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. The candidate will be part of a multidisciplinary, international, and dynamic consortium developing a responsive biopolymer-based hydrogel to encapsulate and deliver tumour-targeted drugs to treat glioblastoma
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for enhanced bone repair using clinical samples. The role holder will be involved in the design, build and testing pivotal gene delivery, cell differentiation and hydrogel scaffold-based systems. The successful
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hydrogels or elastic networks), and evaluate their mechanical and biological properties. This position offers a unique environment bridging synthetic biology, polymer chemistry, and biophysics. Key
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interdisciplinary and involves engineering (e.g., fluid mechanics), materials science, chemistry, and physics. Different organic materials are used, including polymers (e.g., stimuli-responsive polymers), hydrogels
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related areas; b) Experience in the processing of innovative materials for the integration of biomimetic microenvironments, namely scaffolds based on hydrogels or biocompatible polymers, functionalized with
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/tumoroids and/or primary cell co-cultures. Experience with one or more of the following: microfluidics or organ-on-chip systems, perfusable/vascular co-culture models, ECM hydrogel handling (e.g., collagen
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | 3 months ago
, aimed at replicating the metastatic spread of GC to distant organs. This innovative approach involves integrating microfluidics technology with hydrogel-embedded organoid units to emulate various GC
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, enrolled in a doctoral degree. OR Biomedical Sciences, enrolled in a non-degree-granting course. Interest in the characterization of biomaterials znd knowledge in the handling and preparation of hydrogels