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neurons. Using a combination of high resolution live cell fluorescent imaging, electrochemistry and patch clamp electrophysiology, we recently discovered that activation of GLP-1Rs promotes the formation
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(2014). https://doi.org/10.1126/science.1253920 [2] An RNA origami robot that traps and releases a fluorescent aptamer. Science Advances (2024). https://doi.org/10.1126/sciadv.adk1250 Your qualifications
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website for more information about our research interests: https://krupina.lab.uiowa.edu This position is designed for individuals who: • Seek training, experience, and mentoring in a research setting
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and carries out experiments using mouse and human brain material, cultured cells, high resolution fluorescence imaging and image analysis, biochemical, as well as molecular biology approaches. Performs
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techniques, including histology, rodent brain dissection, stereotaxic surgeries for intracerebroventricular injections, and fluorescent microscopy. Must have effective oral and written communication skills
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at the following website: https://biology.mit.edu/profile/h-robert-horvitz Please note: This is a fixed-term position with an anticipated end date not to exceed August 31, 2027, aligned with current HHMI funding
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vitro reconstitution of recombinant membrane protein complexes and their biochemical and spectroscopic characterization (e.g., fluorescence and absorption spectroscopy). Isolation of membrane proteins
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super‑resolution microscopy and quantitative live-cell imaging using diverse fluorescent reporters in cultured cells and early embryos. These experimental approaches are integrated with advanced image
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Description We invite applications for a fully funded PhD position within the DFG Priority Programme SPP2389. https://tu-dresden.de/mn/biologie/allgemeine_mikrobiologie/spp2389?set_language=en
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, harvests), multi-parameter flow and mass cytometry (CyTOF), fluorescence-activated cell sorting (FACS), multiplexed fluorescence microscopy and single-cell RNA sequencing; prepare RNA and DNA; perform PCR