Key result
Platelets possess a large variety of receptors and secretory products active in inflammation, immunity, and tissue repair, suggesting they may be key players in multiple sclerosis and related neuroinflammatory disorders.
This review highlights the underappreciated role of platelets as mediators of inflammation and immunity in neuroinflammatory disorders like multiple sclerosis.
May support platelet-targeted research in MS; hypothesis-generating and should not yet change practice.
OBJECTIVES: This review summarizes recent developments in platelet biology relevant to neuroinflammatory disorders. Multiple sclerosis (MS) is taken as the "Poster Child" of these disorders but the implications are wide. The role of platelets in inflammation is well appreciated in the cardiovascular and cancer research communities but appears to be relatively neglected in neurological research. ORGANIZATION: After a brief introduction to platelets, topics covered include the matrix metalloproteinases, platelet chemokines, cytokines and growth factors, the recent finding of platelet PPAR receptors and Toll-like receptors, complement, bioactive lipids, and other agents/functions likely to be relevant in neuroinflammatory diseases. Each section cites literature linking the topic to areas of active research in MS or other disorders, including especially Alzheimer's disease. CONCLUSION: The final section summarizes evidence of platelet involvement in MS. The general conclusion is that platelets may be key players in MS and related disorders, and warrant more attention in neurological research.
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Horstman et al. (2010) conducted a review in Neuroinflammatory disorders (Multiple Sclerosis). Platelets was evaluated. Platelets possess a large variety of receptors and secretory products active in inflammation, immunity, and tissue repair, suggesting they may be key players in multiple sclerosis and related neuroinflammatory disorders.
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