Literature DB >> 12401955

Role of porphyrin sequestration in the biogenesis of iron-laden astrocytic inclusions in primary culture.

H M Schipper1, L Small, X Wang, J R Brawer.   

Abstract

Astrocytes in subcortical regions of the mammalian brain progressively accumulate iron-rich, autofluorecent cytoplasmic inclusions as a function of aging. Cysteamine (CSH) accelerates the appearance of this senescent glial phenotype in situ and in primary rat astroglial cultures. Porphyrins have been implicated as the source of orange-red autofluorescence in these glial inclusions. Yet, CSH has been shown to suppress porphyrin-heme biosynthesis in cultured astroglia. To determine whether porphyrin biosynthesis or sequestration participates in the biogenesis of these glial inclusions, the porphyrin precursor, (3)H-delta-aminolevulinic acid ((3)H-ALA) was administered to CSH-exposed and control rat astroglial cultures followed by light and electron microscopic autoradiography. Control cultures exhibited faint orange-red autofluorescence, intense (3)H-ALA labeling, numerous normal mitochondria and few cytoplasmic inclusions. In these cells, (3)H-ALA labeling largely occurred over normal mitochondria. The CSH-treated astroglia exhibited diminished (3)H-ALA labeling and contained numerous orange-red autofluorescent inclusions. The latter manifested internal compartments delimited by double membranes characteristic of damaged mitochondria. The complement of normal mitochondria in the CSH-exposed cells was markedly reduced. In the CSH-treated cells, (3)H-ALA labeling predominated over the large multi-compartmental inclusions. CSH attenuates de novo porphyrin-heme biosynthesis in astroglia but may induce punctate orange-red autofluorescence in the cytoplasm of these cells by promoting large numbers of damaged, porphyrin-containing mitochondria to form tight aggregates within the nascent gliosomes. Copyright 2002 S. Karger AG, Basel

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Year:  2002        PMID: 12401955     DOI: 10.1159/000065692

Source DB:  PubMed          Journal:  Dev Neurosci        ISSN: 0378-5866            Impact factor:   2.984


  1 in total

1.  Detecting fluorescent protein expression and co-localisation on single secretory vesicles with linear spectral unmixing.

Authors:  Fabien Nadrigny; Isabelle Rivals; Petra G Hirrlinger; Annette Koulakoff; Léon Personnaz; Marine Vernet; Myriam Allioux; Myriam Chaumeil; Nicole Ropert; Christian Giaume; Frank Kirchhoff; Martin Oheim
Journal:  Eur Biophys J       Date:  2006-03-28       Impact factor: 1.733

  1 in total

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