Lorraine Work
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Dr. Lorraine Work is a Reader at the University of Glasgow, United Kingdom. Her research focuses on hypertension, dementia, and the utility of antihypertensives, as well as preclinical models in stroke and traumatic brain injury. Additionally, she investigates extracellular vesicles and their role in ischaemic stroke, along with the vascular contributions to dementia through a multidisciplinary lens.
Recent Grants
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Extracellular vesicle mediated microRNA delivery as a therapeutic for ischaemic stroke
Open Date: 2019-01-01
Close Date: 2021-06-01
Grant: Close
Modulation of microRNA as a therapeutic strategy for stroke
Open Date: 2012-03-01
Close Date: 2016-02-29
Grant: Close
A combined approach to target reactive oxygen species and neuronal death in stroke
Open Date:
Close Date:
Grant: Close
A combined approach targeting oxidative stress and apoptosis in stroke
Open Date:
Close Date:
Articles (12)
Polypathologies and Animal Models of Traumatic Brain Injury
Traumatic brain injury (TBI) is an important health issue for the worldwide population, as it causes long-term pathological consequences for a diverse group of individuals. We are yet to fully elucidate the significance of TBI polypathologies, such as neuroinflammation and tau hyperphosphorylation, and their contribution to the development of chronic traumatic encephalopathy (CTE) and other neurological conditions. To advance our understanding of TBI, it is necessary to replicate TBI in preclinical models. Commonly used animal models include the weight drop model; these methods model human TBI in various ways and in different animal species. However, animal models have not demonstrated their clinical utility for identifying therapeutic interventions. Many interventions that were successful in improving outcomes for animal models did not translate into clinical benefit for patients. It is important to review current animal models and discuss their strengths and limitations within a TBI context. Modelling human TBI in animals encounters numerous challenges, yet despite these barriers, the TBI research community is working to overcome these difficulties. Developments include advances in biomarkers, standardising, and refining existing models. This progress will improve our ability to model TBI in animals and, therefore, enhance our understanding of TBI and, potentially, how to treat it.
Year:
2023
Year:
2022
Collaborators (11)
Harry Pritchard
The University of Manchester
Hilary Carswell
University Of Strathclyde
Josie L. Fullerton
University of Glasgow
Josephine Thomas
The University of Manchester
Catherine Hall
Senior Lecturer
University of Sussex
Rebecca Trueman
Associate Professor
University of Nottingham
J Scott Miners
University of Bristol
Stuart Allan
Professor of Neuroscience
The University of Manchester
Tracy D Farr
Associate Professor
University of Nottingham
Chris McCabe
Global Asset Medical Community Head
UCB BioSciences GmbH
Adam Greenstein
Professor
The University of Manchester

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