A drug that acts like a growth-promoting protein in the brain reduces degeneration and motor deficits associated with Huntingtonâ€™s disease in two mouse models of the disorder, according to a study appearing November 27 in the Journal of Neuroscience. The findings add to a growing body of evidence that protecting or boosting neurotrophinsâ€”the molecules that support the survival and function of nerve cellsâ€”may slow the progression of Huntingtonâ€™s disease and other neurodegenerative disorders.
Huntingtonâ€™s disease is a brain disorder characterized by the emergence of decreased motor, cognitive, and psychiatric abilities, most commonly appearing in the mid-30s and 40s. The disease is caused by a genetic mutation that leads to abnormal clumps of protein in the brain, eventually resulting in the atrophy and death of nerve cells. While there are drugs to alleviate some symptoms of the disease, there are currently no therapies to delay the onset or slow its progression.
Previous studies of people with Huntingtonâ€™s disease point to a link between low levels of a neurotrophin called brain-derived neurotrophic factor (BDNF) and symptoms of the disorder. In the current study, Frank Longo, MD, PhD, and others at Stanford University, tested LM22A-4, a drug that specifically binds to and activates the BDNF receptor TrkB on nerve cells, in mice that model the disorder. They found LM22A-4 reduces abnormal protein accumulation, delays nerve cell degeneration, and improves motor skills in the animals. The findings support other recent rodent studies that showed drugs that enhance the action of BDNF can reduce brain changes and symptoms of Huntingtonâ€™s disease.
â€œThese results strongly suggest that drugs that act, in part, like BDNF could be effective therapeutics for treating Huntingtonâ€™s disease and other neurodegenerative conditions,â€ Longo said.
How quickly the symptoms of Huntingtonâ€™s disease progress in people vary greatly. Longoâ€™s group examined the effects of LM22A-4 treatment in mice that were predisposed to develop symptoms of Huntingtonâ€™s disease rapidly (within weeks) or gradually (within months). LM22A-4 treatment reduced the accumulation of abnormal proteins in the striatum and cortexâ€”brain regions affected in Huntingtonâ€™s disease. Motor behaviors (downward climbing and grip strength) also improved in the mice that received LM22A-4 treatments daily.
â€œThe search for treatments that slow the progression of neurodegenerative diseases has gradually shifted from ameliorating symptoms to finding agents that reduce the progression of the disease,â€ said Gary Lynch, PhD, who studies neurodegeneration at the University of California, Irvine, and was not involved with this study. â€œGiven that this drug is clinically plausible, these results open up exciting possibilities for treating a devastating neurodegenerative disease,â€ he added.