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J Prineas

Publications and source records attributed to J Prineas.

At least 19 recordsLinked to original sources

NG2-positive oligodendrocyte progenitor cells in adult human brain and multiple sclerosis lesions.

Multiple sclerosis (MS) is characterized by multifocal loss of myelin, oligodendrocytes, and axons. Potential MS therapies include enhancement of remyelination by transplantation or manipulation of endogenous oligodendrocyte progenitor cells. Characteristics of endogenous oligodendrocyte progenitors in normal human brain and in MS lesions have not been studied extensively. This report describes the distribution of cells in sections from normal adult human brain and MS lesions by using antibodies directed against NG2, an integral membrane chondroitin sulfate proteoglycan expressed by oligodendrocyte progenitor cells. Stellate-shaped NG2-positive cells were detected in the white and gray matter of normal adult human brain and appeared as abundant as, but distinct from, astrocytes, oligodendrocytes, and microglia. Stellate-shaped or elongated NG2-positive cells also were detected in chronic MS lesions. A subpopulation of the elongated NG2-positive cells expressed the putative apoptotic signaling molecule p75(NTR). TUNEL-positive cells in three active, nine chronic active, and four chronic inactive lesions, however, were p75(NTR)-negative. These studies identify cells with phenotypic markers of endogenous oligodendrocyte progenitors in the mature human CNS and suggest that functional subpopulations of NG2-positive cells exist in MS lesions. Endogenous oligodendrocyte progenitor cells may represent a viable target for future therapies intended to enhance remyelination in MS patients.

Adult↗

Pathology of the early lesion in multiple sclerosis.

Ideas concerning the nature of multiple sclerosis continue to be strongly influenced by the unusual morphology of the disease. A review of classic histology studies, however, reveals that there is less agreement than might be supposed concerning several important histiological features of the early lesion. Electron microscopy of brain biopsies, of immersion fixed autopsy tissue and of autopsy tissue fixed by early in situ brain perfusion suggests that the mechanism of demyelination in multiple sclerosis may be an unusual one that involves a progressive reduction in the number of myelin lamellae around nerve fibers in the vicinity of cells of uncertain origin that contain filamentous and multilamellated cytoplasmic inclusions unlike the usual pleomorphic inclusions seen in myelin phagocytes. Lymphocytes are not directly involved in this process but are observed to contact the inclusion material following its delivery to the Virchow-Robin spaces. The putative neurogenic or viral antigen in multiple sclerosis may be contained in this material. The occurrence of filamentous nuclei in early lesions fixed by immersion is an unrelated phenomenon, which may be an autolytic or drug induced artifact although this has not yet been established.

Antigens↗

Paramyxovirus-like particles associated with acute demyelination in chronic relapsing multiple sclerosis.

Electron microscopy of small perivenous demyelinating lesions in a formalin-fixed brain of a multiple sclerosis subject revealed nuclear and cytoplasmic particles resembling paramyxovirus nucleocapsids. These particles, 18 to 20 nanometers in diameter, were found in mononuclear cells related to the central vein and infiltrating the zone of active demyelination. It is suggested that multiple sclerosis lesions may be initiated by seeding of lymphocytes bearing latent paramyxovirus to white matter of the central nervous system.

Adult↗