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Histamine receptors in the guinea pig ileum.

Histamine and some related compounds acting selectively on H2-or H1 receptors were tested for their ability to contract the guinea pig ileum, in the usual whole ileum preparation and in the longitudinal muscle preparation. The concentrations elicited by histamine in both kinds of preparations were not potentiated by cimetidine or metiamide and were not inhibited by administration of H2 receptor selective agonists in doses which were subthreshold for contracting the guinea pig ileum; higher doses of the H2 agonists could actually potentiate the effect of histamine. The results obtained suggest that H2 receptors with relaxing effect do not occur in the guinea pig ileum or at least that they are not involved in the contraction of the longitudinal muscle layers. The possibility that a sub-type of H2 receptors with properties different from those of the "classical" H2 receptors so far known, exists in the guinea pig ileum, cannot be excluded.

Animals

Assessment in the guinea-pig ileum and mouse vas deferens of benzomorphans which have strong antinociceptive activity but do not substitute for morphine in the dependent monkey.

1 Four benzomorphans which have potent antinociceptive activity in the hot-plate and writhing tests in the mouse but do not suppress or precipitate withdrawal symptoms in the morphine-dependent monkey, have been examined for their pharmacological actions in the guinea-pig ileum and mouse vas deferens. 2 In the guinea-pig ileum their agonist potencies are 1.5 to 400 times greater than that of normorphine of morphine whereas in the mouse vas deferens their potencies relative to morphine are 0.3 to 100. They exhibit no antagonist activity in either preparation. Benzomorphans which substitute for morphine in the morphine-dependent monkey do not show such differences between their relative potencies in the guinea-pig ileum and mouse vas diferens. 3 The relative potencies of the four benzomorphans to inhibit stereospecific [3H]-dihydromorphine binding by membrane fragments from rat brain, are more closely related to their relative agonist potencies in the mouse vas deferens than to those found in the guinea-pig ileum. 4 In order to antagonize the agonist actions of these benzomorphans, naloxone is required in concentrations which are 3 to 7 times higher than those needed for the antagonism of normorphine or morphine or of benzomorphans which suppress abstinence in morphine-dependent monkeys. 5 It may be possible to use the three assays, namely, ratio of relative agonist potency in mouse vas deferens to that in guinea-pig ileum, ratio of relative agonist potency to relative affinity to opiate receptors and the concentration of nalozone required for antagonism, for the prediction of the potential of new compounds to produce physical dependence.

Analgesics, Opioid

The actions of 5-hydroxytryptamine and histamine on the isolated ileum of the tree shrew (Tupaia glis).

1. Contractions to 5-hydroxytryptamine (5-HT) and histamine of longitudinal muscle from the isolated ileum of the tree shrew (Tupaia), guinea-pig and rat were investigated by constructing dose-response curves and studying the effects of various antagonists. 2 In the Tupaia and rat ileum the contraction to 5-HT was reduced by methysergide but not affected by tetrodotoxin (TTX), morphine, hexamethonium (C6) or atropine. The response of guinea-pig ileum to 5-HT was not significantly inhibited by methysergide or C6, but was blocked by TTX, morphine and atropine. 3 Histamine-induced contraction of Tupaia and guinea-pig ileum was antagonized by diphenhydramine but not by TTX, morphine, C6 or atropine. Histamine was almost without effect on the rat ileum.

Animals

Occurrence of K99 antigen on Escherichia coli isolated from pigs and colonization of pig ileum by K99+ enterotoxigenic E. coli from calves and pigs.

