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mammalian cell culture. Experience with expression (E. coli, yeast, and mammalian cells) and purification of proteins. Experience with Drosophila Genetics, Dissection, Immunostaining and Confocal Microscopy
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of disease progression and injury. The primary research topics involve testing how homeostatic mechanisms allow functional neuronal mitochondria to exist far away from the cell body and how failure to maintain
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fields: cell cycle control and protein degradation by the ubiquitin-proteasome system. Our work focuses on both tumorigenesis and normal biology, and our overall goal is to apply new mechanistic insights
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to design optimized growth media for animal cells lines used in biotechnology. This work involves the development and application of genome-scale metabolic models to characterize cellular growth and
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Term: Initial appointment is 1 year with the expected renewal after the first year for an additional 1-2 years by mutual agreement. Appointment Start Date: Flexible Start Date Group or Departmental
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within a Research Infrastructure? No Offer Description A 3-year postdoctoral position is available from May 2026 in an Austrian Science Fund (FWF)-funded project in the laboratory of DDr. Reinhold G. Erben
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shape a new research group. Experience in 3D cell culture, microscopy techniques (e.g., fluorescence and confocal microscopy), as well as organoid-based disease modeling is an advantage. An interest
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competence in research activities and have research experience in a laboratory setting. Preferred Qualifications: Proficient in wet lab (cell culture, bench assays), and mouse work. Strong first author
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, you will work with advanced 3D in vitro models of fibrosis and metabolic disease, using multiple primary and immortalized human cell lines. Your research will focus on identifying molecular mechanisms
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cutting-edge approaches in immunology, genomics, and regenerative medicine to understand the role of stromal cells in autoimmunity and develop novel therapeutic strategies. The fellow will work at the