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have until now only been studied with highly abstracted models. A more detailed modeling approach, inspired on the engineering-type approaches used in molecular systems biology, is needed to get
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multiple biological systems. Evaluation of cellular and animal models of systemic amyloidosis Visualization of amyloid deposition and interactions in situ at molecular resolution Comparative
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disease modelling skills to join our team. About the project The ultimate goal of this project is to develop and apply advanced human iPSC-based models to study complex genetic architecture
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for recombinant antigen expression.A key responsibility will be contributing to the development and characterization of transgenic and knockout mouse and hamster models, which are essential for studying viral
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participate in national and international collaborations and congresses. WHAT WE ARE LOOKING FOR You hold a PhD in immunology, biomedical sciences, molecular biology, or a related field. You have a strong and
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motivated and enthusiastic colleague with strong iPSC experience and disease modelling skills to join our team. About the project The ultimate goal of this project is to develop and apply advanced human iPSC
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the international forefront of microbial physiology and quantum biology and adopts a highly interdisciplinary approach, combining state-of-the-art methods in molecular biology, electron microscopy, protein
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in the Ma lab: Evolutionary Genomics of Sex (https://www.wmalab.com ) in the Biology Department at the Vrije Universiteit Brussel (Belgium). Our lab aims to understand how sex chromosomes and sex
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trials (e.g., diet, FMT), and ex vivo gut models enabling advanced multi-omics analyses of these samples. In addition the lab also maintains a large culture collection, partially linked to genomic data
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intervention trials (e.g., diet, FMT), and ex vivo gut models enabling advanced multi-omics analyses of these samples. In addition the lab also maintains a large culture collection, partially linked to genomic