Abstract
1. To examine the functional importance of the pre-Bötzinger complex for breathing we micro-injected, under in vivo conditions, the calcium channel blocker omega-conotoxin GVIA and the sodium channel blocker tetrodotoxin (TTX) into the ventrolateral medulla of adult cats, while monitoring respiratory rhythmic motor output in the phrenic nerve. 2. omega-Conotoxin GVIA caused a highly localized synaptic ablation by blocking presynaptic N-type calcium channels. When injecting 5-60 fmol omega-conotoxin GVIA unilaterally, the amplitude of phrenic nerve activity decreased bilaterally and sometimes disappeared, indicating central apnoea. These effects were reversible and could only be induced in a very localized area of the pre-Botzinger complex. By injecting omega-conotoxin GVIA several times during an experiment and analysing the areas where injections affected respiratory activity, it was possible to map exactly the anatomical extent of the area critical for respiratory rhythm generation. 3. Following the precise localization of the pre-Bötzinger complex with omega-conotoxin GVIA, we injected TTX to induce an irreversible inactivation of this region. TTX injected unilaterally into the pre-Bötzinger complex irreversibly reduced the amplitude of phrenic nerve activity. Bilateral TTX injections eliminated respiratory rhythmic activity, causing a persistent central apnoea. 4. After bilateral lesioning of the pre-Bötzinger complex, it was still possible to induce gasping during hypoxia or asphyxia, indicating that respiration and gasping are generated by two different neuronal networks. 5. We propose that omega-conotoxin GVIA as employed in this study to investigate the functional role of the pre-Bötzinger complex can also be used as a general pharmacological approach to map other neuronal networks. We call this the 'omega-conotoxin GVIA tracing' method.
MeSH Terms
Animals
Apnea/chemically induced,physiopathology
Asphyxia/physiopathology
Brain Mapping
Calcium Channel Blockers/pharmacology
Cats
Female
Male
Medulla Oblongata/drug effects,physiology
Motor Neurons/physiology
Peptides/pharmacology
Phrenic Nerve/physiology
Respiration/drug effects,physiology
Respiratory Center/drug effects,physiology
Sodium Channel Blockers
Tetrodotoxin/pharmacology
omega-Conotoxin GVIA
Chemicals
Calcium Channel Blockers
Peptides
Sodium Channel Blockers
Tetrodotoxin
omega-Conotoxin GVIA
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Ramirez J M
Department of Physiology, University of Gottingen, D-37073 Gottingen, Germany. jramire@midway.uchicago.edu
Schwarzacher S W
Pierrefiche O
Olivera B M
Richter D W
References (22)
22 references, click to expand
-
Respiratory activity generated by a split brainstem preparation of the rabbit.
Acta Neurobiol Exp (Wars). 1981;41(2):237-42
PMID: 6269365
-
The neuronal mechanisms of respiratory rhythm generation.
Curr Opin Neurobiol. 1996 Dec;6(6):817-25
PMID: 9000025
-
Respiratory neurons in the region of the retrofacial nucleus: pontile, medullary, spinal and vagal projections.
Neurosci Lett. 1982 Aug 31;31(3):277-82
PMID: 7133563
-
Phrenic motoneurone activity in split-brainstem cats and monkeys.
Respir Physiol. 1982 Oct;50(1):51-61
PMID: 7178705
-
Purification and sequence of a presynaptic peptide toxin from Conus geographus venom.
Biochemistry. 1984 Oct 23;23(22):5087-90
PMID: 6509012
-
Respiratory motoneuronal activity is altered by injections of picomoles of glutamate into cat brain stem.
J Neurosci. 1986 Aug;6(8):2384-92
PMID: 2875138
-
Multiple types of neuronal calcium channels and their selective modulation.
Trends Neurosci. 1988 Oct;11(10):431-8
PMID: 2469160
-
Desynchronized respiratory rhythms and their interactions in cats with split brain stems.
J Physiol. 1989 Mar;410:513-32
PMID: 2507779
-
Subnuclear organization of the lateral tegmental field of the rat. I: Nucleus ambiguus and ventral respiratory group.
J Comp Neurol. 1990 Apr 8;294(2):202-11
PMID: 2332528
-
Neurogenesis, control, and functional significance of gasping.
J Appl Physiol (1985). 1990 Apr;68(4):1305-15
PMID: 2189860
-
Synaptic connections between medullary respiratory neurons and considerations on the genesis of respiratory rhythm.
Prog Neurobiol. 1990;35(6):429-50
PMID: 2175923
-
Pre-Bötzinger complex: a brainstem region that may generate respiratory rhythm in mammals.
Science. 1991 Nov 1;254(5032):726-9
PMID: 1683005
-
Generation and transmission of respiratory oscillations in medullary slices: role of excitatory amino acids.
J Neurophysiol. 1993 Oct;70(4):1497-515
PMID: 8283211
-
Calcium channel diversity and neurotransmitter release: the omega-conotoxins and omega-agatoxins.
Annu Rev Biochem. 1994;63:823-67
PMID: 7979255
-
Activation of adenosine A1 and A2 receptors differentially modulates calcium channels and glycinergic synaptic transmission in rat brainstem.
Neuron. 1994 Dec;13(6):1439-46
PMID: 7993635
-
In situ injection of kainic acid: a new method for selectively lesioning neural cell bodies while sparing axons of passage.
J Comp Neurol. 1978 Jul 15;180(2):301-23
PMID: 659663
-
Central control of breathing in mammals: neuronal circuitry, membrane properties, and neurotransmitters.
Physiol Rev. 1995 Jan;75(1):1-45
PMID: 7831394
-
Medullary loci critical for expression of gasping in adult rats.
J Physiol. 1994 Nov 1;480 ( Pt 3):597-611
PMID: 7869271
-
Pre-Bötzinger complex in the cat.
J Neurophysiol. 1995 Apr;73(4):1452-61
PMID: 7643160
-
Tonic sympathetic chemoreflex after blockade of respiratory rhythmogenesis in the rat.
J Physiol. 1996 Mar 15;491 ( Pt 3):859-69
PMID: 8815217
-
Calcium influx and transmitter release in a fast CNS synapse.
Nature. 1996 Oct 3;383(6599):431-4
PMID: 8837774
-
Ventilatory effects of kainic acid injection of the ventrolateral solitary nucleus.
J Appl Physiol Respir Environ Exerc Physiol. 1982 Jan;52(1):131-40
PMID: 6800984