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A Method of Nodose Ganglia Injection in Sprague-Dawley Rat
Authors:Michael W Calik  Miodrag Radulovacki  David W Carley
Institution:1.Center for Narcolepsy, Sleep and Health Research, University of Illinois at Chicago;2.Department of Pharmacology, University of Illinois at Chicago;3.Department of Biobehavioral Health Science, University of Illinois at Chicago
Abstract:Afferent signaling via the vagus nerve transmits important general visceral information to the central nervous system from many diverse receptors located in the organs of the abdomen and thorax. The vagus nerve communicates information from stimuli such as heart rate, blood pressure, bronchopulmonary irritation, and gastrointestinal distension to the nucleus of solitary tract of the medulla. The cell bodies of the vagus nerve are located in the nodose and petrosal ganglia, of which the majority are located in the former. The nodose ganglia contain a wealth of receptors for amino acids, monoamines, neuropeptides, and other neurochemicals that can modify afferent vagus nerve activity. Modifying vagal afferents through systemic peripheral drug treatments targeted at the receptors on nodose ganglia has the potential of treating diseases such as sleep apnea, gastroesophageal reflux disease, or chronic cough. The protocol here describes a method of injection neurochemicals directly into the nodose ganglion. Injecting neurochemicals directly into the nodose ganglia allows study of effects solely on cell bodies that modulate afferent nerve activity, and prevents the complication of involving the central nervous system as seen in systemic neurochemical treatment. Using readily available and inexpensive equipment, intranodose ganglia injections are easily done in anesthetized Sprague-Dawley rats.
Keywords:Neuroscience  Issue 93  neuroscience  nodose ganglia  vagus nerve  EMG  serotonin  apnea  genioglossus  cannabinoids
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