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Offer Description The ROMEO project seeks to overcome a major hurdle in nanomedicine: the fact that less than 1% of current nanoparticles reach their target because they are captured by macrophages in
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The importance of oxide nanoparticles spans from fundamental astronomy (e.g. nanosilicate dust particles) to applied catalysis (e.g. photoactive TiO2 and electroactive IrO2 nanoparticles). Across these fields
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD candidate will be recruited within IJCLab (http://ijclab.in2p3.fr
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functional materials. Research activities focus on controlled polymer synthesis, macromolecular engineering, polymer self-assembly, nanoparticle design, and the development of stimuli-responsive polymer
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of heat and optical coupling in magnetic nanoparticles and nanoassemblies. Where to apply Website https://amethis.doctorat.org/amethis-client/prd/consulter/offre/3766 Requirements Research
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isolation; electron microscopy and nanoparticle tracking analysis for vesicle characterization; RNA isolation and PCR; SDS-PAGE-based protein analysis; cell culture and immunostimulation experiments; and flow
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/InstituteAdelaide UniversityCountryAustraliaState/ProvinceSouth AustraliaCityAdelaideGeofield Contact State/Province South Australia City Adelaide Website https://www.adelaide.edu.au/ Street North Terrace Postal Code
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Aragon Nanoscience and Materials Institute (INMA) / CSIC-University of Zaragoza | Spain | 2 months ago
, the project seeks to design new therapeutic vectors — nanoparticle-loaded EVs — capable of accumulating far more effectively in metastasis target tissues. The successful candidate will take part in the creation
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to support newborn-screening follow-up and monitoring of emerging therapies, including gene and lipid-nanoparticle therapies. Planned secondments will provide experience in omics data generation and biomarker
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“Investigation of the structure-property connection of chiral Au nanoparticles by advanced transmission electron microscopy” under the supervision of Prof Sara Bals The vacancy is situated in the framework