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Biomedical subjects

I E Hughes

Publications and source records attributed to I E Hughes.

At least 19 recordsLinked to original sources

Do computer simulations of laboratory practicals meet learning needs?

There is a variety of pressures on pharmacology teachers to replace real laboratory practicals with simulations but do they help students achieve the required learning objectives? In this article, the marks obtained by students in a variety of assessments using 'wet' or simulated practicals are analysed. Poorer performance in practical write-ups by students doing 'wet' practicals compared with those doing simulations can be explained by the quality of the data that the students obtain. In examinations, students perform equally well except with questions that are related to the experimental details of 'wet' practicals; students taught using such 'wet' practicals perform better in response to these questions.

Audiovisual Aids↗

Doxapram stimulates dopamine release from the intact rat carotid body in vitro.

Hypoxic chemotransduction by the carotid body is believed to involve inhibition of K+ channels in type I cells, leading to depolarization and the opening of Ca2+ channels which triggers catecholamine release. We have investigated whether the clinically used ventilatory stimulant doxapram (which, like hypoxia, blocks K+ channels in isolated type I cells) also stimulates catecholamine release from the intact carotid body in vitro, by pre-incubating tissues with [3H]tyrosine. 3H overflow was evoked by raised extracellular [K+] (60 mM) and by cyanide (2 mM). Doxapram (15-150 microM) also evoked 3H overflow in a concentration dependent manner, and doxapram-evoked release was inhibited by the Ca2+ channel blocker nifedipine (5 microM). Analysis of released tritiated compounds suggested that doxapram preferentially stimulated the release of dopamine. Our results indicate that the mechanism of action of doxapram shares similarities with that of hypoxia in the carotid body.

Animals↗

Evidence that nitric oxide from the endothelium attenuates inherent tone in isolated pulmonary arteries from rats with hypoxic pulmonary hypertension.

1. The inherent contractile tone, and its modulation by the endothelium, have been studied in isolated pulmonary artery preparations taken from rats in which pulmonary hypertension was induced by exposure to a hypoxic environment (10% O2) for 14 days. Control rats were housed in room air. 2. All preparations in which the endothelium was left intact relaxed in response to acetylcholine (43 +/- 4% and 54 +/- 9%, reversal of the noradrenaline-induced contraction in control and hypoxic rats, respectively) indicating that the endothelium was functional in both groups of rats. 3. Exposure of the preparations to Ca(2+)-free physiological salt solution containing 2 mM EGTA for 30-40 min had no effect on preparations from control rats but caused relaxation in preparations from hypoxic rats. The relaxation (taken as a measure of the inherent tone in the preparations) was larger in preparations without endothelium (14.5 +/- 1.9 mN mm-2; n = 5) than in preparations with endothelium (9.1 +/- 1.2 mN mm-2; n = 5). 4. In preparations from hypoxic rats the magnitudes of the contractions to 80 mM K+ and to noradrenaline (0.1 microM) were less than in preparations from control rats. This may have been because the preparations from hypoxic rats were already partially contracted due to the inherent tone. 5.The nitric oxide (NO) synthase inhibitor, NG-nitro-L-arginine methyl ester (L-NAME, 0.1-1 100 microM)had negligible effect on preparations from control rats or on endothelium-denuded preparations from hypoxic rats, but produced concentration-dependent contractions (maximum contraction 7.4 +/- 0.7 mN mm-2 (n = 4) with 100 micro M) in endothelium-intact preparations from hypoxic rats. This effect of L-NAME was prevented by L-arginine (1 mM) but not by D-arginine (1 mM).6. Contractions to L-NAME were also seen in endothelium-intact arteries from control rats if the preparations were first partially contracted by exposure to K+, endothelin, U46619 (thromboxane mimetic)or noradrenaline.7 It is concluded that isolated pulmonary artery rings from hypoxic rats, but not those from control rats, have substantial inherent tone. This inherent tone is normally attenuated by the generation of an endothelium-derived factor that is probably NO. A stimulus for the release of NO from the endothelium may be the contraction of the underlying smooth muscle, whether the contraction is inherent in the tissue, as in preparations from hypoxic rats, or is induced by a vasoconstrictor spasmogen.

