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to novel personalized strategies of particles de-sign for drug delivery, imaging or diagnosis. This PhD project will develop stimuli-responsive nanozyme coatings for personalized medical implants. Nanozymes
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competition for the position of PhD Student – Scholarship Holder in the FIRST TEAM FENG project (No. FENG.02.02-IP.05-0029/23), entitled “Innovative (Nano)Hormone-Chemotherapy: New Drug Delivery Strategies
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multifunctional drug delivery systems capable of combining targeted delivery, controlled drug release, multimodal therapeutic payloads, and real-time imaging within a single platform. Despite major advances
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students to join a newly funded LOOP Zurich Flagship Project focused on advancing a breakthrough technology to clinic for non-invasive targeted drug delivery to the brain. Our laboratory recently developed a
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expertise in biodegradable drug-delivery technologies (https://www.mgshell.com ) and Politecnico di Milano’s strengths in microfabrication and digital machining. Secondments include MgShell (3 months
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International Centre for Translational Eye Research / Institute of Physical Chemistry, Polish Academy of Sciences | Poland | about 1 month ago
prognosis and restore vision. The main technology to be developed under this program will be a novel robotic system for delivering drugs to the eye and performing a tissue biopsy, in which a robotic system
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pharmacological and preclinical aspects of biomaterials, more specifically physicochemical characterization of biomaterials, pharmacokinetics and biodistribution of biomaterials for drug delivery, tissue response
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. Magnetic hyperthermia has appeared as a particularly attractive tool in nanomedicine for on-command drug delivery and activation of heat-triggered processes to fight against diseases. It involves magnetic
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aggregation – 15% III. Bioinformatics, with emphasis on docking in the context of drug discovery – 10% Only candidates who obtain a score equal to or greater than 50% in the parameters indicated in points 11.1
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principles for constructing smart, adaptive microsystems, potentially useful for targeted drug delivery, cargo transport, biosensing, microfluidic mixing, or self-healing materials. The successful candidate