Literature DB >> 11565610

Endocytosis in rat cultured astrocytes is inhibited by unconjugated bilirubin.

R F Silva1, L M Mata, S Gulbenkian, D Brites.   

Abstract

Excessive hyperbilirubinemia can cause irreversible neurological damage in the neonatal period. However, the complete understanding of the pathogenesis of unconjugated bilirubin (UCB) encephalopathy remains a matter of debate. This study investigates whether UCB inhibits the endocytosis of cationized ferritin (CF) by cultured rat astrocytes. The relationship between endocytosis and MTT reduction, as well as changes on tubulin and glial fibrillary acidic protein (GFAP) assembly, were also evaluated. Inhibition of endocytosis was complete in the presence of 171 microM UCB, while a marked decrease of CF labeling was noticed for 86 microM UCB. In addition, MTT reduction was inhibited by 60 to 76% as UCB concentrations changed from 17 to 171 microM, while alterations on both GFAP and microtubule morphology were only achieved by cell exposure to 171 microM UCB. These findings indicate that inhibition of CF endocytosis in rat cortical astrocytes by UCB is a concentration-dependent process that appears to be primarily related to a direct effect on the cell membrane and not to any alteration of cytoskeletal microtubules and intermediate filaments.

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Year:  2001        PMID: 11565610     DOI: 10.1023/a:1011608017870

Source DB:  PubMed          Journal:  Neurochem Res        ISSN: 0364-3190            Impact factor:   3.996


  57 in total

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5.  Effects of bilirubin molecular species on membrane dynamic properties of human erythrocyte membranes: a spin label electron paramagnetic resonance spectroscopy study.

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6.  Alterations in the glial fibrillary acidic protein content of primary astrocyte cultures for evaluation of glial cell toxicity.

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Review 10.  Glial fibrillary acidic protein: dynamic property and regulation by phosphorylation.

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Review 6.  Bilirubin-Induced Neurological Damage: Current and Emerging iPSC-Derived Brain Organoid Models.

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7.  Unconjugated bilirubin exposure impairs hippocampal long-term synaptic plasticity.

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  7 in total

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