Glia · 1989 · 71 citations · 17 references
Intervertebral DiscLumbar Spinal CordImmunologyLewis RatNeuroinflammationLumbar SpineEpendymaAutophagyAutoantibodiesNeurologyNeuropathologyNeuroimmunologyEarly StageHealth SciencesSpinal Cord InjuryAutoimmune DiseaseAllergyGlial FilamentsAutoimmunityNervous SystemNeurophysiologyNeuroanatomyGfap Intermediate FilamentsPhysiologySpinal BiomechanicsNeuroscienceCentral Nervous SystemMedicine
Acute experimental allergic encephalomyelitis (EAE) in the Lewis rat is a cell-mediated autoimmune disease of central nervous system myelin. The lesion has been characterized by breakdown of the blood-brain barrier, edema, and periventricular infiltration of macrophages and lymphocytes. At the early stage of the disease, the astrocytes show a marked increase in immunostaining for glial fibrillary acidic protein (GFAP). A corresponding increase in GFAP content, however, cannot be demonstrated. Electron microscopic examination of the early lesion shows a typical reactive astrocytic response expressed by an enlarged watery cytoplasm, particularly at the level of the processes surrounding neurons and blood vessels and in the neuropil itself. The astroglial processes contain numerous glycogen particles (aggregates and single particles). Glial filaments are also conspicuous and are arranged in small bundles or loose thin filaments adjacent to the bundles. The glial filaments that normally appear as tight bundles have expanded and appear less dense. We suggest that the increase in GFAP immunostaining of the astrocytes in the early lesion is due in part to edema, which causes dissociation of the filaments and thereby exposes more antigenic sites to the antibodies.
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Oxygen radicals and the nervous system
Barry Halliwell, John M.C. Gutteridge · Trends in Neurosciences · 1985 · 820 citations
Annals of Internal Medicine · 1965 · 642 citations
The Biochemical Pathology of Astrocytes
Philip E. Duffy · Journal of Neuropathology & Experimental Neurology · 1989 · 302 citations · Full text
Ependyma, Glioma, Cell Death +7