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L P Jager

Publications and source records attributed to L P Jager.

At least 19 recordsLinked to original sources

K(+)-channel blockers do not decrease acetylcholine depolarizations in canine trachealis.

Using the double sucrose gap, we have examined the role of K+ channels in the cholinergic depolarizations in response to field stimulation and acetylcholine (Ach) in canine trachealis. Acetylcholine-like depolarization per se decreased electrotonic potentials from hyperpolarizing currents. The net effect of acetylcholine (10(-6) M) depolarization on membrane conductance was a small increase after the depolarization was compensated by current clamp. Reversal potentials for acetylcholine depolarization and for the excitatory junction potential (EJP) were determined by extrapolation to be 20-30 mV positive to the resting potential, previously shown to be approximately -55 mV. They were shifted positively by tetraethylammonium ion (TEA) at 20 mM or Ba2+ at 1 mM. TEA or Ba2+ initially depolarized the membrane and increased membrane resistance. Repolarization of the membrane restored any reductions in EJP amplitudes associated with depolarization. After 15 min, the membrane potential partially repolarized, and acetylcholine-induced depolarization and contractions were then increased by TEA. 4-Aminopyridine depolarized the membrane but decreased membrane resistance. Apamin (10(-6) M), charybdotoxin (10(-7) M), and glybenclamide (10(-5) M) each failed to significantly depolarize membranes, increase membrane resistance, or reduce EJP amplitudes or depolarization to 10(-6) M Ach. Glybenclamide reduced depolarizations to added acetylcholine slightly. TEA occasionally reduced the EJP markedly, but this was shown to be most likely a prejunctional effect mediated by norepinephrine release. TEA alone among K(+)-channel blockers slowed the onset and the time courses of the EJP as well as the acetylcholine-induced depolarization. K(+)-channel closure cannot be a complete explanation of acetylcholine-induced membrane effects on this tissue. Acetylcholine must have increased the conductance of an ion with a reversal potential positive to the resting potential in addition to any effect to close K+ channels.

Acetylcholine

Role of depolarization and calcium in contractions of canine trachealis from endogenous or exogenous acetylcholine.

The relationships of the electrical to the mechanical responses of the canine trachealis muscle during stimulation of its cholinergic nerves or exposure to exogenous acetylcholine were recorded in the single or the double sucrose gap. At 27 degrees C, the responses to a train of stimuli consisted of a transient depolarization excitatory junction potential of 10-30 mV followed by fading oscillations and contractions. When stimulus parameters were varied in the single sucrose gap, contractions were more closely associated with the occurrence of and varied in duration with the oscillations rather than with the amplitude of the EJP. Acetylcholine superfused at a concentration of 10(-6) M for 30 s caused a prolonged depolarization of 10-20 mV, but a much larger contraction than could be elicited by nerve stimulation. None of the responses to acetylcholine was significantly affected by the Ca channel antagonists, nifedipine, nitrendipine, or verapamil in Ca channel blocking concentrations. When tissues were exposed to a Ca-free medium, the excitatory junction potentials and oscillations rapidly disappeared, but the electrical and mechanical responses to acetylcholine persisted and only gradually disappeared with repetitive exposures. Furthermore, in a medium with normal Ca2+ in the double sucrose gap, depolarization by 10-15 mV with an applied current caused no contraction, and repolarization to the normal membrane potential during acetylcholine-induced contraction caused no relaxation. Tetraethylammonium ion (20 mM) depolarized the membrane, increased membrane resistance, and enhanced the secondary oscillations and contractions after field stimulation. No other K(+)-channel blocker tested (Ba2+, apamin, 4-aminopyridine, glibenclamide, charybdotoxin) had the effect of prolonging secondary oscillations.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine

[Oxytetracycline and oral herd treatment: a literature review].

Pharmacotherapeutic, pharmacodynamic and pharmacokinetic aspects of oral mass medication with oxytetracycline (OTC) in pigs, calves and poultry are discussed in this review. Clinical studies with successful therapeutic results are scarce in literature; however, OTC is still frequently used for mass medication. Some practical advice to improve the bioavailability of OTC is given. This mainly concerns the reduction of the interaction between calcium ions and OTC. OTC may be useful for oral mass medication when applied as a prophylactic drug. Pharmacological studies are required in order to provide more knowledge about the efficacy of OTC-mass medication. Additional information can be acquired from the field by improving and extending the reciprocal co-operation between field veterinarians and diagnostic laboratories. This may lead to a more justified choice from the various possibilities of antimicrobial use in livestock.

Animals

[Toxicological considerations in the evaluation of veterinary drugs].

