127 evolution-"https:"-"https:"-"https:"-"https:"-"https:"-"BioData"-"BioData"-"BioData" positions at Nature Careers in Germany
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to elucidate the genetic, molecular, and cellular mechanisms governing the formation and function of the testis, production and function of sperm, fertilisation, as well as early embryonic development
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governing the formation and function of the testis, production and function of sperm, fertilisation, as well as early embryonic development – in both health and disease. To this end, we combine
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interpersonal skills, ability to communicate DeepTech to different corporate circles, scientists and patient groups, initation and development of partnerships aimed at making a difference in the future of health
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mechanisms governing the formation and function of the testis, production and function of sperm, fertilisation, as well as early embryonic development – in both health and disease. To this end, we combine
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Hospital Münster, and the University of Hamburg. Our goal is to advance the development of innovative, non-hormonal contraceptives that pharmacologically disable the function of sperm. – ideally with you on
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, production and function of sperm, fertilisation, as well as early embryonic development – in both health and disease. To this end, we combine interdisciplinary research in molecular, structural, and cell
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scientific expertise – ideally with you on board! The positions are located at the interface of the research groups of Julia Wallmeier working on cilia in early development and Corinna Friedrich working
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well as early embryonic development – in both health and disease. To this end, we combine interdisciplinary research in molecular, structural, and cell biology as well as in physiology, biophysics, epi /genetics
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the rewiring of chromatin landscapes contributes to the development and maintenance of malignant programs. The final aim of our studies is to translate our experimental findings into novel treatment strategies
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candidate to join our team as a postdoctoral fellow (f/m/d) in our BMFTR-funded technology development project. We will explore cellular engineering of synthetic compartments and their usage in drug