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Published on: November 5, 2020
Evaluation of inhibitor-resistant real-time PCR methods for diagnostics in clinical and environmental samples
Adrienne Trombley Hall1, Ashley McKay Zovanyi, Deanna Rose Christensen
1Diagnostic Systems Division, United States Army Medical Research Institute of Infectious Diseases, Fort Detrick, Maryland, United States of America.
Abstract:
Polymerase chain reaction (PCR) is commonly used for pathogen detection in clinical and environmental samples. These sample matrices often contain inhibitors of PCR, which is a primary reason for sample processing; however, the purification process is highly inefficient, becoming unacceptable at lower signature concentrations. One potential solution is direct PCR assessment without sample processing. Here, we evaluated nine inhibitor-resistant PCR reagents for direct detection of Francisella tularensis in seven different clinical and environmental samples using an established real-time PCR assay to assess ability to overcome PCR inhibition. While several of these reagents were designed for standard PCR, the described inhibitor resistant properties (ex. Omni Klentaq can amplify target DNA samples of up to 20% whole blood or soil) led to our evaluation with real-time PCR. A preliminary limit of detection (LOD) was determined for each chemistry in whole blood and buffer, and LODs (20 replicates) were determined for the top five chemistries in each matrix (buffer, whole blood, sputum, stool, swab, soil, and sand). Not surprisingly, no single chemistry performed the best across all of the different matrices evaluated. For instance, Phusion Blood Direct PCR Kit, Phire Hot Start DNA polymerase, and Phire Hot Start DNA polymerase with STR Boost performed best for direct detection in whole blood while Phire Hot Start DNA polymerase with STR Boost were the only reagents to yield an LOD in the femtogram range for soil. Although not the best performer across all matrices, KAPA Blood PCR kit produced the most consistent results among the various conditions assessed. Overall, while these inhibitor resistant reagents show promise for direct amplification of complex samples by real-time PCR, the amount of template required for detection would not be in a clinically relevant range for most matrices.
Insights
Directly detecting pathogens like Francisella tularensis using inhibitor-resistant polymerase chain reaction (PCR) reagents shows promise for complex samples. However, current methods require higher template amounts than clinically relevant for most sample types.
Area of Science:
- Molecular Biology
- Biotechnology
- Clinical Diagnostics
Background:
- Polymerase chain reaction (PCR) is crucial for pathogen detection in diverse sample matrices.
- Sample processing to remove inhibitors is inefficient and limits sensitivity, especially at low target concentrations.
- Direct PCR assessment without sample purification offers a potential solution to improve efficiency.
Purpose of the Study:
- To evaluate nine inhibitor-resistant PCR reagents for direct detection of Francisella tularensis.
- To assess the reagents' ability to overcome PCR inhibition in various clinical and environmental sample types.
- To determine the limit of detection (LOD) for promising reagents across different matrices.
Main Methods:
- Real-time PCR assay was used to test nine inhibitor-resistant PCR reagents.
- Reagents were evaluated for direct detection of Francisella tularensis in seven sample matrices: buffer, whole blood, sputum, stool, swab, soil, and sand.
- Preliminary LODs were determined, followed by replicate LOD determination for top-performing reagents in each matrix.
Main Results:
- No single inhibitor-resistant PCR reagent demonstrated optimal performance across all tested matrices.
- Specific reagents excelled in certain matrices: Phusion Blood Direct PCR Kit and Phire Hot Start DNA polymerase variants were effective in whole blood.
- Phire Hot Start DNA polymerase with STR Boost achieved femtogram-level LOD in soil, while KAPA Blood PCR kit showed consistent results overall.
Conclusions:
- Inhibitor-resistant PCR reagents show potential for direct amplification from complex clinical and environmental samples.
- Reagent performance varies significantly depending on the sample matrix.
- Current inhibitor-resistant technologies require higher template concentrations than typically found in clinically relevant samples for reliable detection.
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