Acetylcholine↗

Mechanisms involved in electrically-induced responses of rat seminal vesicles.

Contractile responses of rat isolated seminal vesicle were elicited by electrical field stimulation (EFS, 10 Hz, 1 ms, 40 V for 5 s), noradrenaline (1 x 10(-5) M) and carbachol (1 x 10(-5) M). Guanethidine (2 x 10(-5)-5 x 10(-4) M) progressively reduced the contraction induced by EFS and carbachol to 24 +/- 2 and 10 +/- 2%, respectively, at the highest concentration (n = 6), while potentiating noradrenaline contraction to a maximum of 154 +/- 14% at 2 x 10(-5) M (n = 6). Prazosin (1 x 10(-6) M) and atropine (2.5 x 10(-7) M) completely abolished the response to the corresponding agonist and each reduced the response to EFS to 64 +/- 8 and 61 +/- 3%, respectively (n = 6). In the presence of both atropine and prazosin a small contraction to EFS remained (14 +/- 4%, n = 6), which is unlikely to be due to ATP, since exogenous ATP did not induce a contractile response and had an inhibitory effect on EFS-induced responses. Clonidine (1.25 x 10(-5) M) completely blocked responses to noradrenaline and reduced the responses to EFS to 68 +/- 7% (n = 6). However, when both the adrenergic and cholinergic components of EFS were blocked by prazosin and atropine, clonidine potentiated the remaining response to EFS (323 +/- 82%, n = 4). Yohimbine (1 x 10(-5) M) blocked the response to noradrenaline and reduced the response to EFS to 37 +/- 5% (n = 6) while the carbachol response was unaffected.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Agonists↗

Reduced relaxant potency of nitroprusside on pulmonary artery preparations taken from rats during the development of hypoxic pulmonary hypertension.

1. Relaxant responses to nitroprusside were examined on U46619-contracted pulmonary artery ring preparations from rats exposed to hypoxia, in chambers containing 10% oxygen, for 1, 3, or 14 days, or for 14 days followed by 12 days in room air. Control rats were housed in room air. 2. After 3 days of hypoxia (but not 1 day), rats had elevated pulmonary artery pressure, right ventricular hypertrophy and polycythemia. After 14 days of hypoxia there was, in addition, hypertrophy of the pulmonary artery. In rats returned to room air for 12 days after 14 days of hypoxia, there was still some right ventricular and vascular hypertrophy but no increase in pulmonary artery pressure or polycythemia. 3. The potency (neg log EC50) of nitroprusside on pulmonary arteries taken from rats after 3 or 14 days of hypoxia was significantly less than on preparations from control rats (3 and 11 fold, respectively). This was not seen after 1 day of hypoxia or after 14 days of hypoxia followed by 12 days in room air. Removal of the endothelium from the preparations had no effect on the potency of nitroprusside in control or hypoxic rats (14 days). 4. In preparations from hypoxic, but not control, rats (14 days), the maximum response to nitroprusside was > 100% (177% reversal of the U46619 contraction) in the absence, but not in the presence, of the endothelium, indicating that pulmonary arteries from hypoxic rats had inherent tone which could be counteracted by a relaxing factor from the endothelium. 5. Exposure of rats to hypoxia (14 days) did not affect the potency of nitroprusside on aorta or trachea.6. It is concluded that exposure of rats to hypoxia results in reversible desensitization of the vascular smooth muscle of pulmonary artery to nitroprusside. The time course of this desensitization suggests that it is probably associated with the elevated pulmonary artery pressure or maintained hypoxaemia rather than with the vascular hypertrophy.7. It is postulated that the increase in pulmonary artery pressure and/or the maintained hypoxaemia may cause chronic release of nitric oxide from the pulmonary vascular endothelium or smooth muscle resulting in desensitization of soluble guanylate cyclase to the action of nitroprusside.

Animals↗

Effect of cocaine on tritium overflow evoked from vasa deferentia previously loaded with [3H]noradrenaline by stimulation using different types of electrode.