Several strains of enterotoxigenic Escherichia coli (ETEC) isolated from pigs were found to have an antigen (K99) previously reported only on strains of calf and lamb origin and which facilitates intestinal colonization in the latter two species. Several human ETEC were also tested for K99; however, none were positive. Each of four K99-positive ETEC strains of calf origin and one of pig origin produced K99 in pig ileum in vivo, adhered to villous epithelium in pig ileum, colonized pig ileum, and caused profuse diarrhea in newborn pigs. In contrast to the K99-positive strains above, four K99-negative ETEC from humans and chickens and one K99-positive ETEC from a calf either did not colonize pig ileum or did so inconsistently. When the K99-negative strains did colonize, they had little or no tendency to adhere to intestinal villi. These results are consistent with the hypothesis that K99 facilitates adhesion to and colonization of pig ileum by some ETEC.

Animals

Possible differences in alpha-adrenoceptors in rabbit ileum and spleen.

In isolated tissues from reserpinized rabbits (5 mg kg-1, i.m. 20 h before experiment) and in the presence of cocaine (3 x 10(-5) M), corticosterone (2.8 x 10(-5)M), tropolone (3 x 10(-5) M), propranolol (4 x 10(-5)M) and disodium EDTA (3 X 10(-5)M), the potency ratios (relative to (-)-noradrenaline) of (-)adrenaline, (-)-phenylephrine and (+/-)-methoxamine were (m+/-s.e.) 2.03 +/- 0.13, 0.045 +/- 0.003 and 0.0062 +/- 0.0018 respectively in splenic strips and 1.77 +/- 0.41, 0.093 +/- 0.018 and 0.029 +/- 0.004 respectively in isolated ileum. Although the pA2 values for phentolamine and thymoxamine against (-)-noradrenaline in the two tissues were very similar there was a statistically significant difference when using yohimbine as the alpha-adrenoceptor blocking agent (pA2 = 6.80 +/- 0.30 in spleen; 5.60 +/- 0.12 in ileum). These differences suggest that the alpha-adrenoceptor in the two tissues is not identical. The pA2 value of phentolamine in rabbits ileum was not significantly different whether (-)noradrenaline or (+/-) methoxamine was used as agonist (7.91 +/- 0.07 and 7.97 +/- 0.06 respectively) while that of yohimbine was 5.56 +/- 0.10 using (-)noradrenaline and 6.19 +/- 0.12 using (+/-)methoxamine. In the light of this latter result and, considering the scatter of the experimentally determined values, there may be two alpha-adrenoceptors in rabbit ileum and either or both may not be identical in all respects to the alpha-adrenoceptor found in rabbit spleen.

Animals

Increased cyclic adenosine 3',5'-monophosphate content in guinea pig ileum after exposure to Staphylococcus aureus delta-toxin.

To compare Staphylococcus aureus delta-toxin with cholera toxin, which is known to increase cellular cyclic adenosine 3',5'-monophosphate (cAMP), studies were undertaken to determine the effect of delta-toxin on the cAMP content of guinea pig ileum maintained in vitro. Concentrations of delta-toxin as low as 0.40 mug/ml increased cAMP levels in guinea pig ileum after 2 h of incubation. Histological damage was seen in ileum exposed for 2 h to delta-toxin concentrations of 100 mug/ml. As little as 3 mug of delta-toxin increased vascular permeability in guinea pig skin. Permeability changes became evident within 5 min and were maximal within 6 h, whereas those produced by cholera toxin required 24 h to become maximal. Benadryl did not interfere with the ability of these toxins to alter vascular permeability. Purified egg lecithin reduced the effectiveness of delta-toxin in the skin but did not inhibit cholera toxin. Delta-toxin in concentrations as low as 0.1 mug/ml caused dislodgement of HeLa cells in tissue cultures. Therefore, delta-toxin appears unique in being the only bacterial toxin, currently known to alter water absorption in the ileum, that is capable of both increasing cAMP levels and being cytotoxic. These findings suggest a possible role for delta-toxin in the pathogenesis of staphylococcal enteritis.

Animals

The effect of enkephalin and enkephalin analogs on the guinea-pig ileum and rat brain opilate receptor.

