Active Brain & Nervous System Cancer

Microglia in Early Dementia with Lewy Bodies

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AI plain-English summary

Microglia — the brain’s immune cells — are unusually active in the earliest stages of dementia with Lewy bodies, and this study will test whether a protein on their surface called toll-like receptor could be a drug target to slow the disease. Dementia with Lewy bodies affects thinking, memory, and daily activities, and also brings visual hallucinations and Parkinson’s-like symptoms. No treatment currently slows its progression. Previous work suggests microglia may drive early damage, but it is not clear whether toll-like receptors are the right lever to pull. This study combines two approaches: live brain scans to see whether increased microglial activity predicts faster decline, and analysis of donated brain tissue to link toll-like receptors to disease processes. If the results show that toll-like receptors are central to early disease, they could become the target for clinical trials of new drugs. The same brain-scanning technique could then be used to select patients for those trials and measure whether a treatment is working. This is translational research aimed directly at a treatment target, not fundamental science — success would mean a clear path to human trials.

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Aims The aim of this project is to identify a new treatment target for the early stages of dementia with Lewy bodies. Background Dementia affects a person's thinking skills, memory and ability to carry out their day-to-day activities. Around one million people in the UK have dementia. 5-10% of these people have a type of dementia called dementia with Lewy bodies (DLB). In addition to problems with thinking skills, DLB is associated with other symptoms, including visual hallucinations and the symptoms of Parkinson's disease. These symptoms cause significant distress for people with DLB and their loved ones. At present, there is no treatment that can slow the progression of the disease. Microglia are specialised cells in the brain with a range of roles including controlling brain inflammation and removing unwanted material from around brain cells. Previous research has suggested that microglia may play a role in the early stages of DLB. The activity of microglia in the brain can be measured using a specialised brain scan called TSPO PET imaging. This allows us to show whether the number of microglia is increased in early DLB. Toll-like receptors are proteins that sit on the surface of microglia and other cells. They can influence the activity of microglial cells. Microglia and toll-like receptors can be measured in brain tissue from people with DLB after death. The aim of this study is to demonstrate whether toll-like receptors are a good target for drugs aiming to slow the progression of DLB. Objectives 1. Using TSPO PET imaging: quantify microglia in early DLB and assess the degree to which increased microglia are associated with more rapid disease progression 2. Using brain tissue: quantify microglial cells and toll-like receptors in the brains of people with early DLB and examine the association between microglial toll-like receptors and disease processes in DLB Design Objective 1: Brain Imaging We will recruit 50 participants with early DLB, along with 20 healthy people. All participants will have a thorough clinical assessment including measurements of the severity of dementia at baseline, 12 months and 24 months. Blood samples will be taken from all participants at baseline and 24 months, along with an optional lumbar puncture to obtain cerebrospinal fluid (the fluid that surrounds the brain and spinal cord). Participants will have a TSPO PET scan. This will allow us to see if there are more microglial cells in the brains of people with early DLB and if microglial cells are associated with faster progression of dementia. We will repeat the TSPO PET scan after 24 months in participants with DLB. This will allow us to see if microglial cell numbers change over time in DLB. Objective 2: Brain Tissue Analysis We will use brain tissue donated by 30 people who died with early DLB and 30 people who died without any brain disease. Special dyes will be used to look at microglial cells and toll-like receptors under a microscope. Chemicals in the brain tissue will also be measured to understand how toll-like receptors and microglia are associated with other disease processes. This will allow us to understand whether influencing toll-like receptors is likely to slow disease progression in DLB. Patient/service user, carer and public involvement A patient and public involvement (PPI) group was consulted in the development of this proposal in April 2020. A PPI Reference Group will meet throughout the Fellowship and PPI members will be invited to sit on the project steering group. Applications and benefits The findings of this study could rapidly lead to early-stage clinical trials of toll-like receptor-based treatments in early DLB. This study could also lead to the use of TSPO PET imaging to identify appropriate participants and measure treatment response in such trials.

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Researchers

Paul Donaghy (Principal Investigator)

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Original classification

Fellowship

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