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genomics, bioengineering, and engineered extracellular matrix mimetics with advanced 3D cell culture systems, we aim to uncover fundamental mechanisms of aging and develop strategies to restore tissue
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the skin, and what physical mechanisms govern each step. The work is highly interdisciplinary, bringing together microfluidics and organ-on-chip platforms, custom microscopy, cell culture, 3D printing
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the impact of persistent chemical contaminants on immune tolerance mechanisms in type 1 diabetes using 3D models based on perinatal stem cells and human pancreatic islets" Type 1 diabetes (T1D) is an
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. Background in bioluminescence, experimental physiology or cell biology. Experience with 3D morphological reconstruction. Gene manipulation experience (CRISPRcas). Proficiency in English – both written and
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experience with advanced human cell culture, including 3D models and organ-on-chip systems. Hands-on experience with pluripotent stem cell culture. Proficiency in standard molecular and cell biology techniques
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. An additional focus of the group is the study of chromatin organization and 3D genome folding in somatic, stem, and cancer cells, using an integrated and innovative methodology that combines state-of-the-art
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research laboratory setting with state-of-the-art facilities to study the cellular and molecular heterogeneity of esophageal mucosa. The laboratory technician will perform single cell RNA-sequencing, 3D
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and physicists, supported by European funding (ERC-Synergy). Modelling of cell migration in 3D without adhesion Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR168-KHEDIN-017
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molecular biology and cell culture techniques, including 3D cell cultures, cytotoxicity assays, and the use of advanced laboratory equipment such as flow cytometers and RT-PCR systems. Experience with
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | about 2 months ago
cell-matrix communication in human-relevant experimental settings. To achieve this, we will develop bioengineered platforms that combine cell-laden bioinstructive hydrogels, advanced 3D culture systems