In mouse and guinea-pig vasa deferentia previously incubated with [3H]noradrenaline, electrical stimulation applied through parallel electrodes (transmurally) increased overflow of tritium 2- to 5-fold above the resting value. Electrical stimulation applied using methods involving more substantial conduction of nerve impulses in neuronal elements in the tissues evoked a tritium overflow which was smaller (70%) than that evoked by transmural stimulation. Cinchocaine (25 microM), tetrodotoxin (0.5 microM) or the absence of calcium effectively abolished evoked overflow in both tissues whichever method of stimulation was used. In mouse vas deferens, cocaine (10 microM) did not alter overflow evoked by either transmural or axonal stimulation while 100 microM produced a reduction. In guinea-pig vas deferens, cocaine (10 microM) produced a statistically significant increase in evoked overflow of about 50% or more with both transmural and axonal stimulation. As in mouse vas deferens, 100 microM cocaine produced a reduction. It is concluded that the action of cocaine is independent of these methods of stimulation and that some difference in the arrangement of the noradrenergic nerves in the two species may account for the differential effect of cocaine observed.

Animals↗

Effect of blockade of noradrenaline re-uptake on evoked tritium overflow from mouse vasa deferentia and rat cortex slices.

1. In tissues previously incubated with [3H]-noradrenaline exposure to cocaine (0.1 to 10 microM) or desmethylimipramine (0.01 to 1 microM) produced a concentration-dependent increase (up to 2 fold) in electrically evoked (3 Hz, 2 ms, 20 mA, 120s every 20 min) fractional overflow of tritium from rat brain cortex slices but not from mouse vas deferens (2.5 Hz, 2 ms, 400 mA, for 90s every 14 min). 2. Yohimbine and idazoxan (0.01 to 1 microM) increased fractional evoked overflow of tritium by up to 2 fold; in the presence of these drugs, cocaine (10 microM) produced an increase in both tissues (up to 3.5 fold over control). 3. In brain slice an increase in stimulation frequency (0.1, 0.5, 1, 3 and 6 Hz) decreased fractional evoked overflow of tritium per pulse but cocaine (10 microM) produced a significant enhancement at each frequency except 6 Hz. In vas deferens fractional tritium overflow per pulse changed little with increasing frequency and cocaine produced no effect. 4. In both tissues fractional evoked overflow of tritium was dependent on the stimulation current; cocaine (10 microM) increased fractional evoked overflow from brain slice at every current tested but was without effect in vas deferens. 5. Chromatographic separation of the released tritium showed there was little difference in the proportions of [3H]-noradrenaline and 3H-metabolites overflowing from the tissues. Cocaine increased the proportion of [3H]-noradrenaline and decreased the proportion of [3H]-DOPEG overflowing both at rest and during stimulation. 6. In brain slice an increase in electrically evoked overflow was produced by cocaine (10 microM) whether total tritium overflow (1.8 fold), overflow of [3H]-noradrenaline (1.8 fold) or overflow of unlabelled noradrenaline (1.8 fold) was measured. Evoked overflow from vas deferens was unaffected when assessed by any of these three methods. 7. The mechanism responsible for this differential effect of cocaine is unclear but may involve differences in the physical relationship between release sites, reuptake sites and presynaptic autoreceptors.

Animals↗

The thermogenic actions of alpha 2-adrenoceptor agonists in reserpinized mice are mediated via a central postsynaptic alpha 2-adrenoceptor mechanism.