Interactions between veterinary pharmacotherapy, toxicology of residues, prevention of residues of veterinary drugs and the evaluation of veterinary drug files are discussed on the basis of a number of examples. Sulphadimidine is used to treat atrophic rhinitis in medicated feeds which do not benefit the animal but are the cause of persistent sulphonamide residues in feed mills and husbandry. Carbadox is a potentially effective prophylactic feed additive for the prevention of swine dysentery, but is mostly used in high dosages which are almost toxic for the animals, and used during unnecessary prolonged periods. It is also prescribed as a therapeutic agent in which case a symptom of poisoning, dry faeces, is mistaken for a sign of recovery. Carbadox and/or its metabolites are carcinogenic and its use should be restricted to a bare minimum. Furazolidone is an example of an effective veterinary drug, the use of which should be limited by the fact that detoxification mechanisms of the animals, may result in the appearance of reactive metabolites which are available in the gastro-intestinal tract of the consumer. The central issue in a 'minimal residue' policy regarding the use of veterinary drugs should be the selection of effective drugs. Such a selection could result in a significant reduction of the incidence of veterinary drug residues. Second to this issue is the question of the extent to which residue toxicology should modulate the use of veterinary drugs.

Animals

Clinical signs and performance of pigs treated with different doses of carbadox, cyadox and olaquindox.

An experiment was designed to study the clinical effects of different levels of carbadox, cyadox and olaquindox in the ration on health, weekly weight gain and feed conversion in pigs. Four different carbadox and olaquindox (25, 50, 100 and 200 ppm) levels and five different cyadox (25, 50, 100, 200 and 400 ppm) levels were tested in groups of 6 pigs during 6 weeks. The 13 groups were compared with a control group fed on the same diet with only vehicle. After one week the first clinical sign, a high faecal dry matter (FDM) content, was observed in the 200 ppm carbadox group, followed by the 100 and 50 ppm carbadox, the 400 and 100 ppm cyadox, and the 200 and 100 ppm olaquindox groups two weeks later. A second clinical sign, urine drinking from the floor or from pen-mates, was observed in the same pens, occurring in the same sequence. The third important clinical sign, a decreased abdominal volume, was also observed in almost the same sequence, however, in the 50 ppm olaquindox and cyadox groups this clinical sign was not observed. Average weekly weight gain was significantly decreased in the higher carbadox and olaquindox groups. Weight gain was significantly increased in the 200 ppm cyadox group. Hematocrit values were significantly increased in the 200 and 100 ppm carbadox groups only. From this study one may conclude that, within the dosages used, carbadox is more harmful than olaquindox for pigs, and it seems that cyadox is harmless for pigs in dosages up to 400 ppm.

Animals

[Coccidiosis in lambs: observations in the preventive use of an amprolium-containing medicated feed].

The efficacy of preventive in-feed medication with amprolium (2000 ppm) was studied on a farm where clinical coccidiosis in unweaned lambs at pasture has been a problem for the past seven years. Both treated and untreated control lambs had access to the concentrates through creep feeding. In this clinical trial neither the treated group (15-17 mg of amprolium per kg body weight per day for three weeks) nor the control group showed clinical symptoms of coccidiosis. It seems likely that this is attributable to the feeding of concentrates. Nevertheless, the excretion of oocysts by the animals of the treated group was significantly lower than that of the control group. An outbreak of clinical coccidiosis in another group of lambs on this farm was successfully controlled by single drenching, 50 mg.kg-1, followed by the medicated feed. The pharmaceutical availability of amprolium in the concentrates was 95 +/- 1% immediately after preparation and the stability during storage under field conditions for two months was 100% +/- 2%.

Amprolium

Vasoactive intestinal polypeptide and non-adrenergic, non-cholinergic inhibition in lower oesophageal sphincter of opossum.

1. Field stimulation or vasoactive intestinal polypeptide (VIP) relaxed lower oesophageal sphincter (LOS) from North American opossum. Pretreatment with carbachol in Cl-ion-containing or Cl-ion-free Krebs solution or with 10(-3) M 9-aminoacridine abolished or markedly reduced relaxation due to VIP applied exogenously but not that elicited by field stimulation of non-adrenergic, non-cholinergic nerves. 2. Inhibitory junction potentials (7.5 +/- 1.2 mV, n = 5) could be recorded in LOS strips with the sucrose gap technique. They lacked significant after-depolarizations but were accompanied by decreased membrane resistance (61 +/- 6%, n = 3). In these strips, VIP (10(-6) M) produced small hyperpolarizations (2.1 +/- 1.1 mV, n = 5) sometimes followed by membrane potential oscillations but no change in conductance. 3. Removal of external chloride depolarized the membranes (7.6 +/- 1.7 mV) but did not prevent the hyperpolarization to VIP or the occurrence of inhibitory junction potentials. Restoration of external chloride repolarized the cells. It appears that an appreciable chloride conductance may be present in sphincter muscle cells and this may cause them to be more depolarized than non-sphincter muscle. 4. We conclude that it is very unlikely that VIP is the inhibitory NANC neurotransmitter since it does not mimic the inhibitory junction potential.

