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Biomedical subjects

F Mitchelson

Publications and source records attributed to F Mitchelson.

At least 73 records · Page 4Linked to original sources

Modification by hexamethonium of the muscarinic receptors blocking activity of pancuronium and homatropine in isolated tissues of the guinea-pig.

In the guinea-pig left atrium, hexamethonium (C6) (0.1-3 mM) caused a parallel rightward shift of concentration-response curves for the negative inotropic response to carbachol (CCh) and oxotremorine (Oxo), the dose ratios obtained with the latter agonist being significantly greater than those for CCh at all concentrations of C6 investigated. In the presence of C6, the muscarinic receptor blocking activity of homatropine (20 microM) or of pancuronium (0.3-2.7 microM) appears to be reduced but if the effect of hexamethonium on concentration-response curves to the agonists is taken into consideration, the dose ratios produced by the combination of C6 with either homatropine or pancuronium were essentially as predicted for the combination of 2 competitive antagonists. The difference in the affinity of pancuronium for cardiac muscarinic receptors and ileal muscarinic receptors was also reduced in the presence of hexamethonium (0.3 mM).

Animals↗

The effect of some antidepressants on prejunctional muscarinic receptors on the sympathetic nerves of the isolated rabbit ear artery.

The antimuscarinic activity of amitriptyline, desipramine, iprindole, mianserin and viloxazine on prejunctional sympathetic nerve endings were compared in the isolated rabbit ear artery. In the presence of cocaine (10 micro M) and yohimbine (1 micro M), amitriptyline (0.5-1 micro M), desipramine (1-3 micro M) and iprindole (5-10 micro M) produced parallel rightward shifts of the concentration-response curve for the inhibitory effect of carbachol (CCh) on responses to electrical stimulation of the preparation at 3 Hz. Mianserin (3 micro M) produced some inhibition but altered the slope of the concentration-responses curve to CCh while viloxazine (less than or equal to 10 micro M) produced no inhibition. The depression of tritium efflux by CCh from arteries preincubated in 3H-noradrenaline was inhibited significantly (P less than 0.05) by amitriptyline (0.1 micro M) and desipramine (1 micro M) and not by iprindole (17 micro M), mianserin (3 micro M) or viloxazine (10 micro M). Amitriptyline was 10-fold more active than desipramine and at least 30-fold more active than the other antidepressants as a muscarine receptor blocking drug in this preparation. Thus, mianserin, viloxazine and iprindole exhibit much weaker antimuscarinic activity relative to amitriptyline on prejunctional muscarine receptors on sympathetic nerve endings compared with that observed by others for excitatory muscarine receptors in sympathetic ganglia. The findings support an earlier suggest that these receptors differ.

Animals↗

The effect of amitriptyline, mianserin, and viloxazine at pre- and post-junctional muscarinic receptors in guinea-pig ileal longitudinal muscle.

The antimuscarinic activity of amitriptyline, mianserin, and viloxazine was compared with atropine in guinea-pig ileal longitudinal muscle. The pA2 values obtained using carbachol (CCh) as agonist were as follows: atropine, 9.55; amitriptyline, 7.50; mianserin, 6.40; and viloxazine, 4.91. Responses to transmural electrical stimulation (1-50 Hz) were more resistant than those produced by CCh to inhibition by atropine and the antidepressants. This did not appear to be due to a selective inhibition of prejunctional inhibitory muscarinic receptors, as a pA2 of 8.73 was obtained with atropine for the depression of oxotremorine-induced inhibition of acetylcholine (ACh) output. Amitriptyline (10 micrometers) caused a 2.4-fold increase in ACh output and was 200-fold weaker than atropine at doubling ACh output in the longitudinal muscle stimulated at 0.3 Hz. Mianserin (10 micrometers) and viloxazine (1-10 micrometers) did not significantly affect ACh output. It is suggested that the antidepressants exhibits a greater affinity for the postjunctional muscarinic receptors in the guinea-pig ileal longitudinal muscle.

Acetylcholine↗

Comparison of the antimuscarinic activity of mianserin and amitriptyline in the cat superior cervical ganglion.

The antimuscarinic activity of mianserin and amitriptyline was investigated in the cat superior cervical ganglion using McN-A-343 as a muscarinic agonist. Mianserin was found to have a similar order of potency to amitriptyline in this preparation, in contrast to the marked difference in their antimuscarinic activities on non-neuronal muscarinic receptors. These findings suggest that the action of mianserin on neuronal muscarinic receptors is more important than that predicted from studies on non-neuronal receptors and may be related to its anti-depressant activity.

