Journal Article10.1016/0165-1838(94)00161-C
Membrane properties and synaptic potentials in rat sympathetic preganglionic neurons studied in horizontal spinal cord slices in vitro
Pankaj Sah,Elspeth M. McLachlan +1 more
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TL;DR: It is concluded that excitatory bulbospinal inputs to SPNs involve at least one fast transmitter which is likely to be glutamate and one slow transmitterWhich is not noradrenaline.
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Abstract: Intracellular recordings were made from neurons in the intermediolateral column and adjacent white matter in horizontal slices of upper thoracic spinal cord from rats aged 21-28 days. Membrane properties were studied in the presence of picrotoxin (100 microM) to block ongoing inhibitory synaptic potentials. 37 neurons were identified as sympathetic preganglionic neurons (SPNs) by their electrical behaviour, anatomical location and/or morphology. SPNs had resting potentials of -57 +/- 2 mV and input resistances of 254 +/- 31 M omega (n = 14). Following a hyperpolarising voltage step, a transient outward current was activated which had a time constant of decay of approx. 400 ms. The inflection in the repolarising phase of the action potential and the following prolonged AHP were both abolished by Cd2+ (50 microM). The current underlying the AHP had two components with kinetic properties similar to the two calcium-activated potassium conductances, gKCa1, and gKCa2, characterized in other autonomic neurons. Noradrenaline (10-100 microM) caused a small depolarization and blocked the calcium component of the action potential suppressing the AHP. This revealed an afterdepolarization (ADP) with an underlying inward current with a decay time constant of approx. 150 ms. All effects of noradrenaline were blocked by phentolamine (10 microM). Graded stimulation of the lateral funiculus 0.5-1 mm rostral to the recording site evoked in all cells monosynaptic fast excitatory synaptic potentials (fEPSPs) which were graded in amplitude. fEPSPs decayed with a time constant identical to the cell input time constant and were reduced in amplitude by CNQX (10-20 microM). In 7 cells, higher stimulus voltages elicited slow EPSPs with a time to peak of 1.1 +/- 0.1 s and a half decay of 2.8 +/- 0.3 s (n = 7) which were not reduced by alpha-adrenoceptor antagonists. The AHP was not blocked when the action potential was initiated during the slow EPSP. We conclude that excitatory bulbospinal inputs to SPNs involve at least one fast transmitter which is likely to be glutamate and one slow transmitter which is not noradrenaline.
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References
NMDA and non-NMDA receptors are co-localized at individual excitatory synapses in cultured rat hippocampus
TL;DR: It is shown that the majority of the excitatory synapses on a postsynaptic cell possess both kinds of receptor, although to different extents, which provides direct evidence for co-localization of glutamate-receptor subtypes at individual synapses and points to the possibility that long-term potentiation might be differentially expressed at each synapse according to the mix of receptor sub types at that synapse.
686
The morphology and distribution of neurons containing choline acetyltransferase in the adult rat spinal cord: An immunocytochemical study
Robert P. Barber,Patricia E. Phelps,C. R. Houser,G. D. Crawford,Paul M. Salvaterra,James E. Vaughn +5 more
TL;DR: A monoclonal antibody to choline acetyltransferase (ChAT), the acetyl‐choline (ACh)‐synthesizing enzyme, has been used to localize ChAT within neurons in immunocytochemical preparations of adult rat spinal cord, allowing comprehensive descriptions of the distribution of ChAT‐positive neurons and the interrelationships of their processes.
452
Physiological and morphological identification of a nonpyramidal hippocampal cell type
TL;DR: Intracellular injection of HRP into these cells shows them to be a non-pyramidal cell type with extensive local axon ramification; however, they do not resemble the classical basket cell; these cells are, nevertheless, candidates for an interneuron in hippocampus.
337
Spinal Neurons and Synapses
R. E. Burke,P. Rudomin +1 more
TL;DR: The sections in this article are: General Considerations, Evidence for the Existence of Primary Afferent Depolarization (PAD), and Organization of PAD.
279