Related Experiment Video
Updated: Jun 12, 2026

Imaging of Intracellular ATP in Organotypic Tissue Slices of the Mouse Brain using the FRET-based Sensor ATeam1.03YEMK
Published on: December 19, 2019
Transmitter mediated regulation of energy metabolism in nervous tissue at the cellular level
V W Pentreath1, L H Seal, J H Morrison
1Department of Biological Sciences, University of Salford, Salford M5 4WT, U.K.
Abstract:
The Monoamines 5-hydroxytryptamine (5-HT), noradrenaline (NA) and histamine, and the peptide Vasoactive Intestinal Polypeptide (VIP), regulate energy metabolism in nervous tissue, in addition to producing excitation and/or inhibition. These transmitters induce glycogen hydrolysis in a concentration dependent manner. The glycogen breakdown is brought about by increased cyclic AMP formation, or translocation of calcium ions to activate phosphorylase, and is partially localized in glial cells. Data from a diversity of nervous systems, including leech and snail ganglia, and rodent cortex, point towards important roles for neurons containing these transmitters in the regulation of the glycogen turnover. It is proposed that energy metabolism may be controlled within domains defined by the geometric arrangements of the neurons releasing these transmitters. The different domains may overlap temporally and spatially to coordinate energy metabolism in relation to increases in neuronal activity. The non-myelin forming glial cells, which contain glycogen whose turnover rate is altered by the transmitters, appear to be important in the local supply of energy substrate to neurons.
Related Concept Videos
Excitatory and Inhibitory Effects of Neurotransmitters
Regulation of Metabolism
Neurotransmitters
Neurotransmitters
Neurochemical Transmission: Sites of Drug Action
Classification of Neurotransmitters

