Basement Membrane Guided Morphogenesis in vivo and in vitro
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AI plain-English summaryEvery time a fruit fly develops a wing or a human embryo forms a kidney, a thin sheet of proteins called the basement membrane physically moulds the growing tissue into the right shape. This project will measure exactly how that membrane stretches, stiffens, and grows alongside cells to guide three-dimensional form. Developmental disorders and birth defects often involve misshapen organs, but the mechanical role of the basement membrane—a kind of biological scaffolding—has been largely overlooked. Current knowledge focuses on genetic and chemical signals, not the physical forces that actually bend and fold tissue. The researcher will combine advanced imaging, genetic tools, and computer models to study basement membrane mechanics across fruit flies, zebrafish, and lab-grown human organoids. If successful, this work will provide the first detailed biophysical map of how cells and their surrounding membrane interact to generate shape. This is fundamental science. Understanding these mechanical principles could eventually help engineers build synthetic tissues and organs with custom-designed scaffolds, or explain why certain developmental malformations occur. Past discoveries in tissue mechanics have already improved reconstructive surgery and wound healing—this work lays the groundwork for similar advances.
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