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Universität Basel’s Pediatric Disease Modeling Lab seeks a Senior Scientist to lead the group, manage ERC Starting Grant and SNSF Starting Grant timelines, coordinate with clinical partners, and supervise staff. You will co‑author manuscripts and represent the lab at conferences, while remaining scientifically active in ongoing projects.
Based in Basel, you will collaborate with Basel Life Sciences partners, translate multi‑omics data into clinical insights, contribute to grant applications, and
Senior Scientist in Computational Biology (80%)
From June 1, 2027, or by agreement | initially fixed-term for 5 years, with the possibility of extension
The Department of Biomedical Engineering is part of the Faculty of Medicine at the University of Basel. It contributes to a better future in meeting health care needs through innovative biomedical research and engineering solutions, translating basic science into medical knowledge and healthcare innovations.
The Pediatric Disease Modeling Lab (https://dbe.unibas.ch/en/research/data-driven-modelling-analysis/pediatric-disease-modeling-lab/) is seeking a Senior Scientist to help lead a growing research group. Our mission is to understand how early-life exposures to the microbiome shape lifelong health through their impact on the developing immune system. We develop mathematical models of microbiome‑immune co‑development to quantify how early‑life perturbations to the microbiome shape antimicrobial resistance, infectious disease dynamics, and non‑communicable diseases, with the aim of translating our insights into actionable strategies for pediatric care. Our work combines statistical and mechanistic mathematical modeling, causal inference, and machine learning, applied to longitudinal multi‑omics data from pediatric cohorts spanning diverse socio‑economic and geographical contexts.
Our lab will be supported by two major grants starting in 2027. RESILIENT (ERC Starting Grant) asks why some infants recover from early‑life perturbations‑antibiotics, infections, feeding transitions‑while others are set on a path toward chronic disease, by synthesizing existing longitudinal multi‑omics data from several pediatric cohorts across Africa, Asia, and Europe; combining statistical analysis, causal inference, and mechanistic modeling. Restoring Homeostasis (SNSF Starting Grant) investigates how established gut dysbiosis drives immune dysregulation and disease progression in pediatric patients, generating new clinical multi‑omics data and using deep learning, structural equation models, and causal inference to identify strategies for restoring immunological homeostasis. Together, these projects will bring a team of postdocs, PhD students, and technical staff to the lab, working with diverse clinical and academic partners.
We are looking for an experienced, scientifically active researcher to take on the operational leadership of the lab, working closely with the Principal Investigator. You will oversee the lab's research projects across both grants‑timelines, milestones, and deliverables‑act as the primary contact for collaborating cohorts, clinical partners, and their PIs, manage project budgets, procurement, and reporting to funders, and supervise the lab's technical staff. In this role, you will shape how the group operates and grows, and serve as a central point of contact for the team and its partners. Alongside these responsibilities, you will remain scientifically active: contributing to the lab's research projects, coordinating and co‑authoring manuscripts, and representing the lab at conferences. You will be part of a collaborative research environment with close interactions with the Basel Research Centre for Child Health (BRCCH), the University Children's Hospital Basel (UKBB), and the Swiss Tropical and Public Health Institute (Swiss TPH). In line with our and Uni Basel values (https://www.unibas.ch/en/Research/Values-Ethics/Diversity-and-Inclusion.html), we are committed to sustain and promote an inclusive culture, ensure equal opportunities and value diversity and respect in our working and learning environment.
B. Tepekule, A.I. Lim, and C.J.E. Metcalf, "The ontogeny of immune tolerance: a model of early‑life secretory IgA - gut microbiome interactions", PLoS Biology, 2025. Link: https://journals.plos.org/plosbiology/article?id=10.1371/journal.pbio.3003263
B. Tepekule, J. Bergadà‑Pijuan, T. Scheier, H. F. Günthard, M. Hilthy, R. D. Kouyos, S. Brugger, "Computational and in vitro evaluation of probiotic treatments for nasal Staphylococcus aureus decolonization", Proceedings of the National Academy of Sciences (PNAS), 2025. Link: https://www.pnas.org/doi/10.1073/pnas.2412742122
B. Tepekule, P. Abel Zur Wiesch, R. Kouyos, S. Bonhoeffer, "Quantifying the impact of treatment history on plasmid-mediated resistance evolution in human gut microbiota", Proceedings of the National Academy of Sciences (PNAS), 2019. Link: https://www.pnas.org/content/116/46/23106