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characterization of cationic polymers and polyplexes preparation; - Synthesis and characterization of sonosensitized HOF nanoparticles and loading with various drugs; - Assessment of transfection efficiency and
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with high self-motivation. Experience in modern purification and characterization techniques for small molecules and macromolecules. Experience with nanoparticle uptake and efficacy studies in cells, and
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(e.g., nanoparticles, viruses, fusion proteins, etc.) to target various chemoattractants to sites of tumor, using these alone and in combination with other strategies for immunomodulation. A second focus
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EU-MSCA PhD position: Molecularly imprinted polymers for phosphopeptide assays of oncogenic pathways
an oncogenic pathway having aberrantly phosphorylated sites informative of a patient´s susceptibility to treatment. MIPs recognizing these sites will be developed in the form of porous beads or nanoparticles
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polymers or nanoparticles) for such motifs compatible with peptide or protein affinity-based assays. These will be integrated in MIP-MS modification specific proteomics for mechanistic studies or as
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purification and characterization techniques for small molecules and macromolecules. Experience with nanoparticle uptake and efficacy studies in cells, and/or in vivo models is a plus. Preferred Qualifications
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experimental investigations of reactions on single crystal surfaces, model systems, and mass-selected nanoparticles. It also includes building a theory of catalysis for a broad range of catalysts and processes
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to produce novel immunotherapeutics that can easily and quickly be translated into the clinic. We are taking novel approaches by utilizing a number of delivery strategies (e.g., nanoparticles, viruses, fusion
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. The research includes experimental investigations of reactions on single crystal surfaces, model systems, and mass-selected nanoparticles. It also includes building a theory of catalysis for a broad range of
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recovery. Drug evaluation: Test the effects of neuroprotective and regenerative treatments (including nanoparticle-encapsulated drugs such as Riluzole and Minocycline) in both the in vivo and in vitro