A validated, animal-free screening platform that uses patient-derived dental pulp stem cell (DPSC) neurons with luciferase-based circadian reporters to test natural ingredients and botanical or marine extracts for circadian-modulating activity. Published proof-of-concept in Prader-Willi syndrome demonstrates drug-responsive period-length phenotypes suitable for hit identification and prioritization.
Pulp Neuro Inc offers a contract screening service built on a patient-derived dental pulp stem cell (DPSC) neuronal platform that models human circadian clock function without animal models. DPSC lines are differentiated into mature cortical-like neurons and equipped with Per2, Bmal1, or CRY1 luciferase reporters that emit bioluminescence in real time as the cellular clock oscillates. The platform has been peer-reviewed and published, demonstrating quantifiable, disease-relevant period-length defects in Prader-Willi syndrome neurons and pharmacological rescue by a small molecule, confirming that the assay responds to compound intervention. The service applies this validated circadian readout to natural ingredients and complex botanical and marine extracts, enabling partners to identify and rank circadian-active compounds for nutraceutical, cosmetic, food, beverage, or therapeutic development.
Platform components:
Screening workflow:
The assay is fully operational and validated in a peer-reviewed publication, with confirmed pharmacological responsiveness in Prader-Willi syndrome neurons. The platform is ready for immediate screening engagements, with no requirement for additional assay development. DPSC-neuron lines are already banked and characterized, and the BioSpa plate-reader format supports direct dosing of compound libraries, enabling rapid initiation of natural product screening projects.