Completed Genetics & Molecular Biology Brain & Nervous System

siRNA therapy in dominant skin and eye disorders

In plain English

AI plain-English summary

A single injection of short RNA molecules could stop the production of faulty proteins that cause painful, incurable genetic skin and eye diseases. These disorders—such as severe blistering skin conditions and related corneal eye disease—currently require lifelong specialist care, costing the NHS billions each year. The underlying genes are known, but the therapy that could silence them, called RNA interference, has been stalled by a delivery problem: the therapeutic molecules are too large to slip into cells the way conventional drugs do. This programme brings together the geneticists who identified the disease genes with drug-delivery experts who specialise in getting molecules into skin and cornea. Because these target tissues are small and accessible, they offer a practical route for testing new delivery formulations. If the team succeeds in developing reliable delivery methods, the same approach could be adapted for other genetic disorders where the affected tissue is reachable. The project will build state-of-the-art model systems to validate the formulations, setting the stage for clinical trials. This is applied fundamental science—it tackles a specific delivery bottleneck rather than exploring a broad biological question—but the payoff could be a new class of treatments for diseases that currently have none.

View original technical description
Incurable genetic diseases represent a major cost to the NHS, requiring specialist care costing billions per annum. RNA interference is a new Nobel prize winning technology that is suitable for treatment of a large number of genetic disorders but a major hurdle to applying this clinically is the the problem of delivery of these therapy molecules, that are slightly larger than conventional drugs, into the target tissues and organs. This programme grant focuses on a group of painful, debilitating genetic skin diseases and a related corneal eye disease, where the target tissues are very small and very accessible. The programme brings together leading researchers who uncovered the genes causing these disorders, with experts in developing new methods to deliver molecules into skin or cornea. State-of-the-art model systems will be developed to validate delivery of these new formulations into the skin and the cornea, setting the scene for taking this new therapy method into the clinic.

View the original record at the funder ↗

Researchers

Frances Smith (Co-Investigator)William McLean (Principal Investigator)

Related Research

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Development of siRNA Nano-Carriers for In Vivo R&D and Gene Therapy
MICA: Delivering gene silencing therapy to the epidermis and ocular surface
RNA interference as a therapeutic agent for neuromuscular disease

Original classification

Research Grant

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