We have synthesized the two naturally occurring enkephalins (Methionine-Enkephalin and Leucine-Enkephalin) as well as four other analogs (Methinonine-Enkephalin amide, S-Benzyl sulphonium analog of Methionine-Enkephalin, 3-Benzyl-tyrosine analog of Methionine-Enkephalin and 3-Benzyl-tyrosine analog of Leucine-Enkephalin) in order to study their relative potency and their inactivation of different tissues. Morphine-like activity of the peptides was determined by measuring their inhibitory effect in the guinea-pig ileum and their interaction with the brain opiate receptor; the order of affinity of the three most active peptides (Methionine-Enkephalin amide greater than Methionine-Enkephalin greater than Leucine-Enkephalin) for the rat brain opiate receptor was found to be the same in the guinea-pig ileum. The rate of inactivation of the peptides was also studied in the guinea-pig ileum and in the rat brain membrane preparation. Methionine-Enkephalin amide was relatively more resistant to the ileum peptidases than the other peptides, but was destroyed at the same rate by brain membranes; this variation in inactivation of Methionine-Enkephalin amide probably indicates the presence of differnet peptidases in each tissue preparation.

Animals

Separately developing axonal uptake of 5-hydroxytryptamine and norepinephrine in the fetal ileum of the rabbit.

Uptake of 5-hydroxytryptamine (5-HT) by adult and fetal rabbit's ileum was studied. The adult myenteric plexus accumulated tritium when incubated with tritiated 5-HT. However, in addition to labeled 5-HT, tritiated 5-hydroxyindole acetic acid and, when monoamine oxidase (MAO) was inhibited, 5-HT-o-glucuronide were found in the tissue. Two uptake processes differing in affinity could be defined. Only the high affinity process was saturable. Fetal ileum took up tritiated 5-HT but glucuronidation did not occur when MAO was inhibited. The uptake of tritiated 5-HT by the fetal ileum was due to a single, saturable, temperature sensitive (Q10 at 27-37 degress C = 2.4) process inhibited by ouabain. It was identical to the high affinity uptake found in adult tissue. This specific high affinity uptake could be found as early as the 16th day of gestation, 5-8 days before uptake of norepinephrine (NE) begins. Light and electron microscope radioautography revealed that the uptake of 5-HT was primarily into axons and a characteristic structure called the expanded process, both in the myenteric plexus. Both contained dense-cored vesicles. Axons were not labeled by tritiated NE until after 24 days and the expanded process was never labeled by tritiated NE. This study shows that uptake of 5-HT is a property of distinct system of axons in the mammalian myenteric plexus which develops prior to adrenergic axons during ontogeny.

Animals

Pharmacological characterization of the presynaptic alpha-adrenoceptors regulating cholinergic activity in the guinea-pig ileum.

1 The presynaptic alpha-adrenoceptors located on the terminals of the cholinergic nerves of the guineapig myenteric plexus have been characterized according to their sensitivities to alpha-adrenoceptor agonists and antagonists.2 Electrical stimulation of the cholinergic nerves supplying the longitudinal muscle of the guinea-pig ileum caused a twitch response. Clonidine caused a concentration-dependent inhibition of the twitch response; the maximum inhibition obtained was 80 to 95% of the twitch response. Oxymetazoline and xylazine were qualitatively similar to clonidine but were about 5 times less potent. Phenylephrine and methoxamine also inhibited the twitch response but were at least 10,000 times less potent than clonidine.3 The twitch-inhibitory effects of clonidine, oxymetazoline and xylazine, but not those of phenylephrine or methoxamine, were reversed by piperoxan (0.3 to 1.0 mug/ml).4 Lysergic acid diethylamide (LSD) inhibited the twitch response, but also increased the basal tone of the ileum. Mepyramine prevented the increase in tone but did not affect the inhibitory action of LSD. Piperoxan or phentolamine only partially antagonized the inhibitory effect of LSD.5 Phentolamine, yohimbine, piperoxan and tolazoline were potent, competitive antagonists of the inhibitory effect of clonidine with pA(2) values of 8.51, 7.78, 7.64 and 6.57 respectively.6 Thymoxamine was a weak antagonist of clonidine; it also antagonized the twitch-inhibitory effect of morphine. Thus, its effect against clonidine is probably not mediated specifically at presynaptic alpha-adrenoceptors.7 Labetalol, itself, depressed the twitch response but did not antagonize the inhibitory effect of clonidine on the residual twitch.8 The results demonstrate that the presynaptic alpha-adrenoceptors in the guinea-pig ileum are of the same type as those located presynaptically in sympathetically innervated tissues. They are alpha(2)-adrenoceptors and are different from those located postsynaptically.

