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P Darbon

Publications and source records attributed to P Darbon.

7 recordsLinked to original sources

Role of the electrogenic Na/K pump in disinhibition-induced bursting in cultured spinal networks.

Disinhibition-induced bursting activity in cultures of fetal rat spinal cord is mainly controlled by intrinsic spiking with subsequent recurrent excitation of the network through glutamate synaptic transmission, and by autoregulation of neuronal excitability. Here we investigated the contribution of the electrogenic Na/K pump to the autoregulation of excitability using extracellular recordings by multielectrode arrays (MEAs) and intracellular whole cell recordings from spinal interneurons. The blockade of the electrogenic Na/K pump by strophanthidin led to an immediate and transient increase in the burst rate together with an increase in the asynchronous background activity. Later, the burst rate decreased to initial values and the bursts became shorter and smaller. In single neurons, we observed an immediate depolarization of the membrane during the interburst intervals concomitant with the rise in burst rate. This depolarization was more pronounced during disinhibition than during control, suggesting that the pump was more active. Later a decrease in burst rate was observed and, in some neurons, a complete cessation of firing. Most of the effects of strophanthidin could be reproduced by high K+-induced depolarization. During prolonged current injections, spinal interneurons exhibited spike frequency adaptation, which remained unaffected by strophanthidin. These results suggest that the electrogenic Na/K pump is responsible for the hyperpolarization and thus for the changes in excitability during the interburst intervals, although not for the spike frequency adaptation during the bursts.

Action Potentials↗

Cholinergic control of membrane conductance and intracellular free Ca2+ in outer hair cells of the guinea pig cochlea.

We have studied the action of cholinergic agonists on outer hair cells, both in situ and isolated from the cochlea of the guinea pig, combining new fast CCD technology for Ca2+ imaging and conventional patch-clamp methods. Carbachol (1 mM) activated a current with a reversal potential near -70 mV and a bell-shaped I-V curve, suggesting that it was a Ca2+ activated K+ current. In a few cells, this current was preceded by a transient inward current, probably owing to an influx of Ca2+ and other cations through the acetylcholine (ACh) receptors. The amplitude of the Ca2+ signal was maximal in a circumscribed region at the basal pole of the cell and decreased steeply towards the apical pole, compatible with Ca2+ influx and/or Ca2+ induced Ca2+ release at the cells base. The time course of the Ca2+ rise was fastest at the base, but it was still slightly slower, and more rounded, than that of the K+ current. In some recordings the K+ current was observed without any measurable change of intracellular Ca2+. The K+ current was potentiated (18%) by caffeine (5 mM), and decreased (19%) by ryanodine (0.1 mM) in the majority of cells tested. The results are discussed in terms of a labile intracellular Ca2+ store located at the base of the cell, close to the Ca2+ permeable ACh receptor channels and Ca2+ activated K+ channels, whose contribution to the Ca2+ rise occurring in the region of the channels is variable, and probably dependent on its ability to refill with Ca2+.

Acetylcholine↗

Immunoelectrodes in protein detection: comparison between glassy carbon and a semimetallic Ni/P thin film as binding support. Biological applications.

Though immunoelectrodes can allow direct detection of very low protein amounts (about 0.1 pmol) in vitro and in vivo, they are not yet widely used because they need quality improvement. Based on a few works devoted to the basic electrochemical phenomenon occurring when antibodies are linked onto a solid support and during antigen/antibody complex formation, we have coated two different supports with antibodies: the classical glassy carbon fiber or an epoxy plate covered with an amorphous semimetallic (nickel/phosphorus) thin film obtained by means of an electrochemical deposit. The antibody/antigen complex formation induces direct and/or indirect ionic movements and a current flow through the conductive support toward a very low-noise and high-sensitivity preamplifier stage in an I/V configuration. The proposed electrochemical treatment (hydrophilization), applied to both carbon and Ni/P electrodes, improves antibody binding and reliability of the response to antigens. The Ni/P probes present several advantages when compared to carbon fiber: better conductivity, possibility of surface quality control, and semimetallic nature, making them unbreakable. Several applications were proposed: somatostatin-14 detection with both carbon fiber and Ni/P plate electrodes, and histamine detection in simple and complex fluid media. Dose-response curves and analysis of the results lead us to conclude that the obtained currents are directly related to the quantity of antigen.

Antigen-Antibody Reactions↗

Partial characterization of a novel cardioinhibitory peptide from the brain of the snail Helix aspersa.

1. We report the isolation of a peptide from the brain of the snail Helix aspersa by radioimmunoassay using an antisomatostatin. 2. The sequencing of an immunopositive fraction showed the presence of a new tridecapeptide, termed Helix cardioinhibitory peptide (HCIP), with the following primary structure: H-Val-Phe-Gln-Asn-Gln-Phe-Lys-Gly-Ile-Gln-Gly-Arg-Phe-NH2. It is structurally related to the Achatina cardioexcitatory peptide (ACEP-1) and the terminal-amino acid sequence of HCIP is identical to that of FMRFamide family peptides. 3. The synthetic HCIP was tested on heart and neuronal activities and it was found to have inhibitory actions not only on the ventricle but also on visceral neurons of the central nervous system of Helix. Immunocytochemical investigation indicates its presence in visceral and parietal ganglia, in which cells taking part in the regulation of the heartbeat have been previously identified.

Amino Acid Sequence↗

Antibody-coated electrodes for detecting somatic exocytosis of somatostatin-like material in Helix neurones.

Immunoelectrodes have been developed which can be used to detect minute amounts of somatostatin. They were made with electrochemically treated glassy carbon fibres coated with anti-somatostatin antibodies. Calibration and various controls were carried out to ensure that the immunoelectrodes responded specifically to the presence of femtomolar somatostatin. Electrophysiological experiments were performed on anti-somatostatin immunoreactive neurones in the snails Helix aspersa and H. pomatia. Somatostatin-like material was released in response to sustained firing. The release was measured at the soma, which means that it occurred in the extrasynaptic area. The finding that the fluorescent dye FM 1-43 was incorporated into somatic vesicles confirmed that exocytosis actually occurred during sustained neuronal firing.

Animals↗

[Erosive adenomatosis of the nipple. Report of 10 cases with immunohistochemistry].

Erosive adenomatosis of the nipple (also called florid papillomatosis of the nipple ducts) is an uncommon disease since only 358 cases have been published. We observed 10 cases in 10 years, corresponding to 1 case in 8,500 skin biopsies. One of these cases concerned a male patient and is the 13th of this kind in the literature. In our series the mean duration of symptoms was 15 months, as against 25 months in the 121 published cases where duration was clearly specified. In 8 of our 10 cases the patients consulted for oozing erosion or discharge of the nipple. Physical examination showed a palpable nodule in 2 cases, a small pediculate tumour in 1 case and nipple enlargement in 50 p. 100 of the cases. The patients were followed up for as much as 7 years. The outcome was always favourable. Recurrence was observed in only one patient, 7 months after limited excision; 6 years after a second excision no relapse was noted. Histological examination showed a papillomatous lesion in 5 cases, an adenomatous lesion in 2 cases and a mixed lesion in 3 cases. Myoepithelial cells were found in all cases, but they were doubtful or discreet in 4 cases. The apical pole of columnar cells was labelled by the ACE antibody, but labelling was very weak and partial in 4 cases. The columnar cell cytoplasm was constantly and strongly labelled by the KL1 anti-keratin antibody. The apical pole of parietal cells was strongly labelled by the antiepithelial membrane antigen antibody (EMA) in all cases.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoma↗

[Not Available].

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Austria↗