-
mouse models relevant to MS pathogenesis and recovery. Performing and overseeing cellular and molecular studies involving macrophages, microglia, and other CNS-resident or infiltrating immune cells
-
adaptations; disease modeling and the pathophysiology of pregnancy-associated complications (e.g., preeclampsia, preterm birth, gestational diabetes); therapeutic discovery; and the developmental origins
-
. Responsibilities Perform cell-based cultures using immortalized cell lines and iPSC-derived models, including cellular differentiation protocols Carry out standard molecular and biochemical assays, including Western
-
integrates clinical, molecular, and real-world data with emerging computational approaches, including large language models, predictive modelling, and multi-omics data integration. The lab coordinates and
-
Aparicio lab (https://aparicio.molonc.ca ). Located at the BC Cancer Research Institute, within the Department of Basic and Translational Research; Molecular Oncology, our interdisciplinary team is
-
must be submitted to Academic Jobs Online: https://academicjobsonline.org/ajo/jobs/32408 . Deadline for applications is October 1, 2026. The expected starting salary range for this position is $135,000
-
performance computing. Topics include modelling, floating point computations, molecular dynamics, fast Fourier transforms, solving partial differential equations, parallel programming concepts, and hybrid
-
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
-
University of Toronto | Downtown Toronto University of Toronto Harbord, Ontario | Canada | 12 days ago
methodologies to uncover the molecular and cellular mechanisms that govern cell function in health and disease. We are particularly interested in applicants who leverage a broad range of experimental models
-
Research Institute and UBC, investigates how cell division is regulated at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https