Epilepsy drug shows potential for Alzheimer’s treatment

Sodium valproate – which is marketed as the anti-seizure drug Epilim – has been shown by scientists at the University of Leeds to reactivate the body’s own defences against a small protein called amyloid beta peptide, which is the main component of the brain plaques characteristic in Alzheimer’s. Their work was funded by the Medical Research Council.

“The fact that we’ve been able to show that a well-established, safe and relatively inexpensive drug could help treat Alzheimer’s is an extremely exciting development,” says lead researcher Professor Tony Turner from the University’s Faculty of Biological Sciences. “We hope colleagues will be able to progress this research with clinical trials in the near future.”

Alzheimer’s disease is the most common form of dementia and has no cure. In the UK today there a half a million people living with Alzheimer’s – and this is likely to double within a generation unless new treatments are found.

Sodium valproate has been used for many years to suppress epileptic seizures and the many sufferers of epilepsy have been taking the drug for decades with few side effects.

The development of Alzheimer’s is widely believed to be caused by the gradual accumulation in the brain of amyloid-beta peptide which is toxic to nerve cells. This is thought to be caused by a key enzyme called neprilysin or NEP gradually switching off in later life. One of NEP’s roles is to clear the toxic peptide from the brain, and plaques begin to form as it gradually switches off, leading to the death of the brain’s nerve cells.

The research team examined changes in chromatin – the ‘packaging’ that genes are contained within – and surmised that these changes might be involved in switching off NEP. The team found clear differences (acetylation) in key proteins within the chromatin when they compared normal nerve cells against those that failed to produce NEP.

“From there it was relatively simple to stimulate the expression of NEP with sodium valproate, which was seen to prevent the acetylation,” says Professor Turner. “We were elated when we saw the results.”

Professor Tony Turner, together with former colleague Dr John Kenny, first discovered NEP in the brain. His current research team comprises Dr Nikolai Belyaev, Dr Natalia Nalivaeva and Natalia Makova.

Media Contact

Jo Kelly alfa

More Information:

http://www.leeds.ac.uk

All latest news from the category: Life Sciences and Chemistry

Articles and reports from the Life Sciences and chemistry area deal with applied and basic research into modern biology, chemistry and human medicine.

Valuable information can be found on a range of life sciences fields including bacteriology, biochemistry, bionics, bioinformatics, biophysics, biotechnology, genetics, geobotany, human biology, marine biology, microbiology, molecular biology, cellular biology, zoology, bioinorganic chemistry, microchemistry and environmental chemistry.

Back to home

Comments (0)

Write a comment

Newest articles

Sea slugs inspire highly stretchable biomedical sensor

USC Viterbi School of Engineering researcher Hangbo Zhao presents findings on highly stretchable and customizable microneedles for application in fields including neuroscience, tissue engineering, and wearable bioelectronics. The revolution in…

Twisting and binding matter waves with photons in a cavity

Precisely measuring the energy states of individual atoms has been a historical challenge for physicists due to atomic recoil. When an atom interacts with a photon, the atom “recoils” in…

Nanotubes, nanoparticles, and antibodies detect tiny amounts of fentanyl

New sensor is six orders of magnitude more sensitive than the next best thing. A research team at Pitt led by Alexander Star, a chemistry professor in the Kenneth P. Dietrich…

Partners & Sponsors