1. The dose-related effects of the selective alpha 2-adrenoceptor agonists clonidine, UK-14,304 and B-HT 933 on the body temperature of untreated and reserpine-treated mice were investigated. 2. In untreated mice all three agonists induced a dose-related hypothermia. The highest doses of UK-14,304 and B-HT 933, 3 and 100 mg kg-1 respectively, elicited a marked (10 degrees C) hypothermia, whereas the maximal hypothermic effect of clonidine (5.5 degrees C) was less pronounced and reached a plateau at a dose of 0.5 mg kg-1 i.p. 3. Reserpine (2.5 mg kg-1, s.c.) induced a marked hypothermia in the mouse; 18 h after injection body temperature had decreased to only slightly (0.5-1.5 degrees C) above ambient (19 degrees C). 4. All three alpha 2-agonists produced a partial dose-related reversal of reserpine-induced hypothermia; maximal thermogenic responses (9-10 degrees C increases in body temperature) were elicited by doses of 0.2, 0.5 and 16 mg kg-1 i.p. of clonidine, UK-14,304 and B-HT 933 respectively, and the log dose-response curves for all 3 agonists were bell-shaped. 5. Following intracerebroventricular administration to reserpine-treated mice, the thermogenic response to clonidine was more rapid in onset, and the agonist was 20 fold more potent than when injected i.p. 6. The selective alpha 2-adrenoceptor antagonists, idazoxan (0.05-0.5 mg kg-1), Wy 26392 (0.3-5.0 mg kg-1) and yohimbine (0.1-1.6 mg kg-1) given orally attenuated the thermogenic responses to all 3 agonists in reserpinized mice in a dose-related manner. Pretreatment with a single dose of idazoxan (0.3 mg kg-1, orally) elicited a 6 fold parallel shift to the right in the dose-response curve to clonidine. 7. The selective alpha 1-adrenoceptor antagonists, prazosin (10 mg kg-1) and indoramin (3-10 mg kg-1), and the beta-adrenoceptor antagonist, propranolol (10 mg kg-1), only partially attenuated the thermogenic responses to the alpha 2-agonists in reserpinized mice. These effects were variable and not clearly dose-related. 8. Pretreatment of reserpinized mice with the catecholamine synthesis inhibitor, alpha-methyl-p-tyrosine, markedly attenuated (60-95%) the thermogenic response to the noradrenaline uptake inhibitor, desipramine (0.13-12.5 mg kg-1, i.p.), but only slightly reduced (10-35%) that to clonidine (0.032-0.5 mg kg-1, i.p.). 9. These results suggest that alpha2-adrenoceptor agonists reverse reserpine-induced hypothermia via a central mechanism involving activation of postsynaptic alpha 2-adrenoceptors.

Adrenergic alpha-Agonists↗

The effects of acute and chronic desipramine on the thermogenic and hypoactivity responses to alpha 2-agonists in reserpinized and normal mice.

1. The effects of acute and chronic (14 day) administration of the noradrenaline uptake inhibitor, desipramine (DMI), on the thermogenic responses to clonidine in reserpine-treated mice, and on the hypothermic and hypoactivity responses to the alpha 2-agonist, UK-14,304, in untreated mice were examined. 2. Taking the capacity of DMI to delay the onset of reserpine-induced hypothermia as an indicator of noradrenaline (NA) uptake inhibition, the lowest dose of DMI to inhibit uptake significantly for 12 h in the mouse was shown to be between 10 and 20 mg kg-1 orally. 3. Chronic (every 12 h for 14 days), but not acute treatment with DMI (15 mg kg-1, orally), attenuated the thermogenic responses to low doses (0.02-0.225 mg kg-1, i.p.) of clonidine (injected 20 h after the last dose of DMI) in reserpinized mice. 4. Acute DMI administration slightly attenuated the hypothermia and hypoactivity induced by UK-14,304 (0.25-1.0 mg kg-1, i.p.) when injected 2h, but not when injected 18-21h before the agonist. In contrast, 18-21h after withdrawal from chronic DMI both of these responses to UK-14, 304 were markedly attenuated. 5. As the thermogenic response to clonidine in reserpinized mice appears to involve central post-synaptic alpha 2-adrenoceptors, these results suggest that prolonged inhibition of NA uptake decreases the sensitivity of postsynaptic alpha 2-adrenoceptors. The results of the studies using UK-14,304 indicate that central alpha 2-adrenoceptors involved in mediating other behavioural and pharmacological responses to alpha 2-agonists are also down-regulated by chronic inhibition of NA uptake.

Adrenergic alpha-Agonists↗

Effect of meptazinol on evoked responses in rat vas deferens.

Responses of rat isolated vas deferens to electrical stimulation through field electrodes (400 mA, 1 ms duration, single shocks at 5 min intervals) were potentiated by meptazinol (10 to 300 microM) in whole tissues and also in the separated prostatic and epididymal portions. The effect was fast in onset, reproducible and easily reversed by washing. Prazosin (0.1 microM) practically abolished the response of the epididymal portion to electrical stimulation while the response of the prostatic portion was only slightly reduced (less than 20%). In the presence of prazosin, meptazinol still produced potentiation of the response of the prostatic portion. Nifedipine (2 microM) practically abolished the response of the prostatic portion to electrical stimulation while the response of the epididymal portion was only slightly reduced (less than 20%). In the presence of nifedipine, meptazinol no longer produced potentiation of the response of the epididymal portion. Exogenous ATP (5 microM to 1 mM) and phenylephrine (1 to 50 microM) produced a contractile response which was potentiated in the presence of meptazinol (100 microM) but in the presence of meptazinol (100 microM) and nifedipine (5 mM) together, potentiation of phenylephrine no longer occurred. It is suggested that potentiation by meptazinol of electrically induced responses in this tissue is due to a direct action on the smooth muscle.

