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Biomedical subjects

A J Higgins

Publications and source records attributed to A J Higgins.

At least 73 records · Page 4Linked to original sources

Potassium activation of [3H]-choline accumulation by isolated sympathetic ganglia of the rat.

1 The effect of K-depolarization on the uptake of low and high concentrations of [3H]-choline by isolated superior sympathetic ganglia of the rat has been studied. 2 In unstimulated ganglia, the uptake of [3H]-choline (0.1 microM) ('high affinity uptake') was unaffected by denervation or by hemicholinium-3 (HC-3), suggesting uptake by structures other than cholinergic nerve terminals. 3 K-depolarization of the ganglia increased [3H]-choline accumulation by the high affinity uptake process but in contrast the 'low affinity' accumulation of [3H]-choline (100 microM) was decreased. 4 The K-activated, 'high affinity' component of choline uptake was highly sodium-dependent, inhibited by HC-3, and was abolished by denervation. 5 In incubation conditions designed to prevent transmitter release (Ca-free medium and high-Mg medium), the K-activated uptake of [3H]-choline was abolished. 6 It is concluded that in unstimulated ganglia, there is little choline uptake by nerve terminals. However, when the terminals are depolarized, choline uptake is increased by the activation of a sodium-dependent, HC-3-sensitive transport process. The activation of this uptake process is apparently associated with the release of acetylcholine from the terminals, or by changes in ionic fluxes, and not by the depolarization per se.

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Effect of potassium depolarization and preganglionic nerve stimulation on the metabolism of [3H]-choline in rat isolated sympathetic ganglia.

1 The effects of potassium depolarization and preganglionic nerve stimulation on the metabolism of [(3)H]-choline in the isolated superior sympathetic ganglion of the rat have been studied.2 When unstimulated (resting) ganglia were incubated for 10 min with a low concentration (0.1 muM) of [(3)H]-choline (high affinity uptake), approximately 75% of the accumulated radioactivity was present as [(3)H]-phosphorylcholine, 11% was [(3)H]-acetylcholine ([(3)H]-ACh) and the remainder was unchanged [(3)H]-choline.3 Depolarization of the ganglia with K (46 mM) before their incubation with [(3)H]-choline, increased [(3)H]-choline uptake by 70% and increased [(3)H]-ACh synthesis by more than 700%, so that [(3)H]-ACh represented almost 50% of the total radioactivity recovered. In contrast, the proportion of [(3)H]-phosphorylcholine fell to 36% of the total radioactivity recovered.4 The striking effect of K-depolarization on [(3)H]-ACh synthesis in ganglia occurred at a concentration of 30 mM or above, and the maximum effect was seen at 45-50 mM.5 Chronic denervation of the ganglia abolished all the effects of high-K on [(3)H]-choline metabolism. In resting ganglia, [(3)H]-ACh formation was reduced by over 80% but [(3)H]-phosphorylcholine synthesis and the level of unchanged [(3)H]-Ch were not affected by denervation.6 Exposure of the ganglia to low-Na or hemicholinium-3 (HC-3) greatly reduced [(3)H]-ACh synthesis in control resting ganglia and almost abolished the effects of high-K on [(3)H]-ACh synthesis.7 Prevention of transmitter release with high-Mg or low-Ca medium also prevented K-depolarization from stimulating [(3)H]-ACh synthesis.8 Preganglionic nerve stimulation had an effect on [(3)H]-choline metabolism similar to that of K-depolarization. Thus, at all the frequencies studied (1-30 Hz), [(3)H]-ACh synthesis was greatly increased and [(3)H]-phosphorylcholine was reduced, the maximum effects occurring at 3 Hz.9 When ganglia were incubated with a high concentration (100 muM) of [(3)H]-choline (low affinity uptake), a different pattern of metabolism was observed. Most of the radioactivity in resting ganglia was present as unchanged [(3)H]-choline (70%) with [(3)H]-phosphorylcholine and [(3)H]-ACh representing 23% and 6% of the total radioactivity respectively. K-depolarization decreased [(3)H]-choline uptake but increased the proportions of [(3)H]-phosphorylcholine and [(3)H]-ACh to 32% and 24% of the total radioactivity respectively.10 It is concluded that in unstimulated (resting) rat sympathetic ganglia most of the [(3)H]-choline transport and metabolism occurs in postsynaptic structures. However, depolarization of the presynaptic nerve terminals appears to trigger a sodium-dependent, HC-3 sensitive, high-affinity uptake process, and causes a dramatic increase in presynaptic [(3)H]-ACh synthesis together with a fall in postsynaptic [(3)H]-phosphorylcholine synthesis. These changes in choline metabolism cannot be due to the depolarization of the nerve terminals per se, because they were abolished by high-Mg or low-Ca, i.e. when transmitter release was prevented. Thus, the increase in ACh synthesis may be triggered by a fall in the intraterminal concentration of ACh or by the changes in Ca flux induced by depolarization. Our experiments do not provide evidence on these possible mechanisms.

