Abstract |
Neuroinflammation, a major contributor to neurodegenerative diseases, involves the contribution of activated microglia, reactive astrocytes, and infiltrating inflammatory cells. Stress and various acute or chronic brain injuries stimulate the generation of free radicals and glutamate, triggering inflammatory pathways that lead to increases in chemokines, cytokines, and prostaglandins. Prostaglandins are lipid mediators of inflammation that are produced from arachidonic acid by cyclooxygenase enzymes. They are generally believed to be in all tissues and organs. Their transport through the lipid bilayers of the cell membranes/organelles is facilitated by the prostaglandin transporter (PGT). In this study, middle frontal gyrus brain tissue from patients diagnosed with Alzheimer disease (AD) and that of age-matched control brains were examined to determine the protein expression pattern of PGT and its possible role in modulating neuroinflammation associated with AD. Immunohistochemical and immunofluorescent studies showed that PGT protein was expressed in all the brain tissues examined and was localized in neurons, microglia, and astrocytes. Interestingly, Western blot analysis revealed that the PGT level was significantly less in AD than in age-matched control brain homogenates. Further work is warranted to address the possibility and implications that prostaglandins might not be cleared at a proper rate in AD brains.
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Authors | Koyi Choi, Hean Zhuang, Barbara Crain, Sylvain Doré |
Journal | Journal of neuroimmunology
(J Neuroimmunol)
Vol. 195
Issue 1-2
Pg. 81-7
(Mar 2008)
ISSN: 0165-5728 [Print] Netherlands |
PMID | 18353443
(Publication Type: Comparative Study, Journal Article, Research Support, N.I.H., Extramural)
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Chemical References |
- CD11b Antigen
- Glial Fibrillary Acidic Protein
- Neurofilament Proteins
- Organic Anion Transporters
- SLCO2A1 protein, human
- neurofilament protein H
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Topics |
- Aged
- Aged, 80 and over
- Alzheimer Disease
(metabolism, pathology, physiopathology)
- CD11b Antigen
(metabolism)
- Case-Control Studies
- Female
- Frontal Lobe
(metabolism)
- Gene Expression Regulation
(physiology)
- Glial Fibrillary Acidic Protein
(metabolism)
- Humans
- Male
- Middle Aged
- Neurofilament Proteins
(metabolism)
- Organic Anion Transporters
(metabolism)
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