Acetylcholine

Narcotic agonist and antagonist potencies of a homologous series of N-alkyl-norketobemidones measured by the guinea-pig ileum and mouse vas deferens methods.

The narcotic agonist and antagonist potencies of the series of N-alkyl-norketobemidones from norketobemidone to decylnorketo-bemidone have been determined. The values obtained in the electrically stimulated preparations of the guinea-pig ileum and the mouse vas deferens are closely correlated. The agonist potencies observed in the guinea-pig ileum agree well with those found in the mouse hot-plate test (Oh-ishi & May) and those obtained by determining the inhibition of naloxone binding in brain homogenates (Wilson, Rogers, Pert & Snyder). The antagonist potencies in the guinea-pig ileum and, to a lesser extent, those in the mouse vas deferens agree with the values obtained in the morphine-dependent monkey.

Animals

The character of the antagonism by polyphloretin phosphate of contractions to prostaglandins E1 and F 2alpha in guinea-pig ileum.

Polyphloretin phosphate (PPP) produced a dose-dependent decrease in the tone and reduction of the spontaneous phasic contactions of the longitudinal muscle of guinea-pig isolated ileum. PPP (100 microgram ml-1) after a 2 min contact with the ileum decreased the contractile effects of PGE1 0.1 micron by 40.6 +/- 7.4%, of PGE1 0.01 micron by 86.7 +/- 3.3% and of PGE2alpha 0.1 micron by 62.2 +/- 8.6%. After 10 min contact of PPP the contractile effect of PGE1 0.1 micron was decreased by 47.7 +/- 4.7% and that of PGE2alpha 0.1 micron by 89.6 +/- 1.7%. When the contact was longer, PPP showed a pronounced after-effect in respect to the effects of PGE1 and particularly of PGF2alpha. PPP signicantly reduced contractions to 5-HT and BaCL2, but not to acetylcholine, histamine or substance P. The type of antagonism of PGE1 by PPP was examined using cumulative concentration-effect curves for PGE1 in the presence of increasing concentrations of PPP. We conclude that on guinea-pig ileum PPP acts as a non-competitive antagonist of PGE1 and PGF2alpha.

Acetylcholine

Characterization of receptors on postganglionic cholinergic neurons in the guinea-pig isolated ileum.

Dopamine, apomorphine, noradrenaline and isoprenaline reduced the response of the isolated guinea-pig ileum to exogenous acetylcholine by a maximum of 40%. Propranolol reversed this inhibition whilst phentolamine and pimozide were ineffective, suggesting that the drugs were acting on a post-synaptic beta-adrenoceptor. The same agonists were more effective as inhibitors of the response to transmural electrical stimulation of the ileum, lower doses producing almost complete inhibition. This inhibition was partially antagonized by phentolamine, pimozide and propranolol. Clonidine proved to be the most potent inhibitor of the response to transmural electrical stimulation, whilst phenylephrine was ineffective. pA2 determinations showed that phentolamine was a potent antagonist of clonidine but a weak antagonist of apomorphine whilst for pimozide the opposite was true. The results suggest that there are two populations of prejunctional receptors on the cholinergic nerves innervating the smooth muscle of the guinea-pig ileum. One receptor is similar to a classical prejunctional alpha-adrenoceptor and the other resembles a central dopamine receptor.

