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to uncovering the mechanisms of immune-mediated diseases of the nervous system through human discovery science. Embedded within an extensive interdisciplinary network of experts in neuroimmunology, stem cell
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. Work will be focused on investigating and analyzing the biochemical mechanisms that regulate myelination and remyelination in the central nervous system. The focus of the candidate’s core project will
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University of Toronto | Downtown Toronto University of Toronto Harbord, Ontario | Canada | about 21 hours ago
proliferation and cell death, stem cell biology, host-pathogen interactions, and cellular mechanisms underlying diseases. This position offers an exceptional opportunity for researchers using innovative
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/or genomic approaches to address fundamental mechanisms of cell or developmental biology. Applicants studying traditional or non-traditional, emerging model systems are encouraged to apply
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Lunenfeld-Tanenbaum Research Institute | Central Toronto Roselawn, Ontario | Canada | about 9 hours ago
developmental origins of health and disease. We welcome applications exploring the molecular, cellular, and genetic mechanisms that drive early development and stem cell dynamics. Research approaches and
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. • Research expertise in artificial intelligence (AI), causal machine learning, computational modelling, and single-cell multi-omics. • Experience modelling mechanisms of genome structural dynamics in clinical
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hydrogels or elastic networks), and evaluate their mechanical and biological properties. This position offers a unique environment bridging synthetic biology, polymer chemistry, and biophysics. Key
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working and residing outside Canada when the Eddie Goldenberg Research Chairs of Canada award (https://www.canada.ca/en/impact-plus-chairs.html ) is formally accepted (July 1st 2026). Applicants may apply
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of Professor Edward Fon is looking for a Research Assistant to join a research team investigating the molecular and pathological mechanisms underlying Parkinson's disease (PD). The Research Assistant will carry
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at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https://bcchr.ca/maxwell-lab ). Key areas include: Mechanisms of cell division fidelity