Related Experiment Video
Updated: Jun 28, 2026

Methods to Investigate the Regulatory Role of Small RNAs and Ribosomal Occupancy of Plasmodium falciparum
Published on: December 4, 2015
Comparative analysis of molecular protocols for detecting pfhrp2 and pfhrp3 gene deletions in Plasmodium falciparum
Tuany Rodrigues1, Keithy Wenny Plaster Lima2, Felipe Souza Nogueira Lima2
1Laboratory of Translational Research in Health (LPTS), Carlos Chagas Institute (ICC/Fiocruz Paraná), Curitiba, Paraná, Brazil.
Background:
Rapid diagnostic tests (RDTs) based on histidine-rich protein 2 (HRP2) detection are widely used for malaria diagnosis in remote settings. However, deletions in the pfhrp2 and pfhrp3 genes in Plasmodium falciparum compromise RDT performance, with studies reporting varying prevalences. This study compared multiple molecular approaches to assess their concordance and implications for deletion surveillance.
Methods:
Sixty-three P. falciparum-positive clinical samples from Rondônia, Brazil, were analyzed using six PCR protocols: two conventional (cPCR), three quantitative (qPCR), and one droplet digital (ddPCR). Sanger sequencing was performed to investigate the genetic variability of pfhrp2.
Results:
Discrepancies were observed across all methods, particularly at low parasite densities. For pfhrp2, non-amplification rates varied among protocols: 11.1-23.8% for cPCR and 0-9.5% for qPCR. ddPCR did not detect complete deletions. For pfhrp3, non-amplification ranged from 11.1% to 71.4% among qPCR protocols, while ddPCR detected deletions in 95.2% of samples. Sequencing revealed multiple insertion-deletion events in pfhrp2, suggesting local genetic variability contributes to assay discordance.
Conclusion:
Detection of pfhrp2/pfhrp3 deletions is highly dependent on the molecular protocol used. Genetic variability and low parasite density contribute to inconsistent results, potentially leading to incorrect estimation of deletion prevalence. Harmonization of molecular surveillance strategies is essential for reliable monitoring of pfhrp2/pfhrp3 deletions.