Acetylcholine

Flow rates of components in digesta of pigs prepared with re-entrant cannulas in the proximal duodenum and terminal ileum, and fed semipurified, hard wheat, and soft wheat diets.

Four pigs prepared with re-entrant cannulas in the proximal duodenum and terminal ileum were used to study flow rates of total digesta, insoluble dry matter, nitrogen, and amino acids entering and leaving the small intestine. The pigs received a semipurified diet, a hard wheat diet, or a soft wheat diet. These were approximately isonitrogenous. A higher rate of passage of digesta through the proximal duodenum and terminal ileum were measured in pigs receiving the hard wheat diet. Peak flow of digesta at the duodenum of all pigs occurred at 1 h post feeding. Peak flow of digesta at the ileum occurred at 9 h post feeding on the soft wheat diet, but somewhat earlier on the hard wheat and semipurified diet. More nitrogen and essential amino acids flowed in the solid fraction of duodenal digesta during the first 2 h post feeding for the wheat diets and 4 h post feeding for the semipurified diet. It was concluded that flow rate of most nutrients from the stomach and through the small intestine of pigs is modified by the composition and texture of the food ingested. It is postulated that efficiency of mixing of digesta with digestive secretions in the stomach is a major factor influencing rate of flow.

Amino Acids, Essential

Effects of intravenous calcitonin on water, electrolyte, and calcium movement across in vivo rabbit jejunum and ileum.

The influence of intravenously administered synthetic salmon calcitonin on water, electrolyte and calcium fluxes in in vivo rabbit jejunum and ileum was examined. Rabbits were divided into four groups: those receiving (1) saline intravenously while a glucose-free isotonic saline solution perfused the jejunum and ileum; (2) calcitonin intravenously while the same intestinal perfusate was used as in group 1; (3) intravenous saline while 10 mM glucose-isotonic saline solution perfused jejunum and ileum; and (4) intravenous calcitonin while the intestinal perfusate was of the same composition as in group 3. Calcitonin provoked a significant increase in jejunal and ileal water, sodium, and bicarbonate secretion in both the glucose-free and glucose-containing perfusate groups. No influence on calcium movement was noted. These results, similar to findings of Gray et al. (J Clin Invest 52:3084-3088, 1975) in human jejunum, suggest that calcitonin may play a role in the pathogenesis of the watery diarrhea noted in about one-third of patients with medullary carcinoma of the thyroid. In addition, these studies demonstrate the usefulness of the rabbit as an animal model with which to investigate further the effects of calcitonin upon intestinal fluid and electrolyte transport.

Animals

[Pharmacological analysis of the pendular movements appearing during calcium blocking of peristalsis in the isolated guinea pig ileum].

Calcium chloride acting from the serosal surface blocked the peristaltic reflex and at the same time, after about 30 minutes, evoked pendulum type of activity in the longitudinal muscle of the guinea-pig isolated ileum, subjected to constant intraluminal pressure. Hexamethonium, tetraethylammonium, morphine, methadone and atropine blocked, while, neostigmine potentiated the pendulum movements evoked by calcium chloride. In the Magnus preparation of the guinea-pig isolated ileum calcium chloride also caused pendulum type of activity. From these experiments it is concluded that calcium chloride evoked pendular movements by stimulating the postganglionic cholinergic nerves in the longitudinal muscle of the guinea-pig isolated ileum.

Animals

Interactions of morphine, adenosine, adenosine triphosphate and phosphodiesterase inhibitors on the field-stimulated guinea-pig ileum.