Animals↗

On the mechanism involved in the ability of meptazinol to potentiate the effects of sympathetic nerve stimulation.

Mouse isolated vas deferens responded to field stimulation (0.1 Hz) with twitch responses which were abolished by alpha beta-methyleneadenosine 5'-triphosphate (0.5 microM) and were potentiated 2 to 3 fold by meptazinol (5-300 microM). Exogenous adenosine 5'-triphosphate (4-30 microM) also caused a twitch response but was unaffected by meptazinol (30 microM) as was the response to phenylephrine. The effect of meptazinol on the electrically-induced twitch was reproducible, fast in onset, easily reversed by washing and was still seen in the presence of prazosin (1 microM), yohimbine (1 microM), propranolol (0.1 microM), atropine (0.1 microM), physostigmine (1 microM), cocaine (1 microM) or desmethylimipramine (0.3 microM) indicating that the mechanism involved does not depend on adrenoceptors, cholinergic mechanisms or blockade of uptake. Mouse isolated atria responded to stimulation (1, 2 or 5 Hz) of their sympathetic nerves via transmural electrodes with chronotropic responses which were abolished by atenolol (5 and 50 microM) but were unaffected by alpha beta-methyleneadenosine 5'-triphosphate (0.5 microM). Meptazinol (100 microM) failed to potentiate the responses. It is suggested that meptazinol potentiates the effects of the non-adrenergic non-cholinergic transmitter thought to be involved in the response of the mouse vas deferens to electrical stimulation.

Adenosine Triphosphate↗

An investigation of the mechanism involved in the cholinergic action of meptazinol.

In concentrations above 20 microM, (+/-)-meptazinol produced a contraction of the guinea-pig isolated ileum and this effect was antagonized by atropine (0.01 to 0.3 microM) in a manner which was not competitive. Cooling the preparation to 15 degrees C blocked the contractile action of meptazinol and of dimethylphenylpiperazinium (DMPP) but did not affect the action of carbachol. Twitch responses of the rat phrenic nerve-diaphragm preparation induced by indirect electrical stimulation in the presence of naloxone (20 nM) were potentiated by meptazinol (1 to 40 microM) which also reversed a partial blockade of the twitch induced by tubocurarine. Neither of these effects was seen in tissues which had been pretreated with the cholinesterase inhibitor BW284C51 (0.2 microM) though tetraethylammonium iodide (40 microM) was still able to enhance the responses to stimulation. In the presence of naloxone (20 nM) electrically induced responses of the rat isolated rectum were abolished by cinchocaine (10 microM), partially blocked by atropine (0.1 to 0.4 microM) and potentiated by meptazinol (1 to 30 microM). The latter action was not seen when meptazinol was administered in the presence of BW284C51. It is concluded that the cholinergic action of meptazinol in these tissues is due to an indirect effect, probably involving inhibition of cholinesterase and that no evidence was seen of any ability to increase the release of acetylcholine itself.

Animals↗

Quantification of the actions of agonists that simultaneously act on a particular type of receptor and have separate functional interactant properties.

Null equations have been derived which allow quantification of the agonist properties of a compound that is able to modify the state of a tissue simultaneously by interacting with a particular type of receptor and by other means. Parameters can be estimated which separately characterize the agonist properties of the compound and its functional interactant effect. The null equations have been tested in a model system by using a mixture of papaverine (5 microM) and hexyltrimethylammonium bromide (30 microM) to mimic an agonist which also has functional antagonist properties. The values obtained for the various parameters measured directly and indirectly are in good general agreement, confirming the validity of the model.

Animals↗

Meptazinol has a similar agonist action on opioid receptors in field-stimulated mouse vas deferens and guinea-pig ileum.

