Literature DB >> 1494939

Synaptic interactions between GABA-immunoreactive profiles and the terminals of functionally defined myelinated nociceptors in the monkey and cat spinal cord.

F J Alvarez1, A M Kavookjian, A R Light.   

Abstract

This study analyzes the synaptic interactions between the central terminals of A delta high threshold mechanoreceptors (A delta HTMs) and GABA-immunoreactive profiles. A delta HTM primary afferents from three monkeys and one cat were electrophysiologically identified and intracellularly labeled with HRP, and their terminal arborizations in laminae I and II of the sacrocaudal spinal cord were studied at the ultrastructural level. GABA-immunoreactive profiles in relation to A delta HTM terminals were demonstrated using postembedding colloidal gold techniques. Monkey A delta HTM terminals (n = 131) usually constituted the central element of synaptic glomeruli; they established large asymmetric synaptic contacts with 1-13 dendrites (modal value 2-4) and were surrounded by 0-6 peripheral axon terminals (modal value 2-3). The large majority (around 85%) of the peripheral axon terminals were GABA immunoreactive. They were found presynaptic to the A delta HTM terminal and/or to dendrites postsynaptic to the primary afferent terminal. Furthermore, all peripheral axon terminals found presynaptic to the A delta HTM terminals showed GABA immunoreactivity. Within a single A delta HTM fiber, this synaptic arrangement was found in 20-60% of its boutons. In addition, 28% of the postsynaptic dendritic profiles displayed weak GABA immunoreactivity. Some of them contained vesicles; however, only in a few cases did we observe synapses between a GABA-immunoreactive vesicle-containing dendrite and a dendritic profile postsynaptic to an A delta HTM terminal. Similar synaptology and interactions with GABA-immunoreactive profiles were displayed by the terminals of the single cat A delta HTM fiber studied. Our data support the hypothesis that GABA-containing neurons use both presynaptic and/or postsynaptic mechanisms to exert a powerful control, presumably inhibitory, over the transmission of nociceptive information between A delta HTM afferents and second-order neurons in monkey and cat spinal cord. Our results also imply that GABA may be released within the synaptic glomeruli formed by A delta HTM terminals either by local dendrites or by axon terminals. We discuss the possibility that these GABAergic synapses can be driven by inputs from both primary afferents and/or descending systems to modulate the transmission of nociceptive sensory information.

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Year:  1992        PMID: 1494939      PMCID: PMC6575644     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  15 in total

Review 1.  Nociceptors for the 21st century.

Authors:  F J Alvarez; R E Fyffe
Journal:  Curr Rev Pain       Date:  2000

2.  Presynaptic alpha2-GABAA receptors in primary afferent depolarization and spinal pain control.

Authors:  Robert Witschi; Pradeep Punnakkal; Jolly Paul; Jean-Sébastien Walczak; Fernando Cervero; Jean-Marc Fritschy; Rohini Kuner; Ruth Keist; Uwe Rudolph; Hanns Ulrich Zeilhofer
Journal:  J Neurosci       Date:  2011-06-01       Impact factor: 6.167

3.  Properties of mouse spinal lamina I GABAergic interneurons.

Authors:  Kimberly J Dougherty; Michael A Sawchuk; Shawn Hochman
Journal:  J Neurophysiol       Date:  2005-07-13       Impact factor: 2.714

4.  Phenotypic diversity and expression of GABAergic inhibitory interneurons during postnatal development in lumbar spinal cord of glutamic acid decarboxylase 67-green fluorescent protein mice.

Authors:  K J Dougherty; M A Sawchuk; S Hochman
Journal:  Neuroscience       Date:  2009-06-26       Impact factor: 3.590

5.  AMPA receptor subunits underlying terminals of fine-caliber primary afferent fibers.

Authors:  A Popratiloff; R J Weinberg; A Rustioni
Journal:  J Neurosci       Date:  1996-05-15       Impact factor: 6.167

Review 6.  Origins of antidromic activity in sensory afferent fibers and neurogenic inflammation.

Authors:  Linda S Sorkin; Kelly A Eddinger; Sarah A Woller; Tony L Yaksh
Journal:  Semin Immunopathol       Date:  2018-02-08       Impact factor: 9.623

7.  Descending projections from the rostral ventromedial medulla (RVM) to trigeminal and spinal dorsal horns are morphologically and neurochemically distinct.

Authors:  Sue A Aicher; Sam M Hermes; Kelsey L Whittier; Deborah M Hegarty
Journal:  J Chem Neuroanat       Date:  2011-11-20       Impact factor: 3.052

Review 8.  Neurotransmitters in subcortical somatosensory pathways.

Authors:  J Broman
Journal:  Anat Embryol (Berl)       Date:  1994-03

Review 9.  Delta Opioid Receptor Expression and Function in Primary Afferent Somatosensory Neurons.

Authors:  Amaury François; Grégory Scherrer
Journal:  Handb Exp Pharmacol       Date:  2018

10.  Spinal cord GABA receptors modulate the exercise pressor reflex in decerebrate rats.

Authors:  Han-Jun Wang; Wei Wang; Kaushik P Patel; George J Rozanski; Irving H Zucker
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2013-05-01       Impact factor: 3.619

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