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PhD position in systems biology of cancer metastasis; Zampieri Lab

Job in 4040, Basel, Kanton Basel-Landschaft, Switzerland
Listing for: Euraxess
Full Time, Seasonal/Temporary position
Listed on 2026-03-02
Job specializations:
  • Research/Development
    Research Scientist, Biomedical Science, Clinical Research
Salary/Wage Range or Industry Benchmark: 30000 - 80000 CHF Yearly CHF 30000.00 80000.00 YEAR
Job Description & How to Apply Below
Position: PhD position in systems biology of cancer metastasis (Zampieri Lab)

Organisation/Company University of Basel Research Field Biological sciences » Biology Biological sciences » Other Chemistry » Biochemistry Engineering » Biomedical engineering Physics » Biophysics Researcher Profile First Stage Researcher (R1) Final date to receive applications 28 Mar 2026 - 22:59 (UTC) Country Switzerland Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure?

No

Offer Description

The Department of Biomedicine is a joint effort between the University of Basel and the University Hospitals Basel. It unites basic and clinical scientists to advance our understanding of health and disease and to develop pioneering therapies benefiting the lives of patients in areas of unmet need.

With more than 70 research groups and 800 employees, the Department of Biomedicine is the largest department at the University. We are located in the heart of Basel at 6 different locations. Be part of our future!

The Zampieri group offers a PhD research opportunity in the context of systems pharmacology, computational biology and metabolic regulation. The mission of the group is to understand fundamental mechanisms regulating short- and long-term metabolic adaptation to genetic and chemical perturbations to find new and unconventional therapeutic strategies, ranging from antibacterial to anti‑cancer drugs. To this end, we develop new ways to combine state‑of‑the‑art technologies in metabolomics with mathematical modeling.

The candidate will have the opportunity to exploit some of the cutting‐edge experimental and computational methods, comprising constraint‐based and kinetic modeling, statistical analysis of large datasets, high‑throughput metabolomics, time‑lap microscopy, to investigate how to pharmacologically interfere with fundamental mechanisms in the regulation of cancer metabolism. Available resources at the department include a mouse facility, high‑end FACS, IT and microscopy facilities, the Life Sciences Training Facility (for gene expression and proteome profiling) and much more.

The candidate is expected to have a strong background and interest in quantitative disciplines, excellent teamwork and communication skills in English. The candidate will have the opportunity to develop the following project with a lot of academic freedom and strong support from senior members in the lab, and at the same time to play an active role in shaping and creating inspiring research and working environment.

In line with our and Uni Basel values (https://(Use the "Apply for this Job" box below).), we are committed to sustain and promote an inclusive culture, ensure equal opportunities and value diversity and respect in our working and learning environment.

We are seeking a highly motivated doctoral researcher to investigate how metabolic programs enable cancer cells to metastasize and colonize distant tissues using mouse models, in close collaboration with the Bentires Lab at the University of Basel. This PhD project is fundamentally driven by hands‑on experimental in vivo mouse work; therefore, candidates must demonstrate prior practical experience with in vivo mouse experiments (e.g., tumor models, animal handling, injections, tissue collection, and monitoring).

Applications from candidates without documented hands‑on mouse experience will not be considered.

The project also includes high‑throughput metabolic profiling of genetic perturbations, computational data analysis, and next‑generation sequencing (NGS) of pooled CRISPR libraries, offering the opportunity to combine rigorous in vivo experimentation with systems‑level approaches.

Your main tasks will be:

  • A strong interest in and commitment to animal experimentation is essential.
  • Perform in vivo mouse studies using CRISPR-engineered cancer cell lines
  • Design, perform, and analyse in vivo CRISPR pooled screens
  • Perform high through out metabolomics profiling using a unique framework developed in the lab.
  • Analyze and interpret metabolomics data to derive experimentally testable hypotheses
  • Sup…
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