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within the project (these will also be included in the job description): Development and performance of pharmaceutical evaluation of liposomes, liposomal hydrogel, films based on polymeric nanocapsules
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of Dublin. Inspired by biomineralised tissues such as bone and seashell, HYDROCEM will add designer hydrogels to cement binders (that bind concrete together) to instruct their formation and organisation
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, electrochemical techniques, or drug delivery systems, and an interest in smart hydrogels and microneedle technologies. Familiarity with microfabrication, flexible electronics, or wireless control systems is an
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hydrogel scaffolds, with the resulting magnetic scaffolds applied as mild-heat mediators and drug-delivery building blocks. The response of these materials to different physical stimuli (photo-irradiation
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" Tumor viscoelasticity as a central player in glioblastoma treatment - towards mechanopharmacology". As part of the experimental work, the tasks will include: Development of 3D hydrogels with controlled
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/invasion in dynamic_DCIS_device, including surface functionalisation work (e.g., ligands/streptavidin) and optimisation of ECM/hydrogel conditions to initiate invasion, modelling the tumour microenvironment
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of the glioblastoma cells on 2D hydrogels with controlled viscoelasticity, biochemical evaluation of the impact of viscosity on the efficacy of anticancer drugs used in the treatment of glioblastoma multiforme
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materials and bacteria & surface interactions. Key qualifications include: Hands-on experience with microbiological methods, material characterization, or polymer/ nanoparticle/ hydrogel synthesis. Strong