The effects of the opioid receptor agonist RX783006 and of the opioid receptor partial agonist (+)-meptazinol have been examined on electrically induced twitch responses of the guinea-pig isolated ileum and of the mouse isolated vas deferens. Log10 concentration-tissue state curves were determined for (+)-meptazinol and RX783006, alone, in combination and in the presence of naloxone (30 nM). Analysis of these log10 concentration-tissue state curves using the null equations derived and tested in the preceding paper indicates that the opioid agonist action of (+)-meptazinol on mouse vas deferens is quantitatively similar to that on guinea-pig ileum. The results also suggest that (+)-meptazinol acts as a functional antagonist on the guinea-pig ileum as well as on the mouse vas deferens. The potency of (+)-meptazinol relative to RX783006 has been measured by an indirect method which should eliminate any functional antagonistic action of (+)-meptazinol. This method gives a relative potency of (+)-meptazinol in both tissues which is three to six times greater than that measured directly on guinea-pig ileum. This discrepancy may be due to experimental error but it may also indicate that direct measurements on guinea-pig ileum underestimate the agonist potency of this compound on opioid receptors.

Animals↗

Yohimbine affects the evoked overflow of neurotransmitters from rat brain slices by more than one mechanism.

Both yohimbine (0.1-10 microM) and phentolamine (10 microM) increased the tritium overflow evoked by electrical stimulation (3 Hz, 2 ms, 18 mA for 120 s every 20 min) of rat brain cortex slices previously incubated with [3H](-)-noradrenaline. At their maximally effective concentrations, neither of these compounds produced an effect which was fully maintained over the 1 h of the experiment, but the decline in effect of yohimbine (1.25 microM) was more marked, falling sharply to reach, after 1 h, 25% of the effect observed after 20 min, whereas phentolamine only declined to 60% of the effect after 20 min. In rat brain cortex slices previously incubated with [3H]5-hydroxytryptamine ([3H]5-HT), the tritium overflow evoked by electrical stimulation (3 Hz, 2 ms, 40 mA for 120 s) was increased by yohimbine (0.1-1 microM) and phentolamine (0.1-10 microM), but a higher concentration of yohimbine (10 microM) decreased evoked overflow below the levels seen in the absence of either drug. It is concluded that, at concentrations effective in inhibiting the presynaptic alpha-adrenoceptor-mediated mechanisms controlling transmitter release in rat brain slices, a non-alpha-adrenoceptor-mediated, possible local anaesthetic, action of yohimbine contributes to the overall effect of this drug on transmitter overflow.

Animals↗

Quantification of the characteristics of antagonists exhibiting both competitive antagonism and functional interaction.

Null equations have been derived which, when applied to log10 concentration-tissue state curves for an agonist determined in the presence and absence of a competitive antagonist which also exhibits functional interaction, allow quantitation of the characteristics of the competitive and functional interactant effects. Both the affinity constant of the antagonist for its receptors and numerical values characterizing the functional interaction can be obtained. The null equations have been tested in a model system by using a mixture of papaverine hydrochloride (either 5 or 20 microM) and methyl atropine bromide (10 nM) to mimic a competitive antagonist which also shows functional interaction. Agreement between values derived directly and indirectly from the model is good and validates the use of the null equations.

Animals↗

Similarity between mu-opioid receptors in mouse vas deferens and guinea-pig ileum.

The effects of the opioid receptor agonist RX783006 and of the opioid receptor partial agonist (+)-meptazinol have been examined on electrically-induced twitch responses of the guinea-pig isolated ileum and of the mouse isolated vas deferens. Log10 concentration-tissue state curves were determined for (+)-meptazinol and for RX783006, alone, in combination and, when appropriate, in the presence of naloxone (30 nM). Analysis of these log10 concentration-tissue state curves using the null equations derived and verified in the previous paper allows quantitation of the characteristics of the interaction of (+)-meptazinol with the opioid receptors in these tissues. The results indicate that the apparent differences in the actions of (+)-meptazinol on isolated electrically-stimulated guinea-pig ileum and mouse vas deferens can be accounted for without the need to postulate differences between mu-opioid receptors in these two tissues.

Animals↗