The Department of Dental Materials and Biomaterials Research (ZWBF) (
Operational area: Department of Dental Materials and Biomaterials Research (ZWBF)
Working hours: 65% (25,03 hours/week) of the full working hours in the collective agreement (currently 38.5 hours/week)
Duration/Term of employment : The position is limited till in accordance with the WissZeitVG (German Academic Fixed-Term Contract Act). The successful applicant will be encouraged and supported to achieve a doctoral degree.
Start date:
Remuneration/Rates : EG 13 (TV-L)
The team at the Department of Dental Materials and Biomaterials Research conducts research in the field of 3D tissue engineering. The work focuses on the development of novel 3D tissue models. Advanced biofabrication methods such as 3D bioprinting are used in the production process. Customized hydrogels are used as matrices for the cells. The in vitro models can be used to investigate as yet unexplained physiological and pathological mechanisms. Such 3D models are also used to screen new drug candidates. Due to the interdisciplinary nature of the topic, scientists from various disciplines work together in our team on a transdisciplinary basis.
Tasks:
You will work in the new Collaborative Research Centre (CRC/SFB 1739) 'Soft tissue–alveolar bone crosstalk - Impact of systemic diseases on mechanisms of periodontal remodelling', which is funded by the German Research Foundation (DFG). You will work on the subproject entitled 'Dissecting the role of the periodontal-immune axis in mechanical induced tissue remodelling using an advanced dynamic 3D in vitro model'.
Your work will focus on developing a multicellular dynamic in vitro tissue model of the periodontal ligament. To achieve this, you will synthesize and characterize customized hydrogel blends based on their rheological and mechanical behavior. You will also assess the biological performance of the different matrices based on the behavior of the cells depending on their composition and the ratio of the embedded cells. These results will be compared with data from animal experiments conducted in other subprojects of the consortium with the aim of refining the in vitro model. You will then study the effects of cyclic loading on the embedded cells in the bioreactor investigating how they impact the remodeling behavior of the artificial tissue. The additional effect of immune cells is of particular interest here, and will be investigated in collaboration with the project partner of our subproject.
Profile:
You have successfully and quickly completed a Master's degree in Biomedical Engineering, Biotechnology or a related field. During your studies, you have acquired specialist knowledge in tissue engineering. You have gained practical experience working in an S1 cell culture laboratory. You are passionate about translational biomedical research and possess excellent communication skills. In addition to your professional qualifications, you demonstrate a high degree of determination and resilience, as well as excellent teamwork skills. You have an excellent command of written and spoken English (Level C1).
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We offer…
Veröffentlichungsdatum:
24 Jul 2026Standort:
AachenEinsatzort:
RWTH AachenTyp:
VollzeitArbeitsmodell:
Vor OrtKategorie:
Erfahrung:
2+ yearsArbeitsverhältnis:
Angestellt
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