A SELEX-based aptamer discovery platform targeting inflammatory neuronal cells to identify novel neuroinflammation biomarkers and enable targeted drug delivery for neurodegenerative disorders such as Alzheimer's and Parkinson's disease.
This research program focuses on discovering novel biomarkers associated with neuroinflammation and developing targeted drug delivery systems using aptamer technology. Neuroinflammation plays a central role in neurodegenerative disorders including Alzheimer's and Parkinson's disease, where inflammatory neuronal cells display distinct biomarker profiles that could enable earlier diagnosis and more precise therapeutic intervention. By applying systematic evolution of ligands by exponential enrichment (SELEX), the platform aims to generate aptamers with high specificity for inflammatory neuronal cells, even without prior knowledge of the target. This opens a pathway to uncover previously unknown disease-associated biomarkers and to deliver therapeutics directly to affected cells, potentially improving treatment outcomes while reducing required drug dosages.
Core capabilities:
The aptamer platform offers advantages over traditional antibody-based approaches, including the ability to select binders without prior target knowledge, chemical synthesis and modification flexibility, and applicability across biosensing, biomarker discovery, and therapeutic delivery.
The SELEX methodology has been validated through prior work demonstrating successful aptamer selection with nanomolar binding affinity for corneal targets and effective in vivo drug delivery in rabbit eyes with sustained retention. A published review documents diagnostic and therapeutic aptamers for inflammatory biomolecules in neurodegenerative contexts. The current program is at the preclinical validation stage, with planned in vitro characterization of aptamer binding affinity, target identification via mass spectrometry, and in vivo validation in LPS-induced rat brain tissue. Upon demonstrating specificity to inflammatory brain tissue, the next milestone is development of an aptamer-based targeted drug delivery system for neuroinflammatory disorders.
University of Waterloo is a public research university in Ontario, Canada, known for an entrepreneurial, STEM‑driven culture. A globally recognized co‑op program places students with employers year‑round, creating direct talent pipelines and de‑risked pathways into sponsored research and contract development. An adjacent research and technology park hosts corporate R&D alongside faculty labs, and the campus sits within the Toronto–Waterloo innovation corridor for ready access to partners, investors, and scale‑up resources. Research is supported by competitive federal funding from Canada’s Tri‑Council agencies (NSERC, CIHR, SSHRC) and international programs. A creator‑owned IP policy and a dedicated tech transfer office enable flexible agreements, licensing, and spinouts.