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◆ ACS Infectious Diseases2026-01-23· Parasite hosting

Using Next Generation Chemiluminescent Probes to Improve the <i>Plasmodium falciparum</i> <i>in vitro</i> Parasite Reduction Ratio (PRR) Assay

Angela Hellingman, Nele Lara Göttle, Annabelle Walz, Nicolas Michel Beat Brancucci, S. Wittlin, Pascal Mäser, Matthias Rottmann

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Malaria remains a major global health threat, and the emergence of partial artemisinin resistance challenges current treatment regimens. Reliable antimalarial screening assays are therefore essential for identifying new drug candidates. The parasite reduction ratio (PRR) assay provides valuable pharmacodynamic insights but is limited by its labor-intensive, 14- to 28-day incubation period. We developed an optimized PRR assay protocol using the highly sensitive chemiluminescence-based lacZ /β-gal SENSOR readout, reducing assay incubation duration to 7 days while maintaining informative pharmacodynamic parameters, including lag phase, parasite clearance time, parasite reduction ratio, and maximum killing effect. In contrast, the [ 3 H]-hypoxanthine incorporation method failed to detect viable parasites reliably and consistently overestimated drug activity with the shortened protocol. This novel lacZ /β-gal SENSOR PRR assay enables laboratories without access to radioactive facilities to evaluate antimalarial compounds efficiently, providing robust time–killing profiles with greater convenience, higher throughput, and lower equipment requirements than existing readout methods.
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Using Next Generation Chemiluminescent Probes to Improve the <i>Plasmodium falciparum</i> <i>in vitro</i> Parasite Reduction Ratio (PRR) Assay — 科研速览 Science Skim