Acute and chronic spinal cord injury: novel studies of synaptogenesis, plasticity and mechanisms of repair
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AI plain-English summaryMost people with a spinal cord injury regain some movement and sensation in the first year, but no one knows exactly why. This project aims to find out. The problem is that while spontaneous recovery happens, it is always incomplete. The researchers want to understand the biological mechanisms behind this recovery—how damaged nerve fibres regain the ability to conduct signals, and how new connections form between nerve cells. They have an enzyme therapy that can dissolve scar tissue molecules blocking repair, but delivering enough of it to the spinal cord without causing further damage is a challenge. They have developed a new delivery method that gets the enzyme inside scar cells, and will test whether it improves function. They will also use fluorescent probes that light up only when nerve cells are active, to see whether newly sprouted fibres can actually transmit signals. If this works, it could lead to therapies that push recovery further than what happens naturally. The research is fundamental science—it is about understanding the basic biology of spinal cord repair. But that understanding could eventually guide new drugs or treatments that restore more movement and sensation to people with spinal cord injuries.
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