Use of lambda phage DNA as a hybrid internal control in a PCR-enzyme immunoassay to detect Chlamydia pneumoniae

D G Pham1, G E Madico, T C Quinn

  • 1Division of Infectious Diseases, The Johns Hopkins University, Baltimore, Maryland 21205, USA.

Insights

A novel hybrid internal control (HIC) was developed to detect inhibitors in Chlamydia pneumoniae PCR diagnostic assays. This method confirms true-negative results by ruling out false negatives caused by amplification inhibitors.

Area of Science:

  • Molecular Biology
  • Diagnostic Assays
  • Microbiology

Background:

  • Polymerase Chain Reaction (PCR) assays are susceptible to inhibition by unknown substances in clinical specimens, leading to false-negative results.
  • Accurate detection of Chlamydia pneumoniae relies on reliable PCR performance, which can be compromised by inhibitors.
  • Internal controls are crucial for validating PCR results and ensuring assay reliability.

Purpose of the Study:

  • To develop and validate a hybrid internal control (HIC) for Chlamydia pneumoniae PCR assays.
  • To assess the HIC's ability to identify specimens containing PCR inhibitors.
  • To improve the accuracy and reliability of Chlamydia pneumoniae diagnostic testing.

Main Methods:

  • Synthesized hybrid primers targeting both Chlamydia pneumoniae 16S rRNA and lambda phage DNA.
  • Generated and cloned hybrid DNA (HIC) for use as an internal control in PCR.
  • Developed a PCR-Enzyme Immunoassay (EIA) system incorporating the HIC for detection.
  • Tested the HIC system on known positive/negative specimens and clinical nasopharyngeal samples.

Main Results:

  • The HIC system successfully identified inhibitory specimens, distinguishing them from true negatives.
  • In initial tests, 1 out of 12 positive and 1 out of 14 negative specimens showed inhibition.
  • In a clinical study, 8.9% of nasopharyngeal specimens were positive for C. pneumoniae, and 17.7% inhibited the PCR.
  • Further purification was required for 10 specimens exhibiting persistent inhibitory activity.

Conclusions:

  • Coamplification of a hybrid internal control (HIC) effectively confirms true-negative PCR results by ruling out inhibitors.
  • The developed PCR-EIA system with HIC enhances the diagnostic accuracy of Chlamydia pneumoniae detection.
  • This approach is valuable for identifying and managing PCR inhibition in clinical diagnostics.

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