| Literature DB >> 20604979 |
Yanping Gu1, Yong Chen, Xiaofei Zhang, Guang-Wen Li, Congying Wang, Li-Yen Mae Huang.
Abstract
It has been known for some time that the somata of neurons in sensory ganglia respond to electrical or chemical stimulation and release transmitters in a Ca2+-dependent manner. The function of the somatic release has not been well delineated. A unique characteristic of the ganglia is that each neuronal soma is tightly enwrapped by satellite glial cells (SGCs). The somatic membrane of a sensory neuron rarely makes synaptic contact with another neuron. As a result, the influence of somatic release on the activity of adjacent neurons is likely to be indirect and/or slow. Recent studies of neuron-SGC interactions have demonstrated that ATP released from the somata of dorsal root ganglion neurons activates SGCs. They in turn exert complex excitatory and inhibitory modulation of neuronal activity. Thus, SGCs are actively involved in the processing of afferent information. In this review, we summarize our understanding of bidirectional communication between neuronal somata and SGCs in sensory ganglia and its possible role in afferent signaling under normal and injurious conditions. The participation of purinergic receptors is emphasized because of their dominant roles in the communication.Entities:
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Year: 2010 PMID: 20604979 PMCID: PMC3120217 DOI: 10.1017/S1740925X10000116
Source DB: PubMed Journal: Neuron Glia Biol ISSN: 1740-925X