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Efficacy of oxfendazole against natural infestations of nematodes and cestodes in sheep in Egypt.

Oxfendazole liquid suspension (Systamex; Wellcome) was administered orally at the dose of 4.5 mg per kg to 800 indigenous Egyptian sheep clinically affected with Dictyocaulus filaria, Moniezia expansa, Haemonchus contortus, Ostertagia circumcincta, Nematodirus spp, Trichostrongylus axei, Cooperia curticei, Trichuris ovis and Oesophagostomum spp. A 100 per cent clearance was recorded for all parasites with the exception of T ovis which were markedly reduced in number.

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Oxfendazole--anthelmintic activity in Egyptian goats artificially infected with gastrointestinal nematodes.

The recently developed benzimidazole anthelmintic, oxfendazole, was tested against artificial nematode infestations in Egyptian goats using oral dosing at 4.5 and 2.8 mg/kg. A 100% clearance of mature and immature Haemonchus contortus, Trichostrongylus axei, Ostertagia circumcincta, Coopera curticei, Bunostomum trigonocephalum and Chabertia ovina was obtained at the 4.5 mg/kg level. Very high levels of clearance against the mature worms were obtained at 2.8 mg/kg but the drug was less effective against immature worms at the lower dose rate. PCV, hemoglobin concentration and total erythrocyte counts declined after infection but became significantly (P less than 0.001) raised in treated animal.

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Efficacy of oxfendazole against naturally acquired gastro-intestinal nematode infestations in buffaloes in Egypt.

The benzimidazole anthelmintic, oxfendazole, was used as an oral suspension at 4.5 and 2.8 mg/kg to treat naturally infested indigenous buffaloes in Egypt. Worms of the genera Haemonchus, Cooperia, Trichostrongylus, Ostertagia, Chabertia and Oesophagostomum were identified in the animals prior to treatment. A 100% reduction in faecal egg counts was obtained at the 4.5 mg/kg level when compared to untreated control animals. Reductions in faecal egg counts greater than 90% were recorded at 2.8 mg/kg and these exceeded reductions obtained by drenching with the older benzimidazole anthelmintic, thiabendazole, at 67 and 111 mg/kg.

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Distribution of gaba-receptors and gaba-carriers in the mammalian nervous system.

1. Extrasynaptic GABA-receptors occur on both neurone somata and unmyelinated axons in the mammalian peripheral nervous system. Activation of these receptors leads to depolarization, reduced spike amplitude and slowed conduction, probably mediated through increased Cl- conductance. 2. GABA also depolarizeds preganglionic nerve terminals in the rat superior cervical ganglion and reduces the release of acetylcholine by preganglionic nerve impulses. 3. The Schwann and satellite neuroglial cells surrounding peripheral unmyelinated axons and neurones possess a GABA-carrier promoting net uptake of GABA at external concentrations greater than or equal to 1 microM. 4. The possible significance of extrasynaptic receptors and carriers for GABA is discussed.

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