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Showing result 1 - 5 of 124 swedish dissertations matching the above criteria.
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1. Intracellular protein transport in plants : targeting, sorting and processing
Abstract : .... READ MORE
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2. Engineering of Affibody molecules for Radionuclide Molecular Imaging and Intracellular Targeting
Abstract : Affibody molecules are small (7 kDa) affinity proteins of non-immunoglobulin origin that have been generated to specifically interact with a large number of clinically important molecular targets.In this thesis, Affibody molecules have been employed as tracers for radionuclide molecular imaging of HER2- and IGF-1R-expressing tumors, paper I-IV, and for surface knock-down of EGFR, paper V. READ MORE
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3. Novel findings on cellular trafficking and targeting for granule storage of neutrophil elastase, a multifunctional effector molecule of innate immunity
Abstract : Neutrophil elastase (NE) has important roles in innate immunity, killing pathogens and controlling the immune response; but how NE is targeted to developing granules is not understood. Therefore, the aim of this thesis was to investigate the sorting of NE. READ MORE
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4. Intracellular unbound drug concentrations : Methodology and application for understanding cellular drug exposure
Abstract : Most known drug targets and metabolizing enzymes are located inside cells. Interactions with these proteins are determined by intracellular unbound drug concentrations. Assessing intracellular drug exposure is technically challenging, but essential for predicting pharmacokinetic, pharmacological, and toxicological profiles of new drugs. READ MORE
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5. Cell-penetrating peptide targeting mitochondria : Design, synthesis, characterization, and biological effects
Abstract : More than twenty years after the discovery of the first cell-penetrating peptide (CPP), a large number of both naturally occurring as well as engineered CPPs have been discovered. Generally, CPPs are short polycationic sequences of less than 30 amino acids that are able to translocate different cargoes into cells. READ MORE