Physiology Of Astroglia

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Physiology of Astroglia

Physiology of Astroglia
Author :
Publisher : Biota Publishing
Total Pages : 174
Release :
ISBN-10 : 9781615046737
ISBN-13 : 1615046739
Rating : 4/5 (739 Downloads)

Book Synopsis Physiology of Astroglia by : Alexei Verkhratsky

Download or read book Physiology of Astroglia written by Alexei Verkhratsky and published by Biota Publishing. This book was released on 2015-03-01 with total page 174 pages. Available in PDF, EPUB and Kindle. Book excerpt: Astrocytes can be defined as the glia inhabiting the nervous system with the main function in the maintenance of nervous tissue homeostasis. Classified into several types according to their morphological appearance, many of astrocytes form a reticular structure known as astroglial syncytium, owing to their coupling via intercellular channels organized into gap junctions. Not only do astrocytes establish such homocellular contacts, but they also engage in intimate heterocellular interactions with neurons, most notably at synaptic sites. As synaptic structures house the very core of information transfer and processing in the nervous system, astroglial perisynaptic positioning assures that these glial cells can nourish neurons and establish bidirectional communication with them, functions outlined in the concepts of the astrocytic cradle and multi-partite synapse, respectively. Astrocytes possess a rich assortment of ligand receptors, ion and water channels, and ion and ligand transporters, which collectively contribute to astrocytic control of homeostasis and excitability. Astroglia control glutamate and adenosine homeostasis to exert modulatory actions affecting the real-time operation of synapses. Fluctuations of intracellular calcium can lead to the release of various chemical transmitters from astrocytes through a process termed gliotransmission. Sodium fluctuations are closely associated to those of calcium with both dynamic events interfacing signaling and metabolism. Astrocytes appear fully integrated into the brain cellular circuitry, being an indispensable part of neural networks.


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