Search

Topics

Western News

Robarts Research Institute

Study provides new insight into brain’s attempts at psychosis recovery

Study provides new insight into brain’s attempts at psychosis recovery

A new study from Western’s Schulich School of Medicine & Dentistry and collaborators from West China Hospital in Chengdu, is challenging long-held notions about brain deterioration in patients with psychotic disorders, and may help improve treatment protocols.

Dr. Lena Palaniyappan

Psychotic disorders such as psychosis are often characterized as progressively worsening, with the brain deteriorating as the condition recurs through time. The study, led by Dr. Lena Palaniyappan, psychiatry professor and scientist at Robarts Research Institute, showed brain tissue actually increases in certain areas in patients with psychosis – even before they receive treatment. This could indicate that the brain’s attempts to rebuild itself may start even before a patient receives medical , Palaniyappan said. Studying this phenomenon further may help researchers improve treatment protocols and eventually have impacts on how we view and treat other youth-onset mental disorders. “When a young person develops psychosis, their family often fears what will happen in the future,” explained Palaniyappan. “It’s usually not a single episode. There’s a high chance people will continue to be unwell, and relapse is likely.” It’s that aspect of the disorder – the ongoing recurrence of episodes of psychosis – that Palaniyappan said contributes to the view of the illness as progressive. “Things do go downhill after psychosis first hits,” he said. “For 150 years, our conception of psychosis is that there is a lot of evidence to support the idea of deterioration through time.” But what does the brain do to recover? That’s the key question Palaniyappan sought to answer. “The brain is not passive, but a plastic organ – it tries to combat, to some extent, the trauma and stress inflicted by psychiatric conditions,” he explained. Palaniyappan’s team studied people with psychosis before they started receiving treatment to better understand how the brain responds. For 11 years, the team examined 340 patients who had not yet received any anti-psychotic medications at a partner hospital in West China – and made a remarkable discovery. While the team’s results did confirm a reduction in brain tissue in patients with psychosis compared to healthy people – even before receiving any treatment – they also observed increases in brain tissue in several parts of the brain, with correlations to better patient outcomes. “The higher the increase, the better some of the outcomes are,” Palaniyappan said. “The symptoms are less severe, duration of illness is shorter, and those with more increases in brain tissue perform better in cognitive tasks.” The results show two major findings: First, before medical intervention, the brain may already be attempting to reduce the impact of psychosis. Second, this rebuilding process may not be enough to fully stave off the disorder. “What this finding suggests is that psychosis is not a condition like dementia, where brain changes are degenerative, without any evidence of a reversal,” Palaniyappan said. “There are reversals already happening in the brain, to a small extent, by the time a person knocks at a doctor’s door with psychosis. If we can understand why and how this occurs, we may be able to improve it.” However, Palaniyappan said this study does not offer experimental proof and is limited by the fact that only one brain scan was obtained from each patient. While researchers do not know if the observed changes persist over time, the discovery opens the door to looking at psychosis treatments in a different way. “Most of the research to find new therapeutics and interventions in psychosis depend on the framework that the brain changes are signs of a damage,” he said. “If we shift our focus from brain damage and understand the mechanisms behind the brain’s attempts to recover and compensate, maybe we can achieve better outcomes.” Another important clue in the future of psychosis treatment is that about one in six patients will only ever have one psychotic episode in their lifetime, but it remains unclear why and there’s no way to predict who that might be. The study was completed in partnership with the West China Centre of Medical Sciences in Chengdu, Sichuan, China, with the research aided by the Kilborn Family Memorial Visiting Scholar Fund. “The funding helped us set up the plan and put it into action. Without this fund, the process would’ve taken much longer to bear fruit,” Palaniyappan said. “Most severe psychiatric disorders, about 75 per cent, start in teens or pre-teens and then become a life-spanning illness,” he said. “Almost all of the treatments we have are only symptom control measures; they are not curative. We do not know how to reverse the underlying processes.” As next steps, Palaniyappan said his team can look at replicating these studies in other large-scale samples. Studies in animal models to attempt to induce changes in brain tissue could also play a role in better understanding the brain’s compensation process. “Understanding compensatory processes will open the door to new ways of addressing many mental health problems,” he said.

Researchers receive more than $23.5 million from CIHR

Four Western researchers received grants totaling $9.9 million over seven years from the inaugural Canadian Institutes of Health Research (CIHR) Foundation Grant. Each is studying factors which may lead to improved health outcomes for people living with...

Robarts Clinical Trials Inc. moves downtown

Robarts Clinical Trials Inc., a global academic clinical research organization with offices in San Diego, Amsterdam and London, Ont., announced today a relocation to the Bell Canada Building in downtown London, effective Jan. 1, 2016. The new corporate headquarters,...

Initiative puts five neurodegenerative disorders on notice

Initiative puts five neurodegenerative disorders on notice

Robert Bartha hopes his latest research will allow him to travel back in time when it comes to aggressively attacking neurodegenerative diseases such as Alzheimer’s, ALS and Parkinson’s. “Our ultimate goal is to try to find ways of early diagnosis. Understanding...

Robarts showcases neurodegenerative disease research

While not his main area of expertise, Chris Hudson has a vested interest in the neurodegenerative disorder research being explored at Robarts Research Institute. A leading researcher in ophthalmology, Hudson was diagnosed with early-onset Parkinson’s when he was 41...

Robarts Clinical Trials named Business awards finalist

Robarts Clinical Trials Inc. has been named a finalist in for the 2015 London Business Achievement Awards in the Innovation category. Sponsored by the London Chamber of Commerce, the awards celebrate “the best and brightest of the London business community” in...

Donner to deliver Buck Lecture

Western Epidemiology and Biostatistics professor Allen Donner will deliver his lecture, Current Issues in the Design & Analysis of Cluster Randomization Trials, as the annual Carol Buck Lecture at 1:30-3:30 p.m. Friday, Dec. 5, in the Kresge Building K106. The...

Di Sebastiano, Gilroy receive Young Innovator awards

Western Chemistry professor Joseph Gilroy and Robarts Research Institute postdoctoral scholar Andrea Di Sebastiano have been tapped as Western’s Petro-Canada Young Innovator Award winners for 2014. Gilroy looks to develop revolutionary chelating (i.e. metal binding)...

Eyeing heart a new way offers hope to stroke victims

An inexpensive tool for assessing arteries inside the head may detect a potentially dangerous hole within the heart of some patients with an unexplained stroke, according to a Western researcher.

Hollywood star shines on Western

Actor and activist Martin Sheen toured Robarts Research Institute Tuesday afternoon, prior to his appearance at the Leaders in Innovation dinner, organized by the Schulich School of Medicine & Dentistry. While at Robarts, Sheen tried his hand at a tele-robotic system used for remote manipulation of a catheter, under the watchful eye of Schulich professor Dr. Geoffrey Pickering. The first of its kind system has been developed by Western graduate students Ali Tavallaei and Daniel Gelman.