4.5 Review

Gangliosides play important roles in the nervous system by regulating ion concentrations

Journal

NEUROCHEMICAL RESEARCH
Volume 47, Issue 7, Pages 1791-1798

Publisher

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s11064-022-03576-2

Keywords

Gangliosides; Nervous system; Ion concentration; Ion channels; Disease

Funding

  1. General project of Education Department of Liaoning Province [LJKZ0931, LJKZ0947, LJKZ0952]
  2. cultivation Fund Project of National Natural Science Foundation of Shenyang Pharmaceutical University [PYJJ2021106]

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Gangliosides are crucial components of neuronal cell membranes, playing a vital role in neuronal and brain development. They are involved in neurotransmission and considered as the structural foundation of learning and memory. Gangliosides also participate in various physiological processes, including cell differentiation, cell signaling, neuroprotection, nerve regeneration, and cell apoptosis. The regulation of ion concentration by gangliosides is important in neurological diseases, highlighting their role in neuronal excitability and synaptic transmission. Therefore, understanding the role of gangliosides in maintaining ion concentration homeostasis is essential for their potential use as drugs for treating nervous system diseases.
Gangliosides are important components of the neuronal cell membrane and play a vital role in the development of neurons and the brain. They participate in neurotransmission and are considered as the structural basis of learning and memory. Gangliosides participate in several and important physiological processes, such as cell differentiation, cell signaling, neuroprotection, nerve regeneration and apoptosis. The stability of ion concentration in excitable cells is particularly important in the maintenance of a steady state of cells and in the regulation of physiological functions. Ion concentration has been found to be related to the ganglioside's regulation in many neurological diseases, and several studies have found that they can stabilize intracellular ion concentration by regulating ion channels, which highlights their important regulatory role in neuronal excitability and synaptic transmission. Gangliosides can influence some forms of ion transport, by directly binding to ion transporters or through indirect binding and activation of transport proteins via appropriate signaling pathways. Therefore, the important and special role of gangliosides in the homeostasis of ion concentration is becoming a hot topic in the field and a theoretical basis in promoting help gangliosides use as key drugs for the treatment of nervous system diseases.

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