Animals

Comparative study of the effect of the effect of carbadox, olaquindox and cyadox on aldosterone, sodium and potassium plasma levels in weaned pigs.

To study the effects of olaquindox and cyadox on aldosterone, sodium and potassium in the blood in comparison with the effects of carbadox, weaned pigs were fed these compounds in different doses. Pigs treated with 100 and 200 ppm carbadox showed a significant decline of aldosterone after five and three weeks, respectively, compared with control values. In the 200 ppm group treatment was interrupted at week 4. With olaquindox a continuous, significant decline was found from 50 ppm and above after five weeks, and from 25 ppm and above (but excluding the 100 ppm group), after six weeks. In the cyadox groups a significant decline was measured after six weeks in the 50, 200 and 400 ppm groups. Only the 200 ppm group had an earlier response at three and five weeks. A decrease of sodium to hyponatraemic levels in the carbadox groups was seen after three weeks in the 200, and after five weeks in the 100 ppm group. In the olaquindox groups only the 200 ppm dosage showed a consistent decrease to hyponatraemic levels from four weeks treatment. In the cyadox groups the 200 ppm dosage reached a hyponatraemic level after six weeks. An increase of potassium to hyperkalaemic levels occurred at 100 and 200 ppm carbadox dosage after four and three weeks, respectively, and at 200 ppm olaquindox dosage after four weeks. No hyperkalaemic levels were seen in the cyadox groups. It is concluded that the toxic effect of olaquindox, despite minor differences, is comparable with that of carbadox but that cyadox is less toxic.

Aldosterone

Characterization of inhibitory innervation in porcine colonic circular muscle.

Effects of stimulation of intramural nerves in the circular smooth muscle layer of the porcine colon (Sus scrofa domestica) were studied using the sucrose-gap technique. Electrical field stimulation of the preparation, superfused with Krebs solution at 21 degrees C, induced a transient hyperpolarization of the smooth muscle cell membrane. This hyperpolarization was an inhibitory junction potential (IJP). The responses obtained from circular muscle originating from either the centripetal or centrifugal gyri of the ascending colon did not differ significantly. The IJP was characterized as being mediated by intramural, nonadrenergic, noncholinergic (NANC) nerves. The amplitude and latency of the IJP changed linearly with temperature (15-25 degrees C: +1 mV and -0.1 s per degree Celsius, respectively) reflecting a temperature-dependent synchronization of transmitter release. The membrane resistance decreased during the IJP. The IJP amplitude decreased or increased during conditioning hyperpolarizations or depolarizations, respectively, and reversed at membrane potentials about 30 mV more negative than the resting membrane potential. Potassium conductance blocking agents, barium (1 mM), tetraethylammonium chloride (TEA, 20 mM), 4-aminopyridine (4-AP, 5 mM), apamin (1 microM), and aminacrine (10(-4) M) added to the superfusion medium increased the membrane resistance. Only barium, TEA, and apamin depolarized the smooth muscle cell membrane. The IJP amplitude decreased in the presence of aminacrine and apamin to 75 and 35%, respectively, suggesting that apamin-sensitive Ca2+-activated K+ channels are involved in this response. ATP, adenosine, and related adenine nucleotides in concentrations up to 10(-3) M did not mimic the IJP. Superfusion with ATP for 15 min revealed a gradually increasing attenuation by up to 20% of the IJP. This might suggest that the release of neurotransmitter from intramural NANC nerves is modulated presynaptically via purinoceptors. Exogenously applied vasoactive intestinal polypeptide (VIP) in concentrations of 10(-9) to 10(-4) M did not affect the preparation. Also at elevated temperatures (up to 35 degrees C), VIP (10(-7) to 10(-4) M) did not cause measurable effects. It is concluded that the inhibitory mediator of the intramural NANC nerves present in the circular muscle layers of the porcine colon is neither a purine nor VIP.

Animals

Unusual potassium channels mediate nonadrenergic noncholinergic nerve-mediated inhibition in opossum esophagus.

