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Published on: November 25, 2014
The subdiaphragmatic vagus nerves mediate activation of locus coeruleus neurons by peripherally administered
1Department of Psychiatry and Behavioral Sciences, Emory University Medical School, Emory West Campus, 1256 Briarcliff Road Northeast, Atlanta, GA 30306, USA. mborsody@hotmail.com
Abstract:
Our earlier studies demonstrated that representative microbial substances--lipopolysaccharide, peptidoglycan, and poly-inosine: poly-cytosine (poly(I):(C))--increased the spontaneous discharge rates and sensory-evoked responses of isolated locus coeruleus (LC) neurons in a dose- and time-related manner after i.p. injection into rats. We then turned our attention to the mechanism by which microbial substances administered into the peritoneal cavity affect the LC neurons. The involvement of the subdiaphragmatic vagus nerves was examined in this regard since several brain responses to peripherally administered lipopolysaccharide have been found to depend upon the integrity of these nerves. The experiments reported here show that lipopolysaccharide, peptidoglycan, and poly(I):(C) all failed to excite LC neurons after i.p. injection into rats that had previously been subjected to complete transection of the subdiaphragmatic vagus nerves. Furthermore, selective transection of the subdiaphragmatic vagus nerve trunks indicated that the dorsal trunk, and not the ventral trunk, was necessary to excite LC neurons in response to i.p. lipopolysaccharide. The inability of LC neurons to respond to i.p. lipopolysaccharide in vagotomized rats is unlikely to be attributed to a desensitization of the neurons to lipopolysaccharide since i.c.v. injection of lipopolysaccharide excited LC neurons in vagotomized rats as it did in vagus-intact rats. These findings suggest that a variety of microbial substances excited LC neurons after administration into the peritoneal cavity in a manner involving the subdiaphragmatic vagus nerves.
Insights
Microbial substances like lipopolysaccharide excite locus coeruleus (LC) neurons via the vagus nerve. Transecting the dorsal vagus nerve blocks this excitation, indicating its crucial role in microbial-induced neural responses.
Area of Science:
- Neuroscience
- Immunology
- Physiology
Background:
- Previous studies showed microbial substances increase locus coeruleus (LC) neuron activity.
- The mechanism by which peripheral microbial substances affect LC neurons remains unclear.
- Brain responses to peripheral lipopolysaccharide often involve subdiaphragmatic vagus nerves.
Purpose of the Study:
- To investigate the mechanism of microbial substance-induced excitation of LC neurons.
- To determine the role of subdiaphragmatic vagus nerves in this process.
Main Methods:
- Rats underwent transection of subdiaphragmatic vagus nerves (complete, dorsal, or ventral).
- Microbial substances (lipopolysaccharide, peptidoglycan, poly(I):(C)) were administered intraperitoneally (i.p.).
- LC neuron activity was measured, and intracerebroventricular (i.c.v.) lipopolysaccharide was used as a control.
Main Results:
- i.p. administration of microbial substances failed to excite LC neurons in rats with complete vagotomy.
- Transection of the dorsal vagus nerve, but not the ventral trunk, prevented LC neuron excitation by i.p. lipopolysaccharide.
- LC neurons in vagotomized rats still responded to i.c.v. lipopolysaccharide, ruling out desensitization.
Conclusions:
- Subdiaphragmatic vagus nerves are essential for microbial substance-induced excitation of LC neurons.
- The dorsal vagus nerve trunk plays a critical role in mediating these neuro-immune responses.
- Microbial substances likely signal to LC neurons through the vagus nerve pathway after peritoneal administration.
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