Investigating the mechanosensitive interplays between genetic control and self-organisation during the emergence of cardiac tissue curvature
In plain English
AI plain-English summaryThe developing heart bends itself into shape, and this project will investigate how mechanical forces—not just genetic instructions—guide that process. Congenital heart malformations account for up to 30% of embryos or foetuses lost before birth. Most research focuses on the genetic programmes that assign cell identities, but far less is known about the mechanical forces that physically assemble the growing heart. Abnormal forces can deregulate gene expression and cause congenital heart disease or cardiomyopathies. This project will explore how mechanotransduction—the process by which cells sense and respond to physical forces—coordinates genetic control with self-organisation during cardiac chamber formation. This is fundamental science. It will not produce a new drug or device in the short term. But understanding how mechanical cues shape a developing organ could eventually inform tissue engineering, improve the design of lab-grown heart tissue for transplantation, or help identify why certain pregnancies are at risk of cardiac defects. Similar fundamental work on mechanobiology has already changed how researchers think about cancer metastasis and wound healing.
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