Related Experiment Video
Updated: May 24, 2026

On-site DNA Detection of Trypanosomatid Parasites and Nosema ceranae Through Alkaline Lysis Coupled to RPA/CRISPR/Cas12a System
Published on: July 18, 2025
Immuno-PCR--a new tool for paleomicrobiology: the plague paradigm
Nada Malou1, Thi-Nguyen-Ny Tran, Claude Nappez
1Aix-Marseille Université, URMITE, UMR CNRS 6236- IRD 198, Faculté de Médecine, Marseille, France.
Background:
The cause of past plague pandemics was controversial but several research teams used PCR techniques and dental pulp as the primary material to reveal that they were caused by Yersinia pestis. However, the degradation of DNA limits the ability to detect ancient infections.
Methods:
We used for the first time immuno-PCR to detect Yersinia pestis antigens; it can detect protein concentrations 70 times lower than the standard ELISA. After determining the cut-off value, we tested 34 teeth that were obtained from mass graves of plague, and compared previous PCR results with ELISA and immuno-PCR results.
Results:
The immuno-PCR technique was the most sensitive (14 out of 34) followed by the PCR technique (10 out of 34) and ELISA (3 out of 34). The combination of these three methods identified 18 out of 34 (53%) teeth as presumably being from people with the plague.
Conclusion:
Immuno-PCR is specific (no false-positive samples were found) and more sensitive than the currently used method to detect antigens of ancient infections in dental pulp. The combination of three methods, ELISA, PCR and immuno-PCR, increased the capacity to identify ancient pathogens in dental pulp.
Insights
Immuno-PCR detected Yersinia pestis antigens in ancient dental pulp samples with high sensitivity. Combining immuno-PCR, PCR, and ELISA improved plague pathogen identification in historical teeth.
Area of Science:
- Paleomicrobiology
- Infectious Disease Epidemiology
- Biotechnology
Background:
- Past plague pandemics' causes were debated, with Yersinia pestis identified via PCR in dental pulp.
- DNA degradation in ancient samples poses challenges for detecting historical infections.
Observation:
- Immuno-PCR, a novel technique, detected Yersinia pestis antigens at concentrations 70x lower than ELISA.
- 34 teeth from plague mass graves were analyzed using PCR, ELISA, and immuno-PCR.
Findings:
- Immuno-PCR showed the highest sensitivity (14/34), followed by PCR (10/34) and ELISA (3/34).
- Combining all three methods identified 53% (18/34) of teeth as likely from plague victims.
Implications:
- Immuno-PCR is a sensitive and specific method for detecting ancient Yersinia pestis antigens in dental pulp.
- Multi-method approaches enhance the identification of ancient pathogens in historical human remains.
Related Concept Videos
Modern Molecular Taxonomy
Real Time RT-PCR
The real-time quantification of the number of amplified products is...