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for 3 years. Responsibilities The successful candidate will: Develop, optimize and validate advanced 3D cell culture models, including spheroids, organoids and tissue-engineered constructs. Establish
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the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description - 3D iPSC cell culture - Differentiation
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and validate advanced 3D cell culture models, including spheroids, organoids and tissue-engineered constructs. Establish and apply rotational 3D culture systems such as CelVivo or comparable platforms
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modalities in the rodent brain (3D light-sheet microscopy, spatial transcriptomics and MRI of the same brain) to learn MRI contrasts that can depict neuronal and glial cell density and morphology. You will
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factor: Experience in the experimental development of cellular biomimetic environments, namely in the breast cancer context, with non-neoplastic and neoplastic cells, in 2D and 3D culture (spheroids and/or
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Experience with 3D cell culture, organoid systems, or co‑culture models Solid grounding in molecular and cellular biology techniques Ability to work both independently and collaboratively within a large
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biomaterials and characterization of the same Design, post-processing, and biomimetic cell culture environments for 3D scaffolds Scalability and reproducibility of bioactive 3D scaffolds for large-scale
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of the same Design, post-processing, and biomimetic cell culture environments for 3D scaffolds Scalability and reproducibility of bioactive 3D scaffolds for large-scale manufacturing Critical interpretation and
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fellow to join the 3D Stem Cell Biology Research Lab (https://www.hashinolab.com ) and study normal and pathological development of the human inner ear using stem cell-derived organoids as a model system
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: endothelial cell culture, barrier function assays, calcium imaging, confocal microscopy ● Bioengineering & flow models: microfluidic systems, 3D flow chamber assays, hemodynamic modeling ● Animal