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remodels and heals under controlled in vitro conditions. In the first phase, you will validate and implement the BBoC technology. In the translational phase, you will study how a candidate pharmaceutical
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renowned for their fundamental cellular neuron-glia studies of myelinated and axons. We have new high-end in vitro and in vivo electrophysiological infrastructure, optogenetic and high-speed one and two
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. The main goal of the postdoc project will be to understand how this process is regulated at the molecular and structural level. The postdoc will establish and use in vitro reconstitution assays for actin
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for their fundamental cellular neuron-glia studies of myelinated and axons. We have new high-end in vitro and in vivo electrophysiological infrastructure, optogenetic and high-speed one and two-photon imaging setups
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during in vitro transit tests; excellent communication with other project partners. You will work here The project is embedded within the chair of Food Chemistry , which is led by Prof.dr.ir. Jean-Paul
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at the molecular and structural level. The postdoc will establish and use in vitro reconstitution assays for actin-based motility, combining engineered bacterial systems displaying IcsA or ActA with purified host