Field stimulation of the circular muscle of the opossum esophagus produces a transient hyperpolarization (inhibitory junction potential, IJP) followed by an "off" depolarization. A similar nonadrenergic, noncholinergic (NANC) response in guinea pig taenia caecum has been shown to be due to an increase in the potassium ion permeability of the smooth muscle cell membrane. Double sucrose gap studies showed a decrease in resistance during the IJP, and a reversal at an estimated membrane potential of about -90 mV (4 mM K+). The reversal potential was dependent on the extracellular potassium concentration, shifting to -75 mV when the potassium in the superfusion medium was increased to 10 mM. The IJP in the opossum esophageal circular smooth muscle is therefore like the IJP of the guinea pig taenia caecum in that it is probably due to a selective increase in potassium ion permeability. Potassium conductance blocking agents, tetraethylammonium chloride (TEA, 20 mM) and 4-aminopyridine (4-AP, 5 mM) both caused a depolarization of the smooth muscle cell membrane, but TEA increased the membrane resistance, whereas 4-AP did not affect the membrane conductance in a consistent way. A decrease in IJP amplitude owing to these agents was not apparent. Apamin (10 microM) did not affect the membrane potential, the membrane resistance, or the IJP. Quinine (0.1 mM) produced effects quantitatively similar to those of TEA. Quinine (1 mM) did abolish the IJP, however, this was likely due to a blockade of impulse transmission of the intramural nerves.(ABSTRACT TRUNCATED AT 250 WORDS)

4-Aminopyridine

Gastric erosions induced by analgesic drug mixtures in the rat.

Gastric erosions after oral administration of analgesics separately and in admixture have been examined in adult rats. After administration of acetylsalicylic acid (aspirin), phenacetin, paracetamol and caffeine as single drugs, gastric erosions were only observed with aspirin. The combination of aspirin with phenacetin did not change, that of aspirin with caffeine significantly increased, and aspirin with paracetamol significantly decreased the incidence of gastric lesions compared with aspirin alone. The results for aspirin with paracetamol did not differ from those for the vehicle. Addition of caffeine to the combination of aspirin and phenacetin caused a significant increase in erosions, but when given with aspirin and paracetamol no erosions occurred. The mechanisms underlying the effects of these drugs on aspirin-induced erosions are discussed.

Acetaminophen

Effects of dipyridamole on the smooth muscle cells of the guinea-pig's taenia coli.

Effects of dipyridamole on the smooth muscle of the guinea-pig's taenia coli were studied using the single and double sucrose gap method. Dipyridamole (10(-5) M) affected neither the non-adrenergic inhibitory junction potential, elicited by field stimulation, nor the membrane hyperpolarization induced with ATP applied exogenously, but did potentiate the accompanying relaxations. The muscle spike activity was reduced by dipyridamole without affecting the membrane potential or the membrane resistance. Carbachol induced a depolarization of the muscle cell membrane and thus a contraction of the muscle. Dipyridamole did not modify the membrane potential change produced by carbachol but decreased the size and time course of the contraction. From these results it is concluded that dipyridamole does not potentiate non-adrenergic relaxations by interfering with the neuromuscular transmission, which has been assumed to be purinergic.

Adenosine Triphosphate

Ion fluxes during the inhibitory junction potential in the guinea-pig taenia coli.

1. Contribution of different ions to the inhibitory junction potential (i.j.p.) in the guinea-pig taenia coli was studied by measuring the 42K, 24Na and 36Cl fluxes, the membrane resistance and the influence of various external ion concentrations. 2. The membrane resistance, as measured by the electrotonic potential, decreased transiently during the i.j.p. A maximal reduction of the electrotonic potential of about 50% was found at the top of the i.j.p. 3. The i.j.p. amplitude could be reduced by raising the external potassium concentration. Extrapolation of the relationship observed shows that the inhibitory response would be abolished at 115 mM potassium. Similar experiments were made in chloride-free medium, chloride being replaced by isethionate. Amplitude and time course of the response were not different in chloride containing Locke solution and chloride-free medium. 4. The half-times of 42K, 24Na and 36Cl effluxes during rest were 29, 10 and 9 min respectively. The 42K-efflux from the preparation was markedly increased to about three times the resting efflux during field stimulation. In low-chloride solution a similar effect on 42K-efflux was observed during field stimulation. Only a slight increase in the chloride efflux was observed but the sodium efflux was not affected during field stimulation. 5. From the results presented it is concluded that the inhibitory junction potential is caused by a selective increase in potassium permeability of the smooth-muscle cell membrane.

Animals