(4-(m-Chlorophenylcarbamoyloxy)-2-butynyl)trimethy↗

The effect of troxypyrrolidinium, a choline uptake inhibitor, on the excitatory innervation of the rat urinary bladder.

Troxypyrrolidinium, a choline uptake inhibitor, reduced but failed to abolish responses of the rat urinary bladder to electrical stimulation at 1-100 Hz although it reduced acetylcholine output during stimulation at 10 Hz to a level similar to that of spontaneous release. Inhibition of the response to stimulation was more complete at faster rates of stimulation and was partially reversed by choline. Troxypyrrolidinium produced a greater inhibition of the 'tonic' component of the response to electrical stimulation than of the 'phasic' component. Hemicholinium-3 or hyoscine produced a similar selective effect on the 'tonic' component. Hemicholinium-3 also reduced acetylcholine output during electrical stimulation to a similar extent as troxypyrrolidinium but hyoscine increased transmitter output. The results support the concept of a second transmitter in the excitatory innervation of the bladder.

Acetylcholine↗

The selective antimuscarinic action of stercuronium.

1 The antimuscarinic activity of stercuronium, a competitive neuromuscular blocking drug, has been compared in the anaesthetized guinea-pig, guinea-pig atria, bladder and ileum, rabbit atria and the sympathetically innervated rabbit ear artery preparation using carbachol (CCh) as agonist.2 In the anaesthetized guinea-pig, stercuronium (0.2 and 2.0 mumol/kg) produced significantly greater inhibition (P < 0.05) of the bradycardia than of the vasodepressor response produced by CCh, the difference being 2 fold at the low dose and 5.8 fold at the higher dose.3 In guinea-pig atria the negative chronotropic response to CCh was inhibited to a similar degree to the negative inotropic response by stercuronium, whereas in bladder and ileum stercuronium was 17 fold less active as an antimuscarinic drug.4 The affinity of stercuronium for the prejunctional muscarinic receptor on sympathetic nerve endings in the rabbit ear artery was similar to that for the muscarinic receptor mediating negative inotropic responses to CCh in the rabbit left atrium, and 2.3 fold less than the affinity for the muscarinic receptors in guinea-pig atria.5 A similar trend was observed with gallamine, another neuromuscular blocking drug, when results obtained in the rabbit ear artery preparation were compared to previously reported data. Also, the affinity of gallamine for muscarinic receptors mediating relaxation of the cat anococcygeus muscle was found to be similar to that for prejunctional muscarinic receptors in the rabbit ear artery.6 It is suggested that stercuronium and gallamine have a greater affinity for cardiac receptors and the inhibitory muscarinic receptors on sympathetic nerve endings than for muscarinic receptors mediating contraction of bladder and ileum.

Alkaloids↗

The effect of indomethacin and adenosine 5'-triphosphate on the excitatory innervation of the rate urinary bladder.

Adenosine 5'-triphosphate (ATP) (20-400 microM) contracted 48% of isolated rat urinary bladder preparations but induced no response in the remainder. The response to ATP never exceeded 25% of the response to electrical stimulation in the presence of indomethacin (50 microM) plus hyoscine (25 microM) and usually developed more slowly than that to electrical stimulation. Autoinhibition could be produced to ATP by incubating the tissue with ATP (200 microM) for 20 min. Incubation of the tissue with ATP (200 microM) for 60 min in the presence of indomethacin (50 microM) and either hyoscine (25 microM) or hemicholinium-3 (500 microM) reduced but failed to abolish responses to electrical stimulation. Responses to acetylcholine were not affected by ATP (200 microM) in the presence of indomethacin and the output of acetylcholine induced by neuronal stimulation at 10 Hz was not inhibited by ATP (200 microM) or by indomethacin (50 microM). The results suggest a possible modulatory role for ATP in the excitatory innervation of the rat urinary bladder.

Acetylcholine↗

Antagonism of cholinomimetics by troxypyrrolidinium in guinea-pig atria and longitudinal ileal muscle: comparison with hemicholinium-3.

