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we will synthesise nanoparticles to carry oncolytic viruses to metastatic bone tumours. We aim to evaluate these precision nanoparticles for their protective properties and guidance capabilities
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Physical Chemistry (ED 182). The main objectives of this thesis project are to elucidate the coupling mechanisms at the interfaces between gold nanoparticles (Au NPs) and metal oxide layers using nanometer
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research group is associated with the newly established Center of Excellence in Neutron-Star Physics (https://neutronstars.fi ), providing us long-term funding, strong connections to related Finnish and
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in Neutron-Star Physics (https://neutronstars.fi ), funded by the Research Council of Finland. The CoE status provides us long-term funding, strong connections to related Finnish and international
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of physicochemical properties of peptide nanoparticles and improvement of synthetic protocols: Solid-phase synthesis (manual and robotic); purification and analysis using HPLC-MS, NMR, UV-Vis, FT-IR, CD and DLS; use
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knowledge in pharmaceutical sciences and drug delivery systems. Technical competency in one or more of the following areas: Drug delivery systems (nanoparticles, liposomes, polymeric formulations
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using different methods, along with associated optical analysis; support in biocompatibility studies and nanoparticle internalization in cell cultures; preparation of liposomes with thrombolytic drugs and
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postdoctoral researcher position to work on a project to functionalize lipid nanoparticles for the targeted inhibition of signaling pathways in specific cell lines. The project includes: Design and validation
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research agreements Strong technical expertise in one or more of the following areas: Drug delivery systems (nanoparticles, liposomes, polymeric formulations) Biopharmaceutics and pharmacokinetics Biomarker
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biopesticide: A sustainable approach to crop protection”. More specifically, they will contribute to the production and physical-chemical characterisation of lipid nanoparticles containing RNA and evaluate