Inhibition of the electrically induced contractions of the guinea-pig ileum has been shown to be a reliable index to the relative potency of various narcotic analgesics. This property suggests that this preparation might be used as a model in attempts to elucidate the mechanism(s) by which morphine induces analgesia in the central nervous system. Since it has been demonstrated that some adenosine derivative may function as an endogenous inhibitory transmitter in the gut, the effects of adenosine, adenosine triphosphate (ATP) and morphine on the ileum were further characterized and compared. Morphine, adenosine and ATP produce a substantial inhibition of the isometric contractions induced by transmural field stimulation. The inhibition produced by each is antagonized by 2.5 times 10(-7) M tolazoline whereas that produced by ATP is potentiated by 4 times 10(-7) M 5-hydroxytryptamine. The inhibitory effects of morphine and ATP can also be markedly potentiated by two of the several phosphodiesterase inhibitors tested, Ro 20-1724 and dipyridamole. In addition, pretreatment of the ileum with either adenosine, ATP or morphine can produce a significant potentiation of the inhibitory effects of norepinephrine. The above suggests that cyclic adenosine 3',5'-monophosphate may play a role in mediating some of the inhibitory effects produced by exogenous adenosine, ATP and morphine. In addition, the similarities between the effects produced by these substances indicates that the biochemical pathways responsible for mediating the effects of each may share some common elements.

Adenosine

Studies on the narcotic receptor in the guinea-pig ileum.

Studies were conducted on the development and loss of tolerance to morphine in the coaxially stimulated guinea-pig ileum. In ilea from guinea pigs made tolerant to morphine by the procedure of morphine-pellet implantation, the morphine-naloxone pA2 was decreased from 8.5 to 7.6, suggesting a qualitative rather than a quantitative change in the receptors. This change in the pA2 was in the opposite direction from that previously observed with analgesic receptors. Three hours after the administration of a single injection of morphine to the guinea pig, the ileum showed tolerance to morphine, which disappeared by 6 hours. With naloxone as the antagonist, the narcotic analgesics, morphine, methadone, etorphine and levorphanol, yielded higher pA2 values than the narcotic antagonist analgesics, nalorphine, pentazocine and cyclazocine, a result similar to that seen with the analgesic receptors. However, the interaction between naloxone and the narcotic antagonists in the ileum differed from that in the central nervous system when the slopes of the pAx plots were examined. Thus, although the interaction of analgesics with the ileal receptors appears to correlate with the acute effects of the drugs, caution must be exercised to use the ileal receptors as models of analgesic receptors for the study of chronic narcotic effects, i.e., tolerance and dependence.

Animals

Influence of papaverine derivatives on phosphodiesterase activity, cyclic 3',5'-AMP levels and relaxing effect on rabbit ileum.

The correlations between the relaxing effect of papaverine derivatives, inhibition of low Km-phosphodiesterase (cAMP-PDE = EC 3.1.4.17) activity and cyclic 3',5'-AMP (cAMP) levels in isolated rabbit ileum were investigated. There was a strong correlation between the relaxing effect, inhibition of PDE activity and cAMP content for eupaverine, ethylpapaverine and papaverine. Eupaverine was the most effective relaxing agent (I50 = 7.5 muM) and the most potent inhibitor of PDE activity (Ki = 0.6 muM), followed by ethylpapaverine (I50 = 10 muM;Ki 0.8 muM) and papaverine (I50 = 20 muM;Ki = 2 muM). In contrast, there was a strong relaxing effect (I50 = 6 muM) but only slight inhibition of PDE activity (Ki = 350 muM) by tetrahydropapaveroline (THP). The adenylate cyclase stimulating effect of THP which was shown by others is most likely the reason for comparatively higher cAMP levels, which were found to be elevated about seven times over basal levels of 0.35 nmoles/g wet weight, and effective relaxation. Relaxation could be induced by exogenously added cAMP (I50 = 45 muM) and dibutyryl-cAMP (I50 = 450 muM). Our results support the assumption that smooth muscle relaxation in rabbit ileum is mediated by cAMP. Some of these observations have been published in abstract form (Schulz and Berndt, 1972).

3',5'-Cyclic-AMP Phosphodiesterases