The inhibitory effect of troxypyrrolidinium (trox) (10(-6) to 2 x 10(-3) M) on responses to carbachol (CCh) and acetylcholine (ACh) was investigated in the electrically stimulated left atrium and longitudinal ileal muscle of the guinea pig. In both tissues, trox exhibited antimuscarinic activity causing parallel shifts of the concentration--response curves to both agonists with no depression of maximum responses. Responses to CCh were inhibited by trox (5 x 10(-4) M) to a greater extent than responses to ACh and this difference was maintained following inhibition of cholinesterases with dyflos. In the guinea-pig atrium using CCh as agonist dose ratios produced by the higher concentrations of trox (greater than 5 x 10(-5) M) were less than expected resulting in a non-linear Arunlakshana--Schild (A-S) plot and this effect of trox was maintained in the presence of mecamylamine (2 x 10(-5) M). In longitudinal ileal muscle flattening of the A-S plot with high concentrations of trox did not occur. Although hemicholinium-3 (HC-3) produces a non-linear A-S plot for antimuscarinic activity in atria the A-S plot obtained with the longitudinal ileal strip using HC-3 (2 x 10(-5) to 2 x 10(-3) M) did not exhibit flattening at high concentrations. The dose ratios obtained with HC-3 (5 x 10(-4) M) using CCh as agonist were significantly greater than those obtained with ACh. It is suggested that trox, like HC-3, acts as a metaffinoid antagonist at the muscarinic receptor.

Animals↗

Effect of variations in temperature on antimuscarinic activity in guinea-pig atria.

The characteristics of the antimuscarinic activity of homatropine, gallamine and stercuronium in guinea-pig atria remained constant over the temperature range 22--37 degrees C in that a linear Arunlakshana-Schild plot was obtained with homatropine and nonlinear plots occurred with gallamine or stercuronium. A trend towards higher dose-ratios with reduction in temperature was only significant for gallamine.

Alkaloids↗

The role of prostaglandins in the excitatory innervation of the rat urinary bladder.

The possible role of PGs in hyoscine-resistant nerve mediated responses of the rat urinary bladder was investigated. Responses to electrical stimulation were inhibited by cinchocaine (30 micronmol/1) but were only partially inhibited by a high concentration of hyoscine (25 micronmol/1) or by the choline uptake inhibitors, hemicholinium-3 (500 micronmol/1) and troxypyrrolidinium (500 micronmol/1). Indomethacin (50 micronmol/1) produced partial blockade (30%) of responses to electrical stimulation without markedly affecting responses to acetylcholine and the degree of blockade was of a similar order in the presence of hyoscine or troxypyrrolidinium. PGE2 (0.028 -2.8 micronmol/1) or F2alpha (0.029 -2.9 micronmol/1) produced a slowly developing increase in tone and spontaneous activity. Responses to electrical stimulation were at most only slightly increased in the presence of either PG. However, the PGs always increased the responses to electrical stimulation after indomethacin, indomethacin plus hyoscine or indomethacin plus troxypyrrolidinium. Responses to acetylcholine in the presence of indomethacin were not increased by PGE2. It is concluded that PGE2 and F2alpha do not function is transmitters responsible for resistance to anti-muscarinic drugs in the bladder but may exert a modulating effect on nervous transmission.

Acetylcholine↗

Stereoselective binding in cardiac tissue of the enatiomers of benzetimide, and antimuscarinic drug.

1 Benzetimide, possessing two stable enantiomers, dexetimide and levetimide, has been investigated in guinea-pig atria with respect to its atropine-like action and its tissue distribution. 2 The antagonistic potency of dexetimide was found to be over 6000 times higher than that of levetimide, the pA2 values being 9.82 and 6.0 respectively. 3 The tissue accumulation was investigated for both isomers in the concentration range from 1.5 X 10(-9) M to 10(-6) M yielding tissue to medium ratios (T/M) of between approximately 50 and 10. The highest values were found for the lowest concentrations. At any concentration investigated, dexetimide exhibited a higher uptake than the levoisomer. 4 The rate of uptake and washout of dexetimide was extremely slow, that of levetimide being considerably faster at equimolar concentrations. The same pattern held true for the onset and decline of the antagonistic action. 5 The high accumulation was found to be almost entirely due to unspecific binding. Even in the case of dexetimide the relative size of the receptor compartment could not be determined. The unspecific binding sites displayed a certain stereoselectivity but to a much lesser extent than the specific receptor binding sites.

Animals↗

The inhibitory effect of gallamine on muscarinic receptors.

