Life Sciences 2011-08-01

Cross talk between activation of microglia and astrocytes in pathological conditions in the central nervous system.

W Liu, Y Tang, J Feng

Index: Life Sci. 89 , 141-6, (2011)

Full Text: HTML

Abstract

Microglia and astrocytes in the central nervous system are now recognized as active participants in various pathological conditions such as trauma, stroke, or chronic neurodegenerative disorders. Their activation is closely related with the development and severity of diseases. Interestingly, activation of microglia and astrocytes occurs with a spatially and temporarily distinct pattern. The present review explores the cross talk in the process of their activation. Microglia, activated earlier than astrocytes, promote astrocytic activation. On the other hand, activated astrocytes not only facilitate activation of distant microglia, but also inhibit microglial activities. Molecules contributing to their intercommunication include interleukin-1 (IL-1), adenosine triphosphate (ATP), and transforming growth factor beta (TGF-β). A better understanding about the cross talk between activation of microglia and astrocytes would be helpful to elucidate the role of glial cells in pathological conditions, which could accelerate the development of treatment for various diseases.Copyright © 2011 Elsevier Inc. All rights reserved.


Related Compounds

  • ATP disodium salt...
  • Adenosine 5'-triph...

Related Articles:

The novel protein kinase C epsilon isoform modulates acetylcholine release in the rat neuromuscular junction.

2015-01-01

[Mol. Brain 8 , 80, (2015)]

A Role for Gut Microbiota and the Metabolite-Sensing Receptor GPR43 in a Murine Model of Gout.

2015-06-01

[Arthritis Rheumatology 67 , 1646-56, (2015)]

A novel surface-confined glucaminium-based ionic liquid stationary phase for hydrophilic interaction/anion-exchange mixed-mode chromatography.

2014-09-19

[J. Chromatogr. A. 1360 , 240-7, (2014)]

Sequential phosphorylation analysis using dye-tethered peptides and microfluidic isoelectric focusing electrophoresis.

2015-11-15

[Biosens. Bioelectron. 73 , 93-9, (2015)]

A potentially novel nicotinic receptor in Aplysia neuroendocrine cells.

2014-07-15

[J. Neurophysiol. 112(2) , 446-62, (2014)]

More Articles...