TheDFG-funded Research Training Group (RTG) 3095"Protective and pathogenic antibody responses at barrier organs"is a collaborative doctoral programme jointly organized by theUniversity of LübeckandKiel University- two modern and research-intensive universities with strong profiles in medicine, molecular biology, and the life sciences. Their study programmes have consistently achievedtop positions in the CHE Ranking, the most comprehensive evaluation of study programmes at German universities.
Immunological barrier organs such as the skin, intestine, and lungsare continuously exposed to commensal microorganisms, pathogens, and environmental allergens. As a result, infections as well as allergic and autoinflammatory disorders at these mucosal interfaces are frequent and represent a significant burden to public health. Antibody-mediated immune responses play a central rolein maintaining homeostasis at these sites: they contribute to the control of pathogen invasion, theregulation of gut microbiota, and the initiation and modulation of allergic reactions, while also exerting regulatory functions that candownregulate inflammation.
The overarching goal of RTG 3095 is to elucidate themechanisms by which B cell responses are initiated, maintained, and contribute to either immunoprotection or immunopathogenesisat these immunological barrier sites. To achieve this, the programme employsstate-of-the‑art experimental approaches, includingsingle-cell sequencing, spatial transcriptomics, and advanced molecular and immunological techniques. Doctoral researchers will benefit from a structured 4-year training program that integrates cutting-edge research with comprehensive training opportunities.
Start in our team
Within this framework, the subproject P10 "Diet-dependent metabolic, regulatory and mitochondrial genomic states of B cell memory",led byProf. Patrick Maschmeyerat theInstitute for Systemic Inflammation Research (ISEF) https://isef-luebeck.de/en/meet-the-lab/maschmeyer-lab-6 , University of Lübeck, is seeking a PhD Candidate to start on November 1, 2026. The position is initially limited until July 31, 2030.
What we offer:
- The salary will be based on the German E13 TV-L scale, if terms and conditions under collective bargaining law are fulfilled
- Part-time employment currently 25 hours/week
- Participation in the structured qualification programme of RTG 3095, including workshops, courses, and summer schoolsin state-of-the‑art immunology related research.
- A highly stimulating research environment with access to state-of-the‑art technologiessuch as spectral flow cytometry and single-cell 'multi-omics'
- Excellent opportunities for scientific networking and qualification in cutting-edge immunological research
- Conducting a doctoral research project within P10, focusing on how high-fat diet and obesity shape allergic responses, mitochondrial genome variation, and the gene regulatory and metabolic programs underlying B cell memory formation
- Acquisition and analysis of single-cell 'multi-omics' datasets derived from preclinical in vivo models
- Active participation in the scientific programme of the RTG's graduate training activities
- Presentation and discussion of research findings within the research consortium
Your profile:
- AMaster's degree (or equivalent)in thelife sciencesor a related discipline, fulfilling the formal requirements for enrolment as a doctoral candidate at the University of Lübeck
- Excellent command of English
- Experience withmouse models,flow cytometry, andmolecular and cellular biology techniques, as well as knowledge ofGerman, are advantageous
- Motivation to applybioinformatics approachesto the analysis of single-cell genomics datasets (e.g., scRNA-seq, scATAC-seq); experience withRor comparable statistical software is desirable
- Strong motivation to contribute your own ideas to a dynamic, interactive research team and an independent, structured, and collaborative working style
#J-18808-Ljbffr
PhD Student (m/f/d) in Kiel Arbeitgeber: UKSH
Das Institut für Rettungs- und Notfallmedizin (IRuN) am UKSH in Kiel bietet eine herausragende Arbeitsumgebung, die auf Teamarbeit, moderne Technologien und kontinuierliche Weiterbildung setzt. Mitarbeitende profitieren von flexiblen Arbeitszeiten, der Möglichkeit zum Home-Office sowie einem attraktiven Jobticket, das umweltfreundliches Pendeln unterstützt. Zudem engagiert sich das IRuN in interdisziplinären Forschungsprojekten und fördert aktiv die persönliche und berufliche Entwicklung seiner Angestellten.