1 The inhibitory effect of gallamine (1.1 muM-1.1 mM) on negative inotropic responses to acetylcholine (ACh) or carbachol (CCh) was investigated in isolated electrically stimulated atria of the guinea-pig. Gallamine caused parallel rightward shifts of the dose-response curves to the agonists, with no depression of the maximal response. 2 Gallamine (0.11 - 1.1 mM) produced a greater degree of antagnism towards CCh than towards ACh. With either agonist, the degree of antagonism produced by gallamine in high concentrations was less than that expected for a competitive antagonist.. 3 Similar findings were made when either negative inotropic or chronotropic responses were recorded in spontaneously beating guinea-pig atria. The inhibitory effect of gallamine against the negative inotropic response to cholinomimetics in electrically stimulated atria was not altered either in the presence of propranol (17 muM) or in atria obtained from guinea-pigs pretreated with diisopropylphosphorofluoridate (DEP) 12.5 mumol/kg, in divided doses over 3 days). 4 When ACh was used as the agonist, combination of gallamine with atropine (0.05-0.4 muM) produced dose-ratios which were less than expected for combination of two competitive antagonists. The same phenomenon was observed in atria obtained from guinea-pigs pretreated with DFP. 5 It is suggested that the antagonism produced by gallamine is a type of non-competitive inhibition, which has been termed "metaffinoid antagonism". An antagonist of this type allosterically alters the affinity of the agonist for its binding site, rather than changing the effectiveness of the agonist-receptor interaction.

Acetylcholine↗

The effect of cholinesterase inhibitors on the antimuscarinic effect of hemicholinium-3 (HC-3) in the rat.

The effect of hemicholinium-3 (HC-3) on responses of the rat isolated bladder and ileum to acetylcholine and carbachol was investigated in the absence and presence of a number of anticholinesterases. Responses of the bladder to acetylcholine were potentiated by DFP, edrophonium, BW284C51 and physostigmine but were unaffected by the specific butyrylcholinesterase inhibitor iso-OMPA. Responses to carbachol were not potentiated by the anticholinesterases. HC-3 (1.7 X 10(-4) M) inhibited responses to carbachol without affecting those to acetylcholine. In the presence of physostigmine or DFP responses to acetylcholine were inhibited by HC-3 but no such inhibition was observed in the presence of BW284C51, edrophonium or iso-OMPA or a combination of the latter two anticholinesterases. Responses to carbachol were also inhibited to a greater extent in the presence of DFP. In the ileum, responses to acetylcholine were increased in the presence of DFP, edrophonium and physostigmine but were unaffected by iso-Ompa. responses to carbachol were not increased by any of the anticholinesterases. HC-3 (2.8 X 10(-4) M) inhibited responses to both acetylcholine and carbachol in the ileum and the degree of inhibition was not significantly altered by the presence of any of the anticholinesterases used. Although a weak anticholinesterase, HC-3 was also found to decrease the inhibitory action of physostigmine on the hydrolysis of acetylcholine by homogenates of rat ileum. A similar effect was noted with DFP but not with edrophonium. The results obtained do not support a prejunctional action for HC-3 in antagonizing responses to carbachol. It is concluded that in addition to an inhibitory action on the post-junctional muscarinic receptor HC-3 may interfere with the anticholinesterase activity of some cholinesterase inhibitors such as physostigmine and DFP but not edrophonium.

Animals↗

The interaction of hemicholinium-3 (HC-3) with cholinomimetics and atropine.

In either spontaneously beating or electrically driven atrial preparations of the guinea pig HC-3 (0.01-1 mM) inhibited negative inotropic responses to acetylcholine or carbachol. Although there was a parallel rightwards shift of the log concentration--response curves for acetylcholine or carbachol and no depression of the maximal response the type of antagonism was not competitive as the relationship between dose ratio -- 1) and concentration of HC-3 was not linear over the whole range investigated. A lesser degree of antagonism than expected for a competitive antagonist was observed with higher concentrations of HC-3. HC-3 was a more effective antagonist of responses to carbachol than to acetylcholine and pretreatment of animals with dyflos did not modify this difference. In addition, HC-3 was found to antagonize the inhibitory action of atropine on responses to acetylcholine and to a lesser extent carbachol. The results can be explained in terms of the interaction of HC-3 at a regulatory site distinct from the binding sites for cholinomimetics and atropinics. Interaction of HC-3 at the postulated site produces a noncompetitive antagonism of both agonists and competitive antagonists by modifying the affinities of the compounds for their respective binding sites.

Animals↗