Sculpting the labyrinth: epithelial morphogenesis in the zebrafish inner ear
In plain English
AI plain-English summaryDuring development, a flat sheet of cells in the zebrafish inner ear folds, fuses, and perforates itself in a matter of hours—a miniature architectural transformation that, when it fails in humans, can cause birth defects such as spina bifida and cleft palate. This project addresses a fundamental gap in developmental biology: how do small groups of epithelial cells coordinate fusion and perforation to reshape an organ? The zebrafish ear is an ideal model because these events involve only a few cells, are rapid, and can be watched live under a microscope. The researchers will map cell division and death, track cytoskeletal changes, and test specific signalling pathways (aGPCR, Wnt, Netrin) to identify the molecular machinery driving these topological changes. This is primarily curiosity-driven fundamental science. There is no immediate clinical application. However, understanding the conserved cell behaviours that sculpt organs could, in the long term, inform strategies to prevent or repair congenital malformations. Past work on epithelial remodelling has already illuminated how tissues seal wounds and how cancers invade—so a deeper grasp of these basic mechanisms often yields unexpected medical insights.
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