Inconsistencies in detecting Chlamydia pneumoniae in vascular specimens exist.
- The role of Chlamydia pneumoniae in vascular diseases is debated due to detection variability.
Purpose of the Study:
- To investigate factors influencing Chlamydia pneumoniae DNA detection in vascular tissues.
- To evaluate different PCR methods and DNA polymerases for Chlamydia pneumoniae detection.
- To identify strategies to improve the reliability of Chlamydia pneumoniae detection in vascular disease research.
Main Methods:
- Tested 66 vascular tissue specimens using three PCR assays: 16S PCR-based reverse line blot (RLB), single-step PCR, and nested PCR.
- Assessed the impact of different DNA polymerase enzymes on PCR results via gel electrophoresis and hybridization.
- Sequenced positive Chlamydia sp. samples to identify organisms.
Main Results:
- Single-step PCR results varied significantly with DNA polymerase: negative with AmpliTaq Gold, 54.5% positive with conventional Taq.
- All samples were negative for Chlamydia pneumoniae by hybridization and nested PCR.
- RLB assay detected Chlamydia sp. in 20 specimens and showed contamination in water and buffers.
Conclusions:
- DNA polymerase choice critically affects Chlamydia pneumoniae detection sensitivity.
- Contamination and non-specific binding are significant issues in PCR detection of Chlamydia species.
- Recommendations include using activated DNA polymerases, decontamination, specific probes, controls, and molecular grade water for accurate detection.
Abstract:
Inter- and intralaboratory inconsistencies in detection rates of Chlamydia pneumoniae in vascular specimens have been demonstrated. In this study, 66 vascular tissue specimens from 66 patients with vascular disease were tested by three PCR assays: a 16S PCR-based reverse line blot (RLB) assay, a single-step PCR, and a nested PCR. Also, we explored the impacts of different DNA polymerase enzymes on the results based on gel electrophoresis and hybridization. The PCR results by gel electrophoresis in the single-step PCR depended on which DNA polymerase was used. All samples were negative with AmpliTaq Gold DNA polymerase, and 54.5% (36 of 66) were positive with the conventional Taq DNA polymerase. All samples were negative after hybridization with a C. pneumoniae-specific probe. In the nested PCR, all specimens were negative by gel electrophoresis and after hybridization. The RLB assay failed to detect C. pneumoniae in any specimen; however, 20 specimens were Chlamydia sp. positive. The sequence analysis of six of these samples demonstrated Chlamydia-like organisms. RLB detected Chlamydia sp. DNA in water and in the elution buffer after passage of the Qiagen columns (11 of 40). This study identified factors that may influence the detection of C. pneumoniae DNA in vascular tissues and consequently bias the perception of a link between C. pneumoniae and vascular diseases. The following are strongly recommended: to use DNA polymerases that have to be activated, to decontaminate with dUTP-uracil-DNA glycosylase, to hybridize with specific probes, to include sufficient controls, and to use molecular grade water.
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