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Biomedical subjects

D L Hamilton

Publications and source records attributed to D L Hamilton.

At least 19 recordsLinked to original sources

Affect and stereotyping: the effect of induced mood on distinctiveness-based illusory correlations.

In 2 studies, the effects of mood on the formation of distinctiveness-based illusory correlations were examined. After exposure to stimuli inducing positive, neutral, or negative mood, Ss read information about behaviors performed by members of 2 groups in an illusory correlation paradigm. In both experiments, only Ss in a neutral mood formed illusory correlations. In addition, Experiment 2 assessed Ss' processing latencies as a means of investigating differential attention to distinctive behaviors. Only Ss in a neutral mood differentially attended to the minority group's infrequent behaviors. Induced mood apparently interfered with the processing necessary to differentially encode distinctive stimuli, undermining the illusory correlation effect.

Adult

The effects of thiamin on lead metabolism: organ distribution of lead 203.

The effect of thiamin on the organ distribution of lead was evaluated in CD-1 mice exposed intragastrically or intraperitoneally to a single dose of lead acetate (100 micrograms) containing 100 microCi lead 203. They were treated with either thiamin (25 or 50 mg/kg body weight), calcium ethylenediaminetetraacetic acid (CaEDTA) (50 mg/kg body weight), or combinations of thiamin and CaEDTA. The whole body retention and the organ distribution of lead 203 varied depending upon the route of lead administration, dose of thiamin and the specific treatment combination. Thiamin (25 or 50 mg/kg) treatment increased the whole body retention of both intragastric and intraperitoneal lead by approximately 10% in each instance. Calcium ethylenediaminetetraacetic acid, either alone or in combination with thiamin (50 mg/kg) reduced the whole body retention of lead by as much as 14% regardless of route of lead exposure. The relative retention of lead by the liver, kidney and spleen was greater in mice exposed to lead by the intragastric route. Regardless of route, CaEDTA in the combined treatment reduced the relative retention of lead in both the liver and kidney, whereas thiamin alone only reduced the retention of lead in the kidney. The results of this study indicate that thiamin in combination with CaEDTA alters the distribution and retention of lead in a manner which may have therapeutic application as it relates to chelation therapy.

Administration, Oral

The effects of thiamin on lead metabolism: whole body retention of lead-203.

The effects of thiamin on the whole body retention of led were evaluated in CD-1 mice treated intragastrically or intraperitoneally while exposed to a single dose of lead acetate (100 micrograms) containing 100 mu Ci lead-203. They were administered thiamin (25 or 50 mg/kg body wt.), calcium ethylenediamine tetraacetic acid (CaEDTA) (50 mg/kg body wt.) or their combination in pretreatment or posttreatment regimens for 13 days. Both pre- and posttreatment with thiamin reduced the lead retention compared to the untreated lead-exposed mice, although the different patterns of lead retention were observed. The combined pretreatment (thiamin 50 mg/kg and CaEDTA) and the CaEDTA treatment alone reduced the whole body retention of lead most effectively. Thiamin, CaEDTA and the combined treatments decreased the absorption of lead-203 and the biological half-life of retained lead-203 following oral or intraperitoneal lead exposure. The reduced absorption and enhanced excretion of lead associated with thiamin administration may have therapeutic application for the treatment of lead poisoning.

Absorption

The effect of acidosis on the relationship between Ca2+ and force in isolated ferret cardiac muscle.

1. The relationship between force and intracellular [Ca2+] (monitored using the protein aequorin) has been investigated in papillary muscles isolated from ferret hearts, under control conditions (superfusate pH (pHo) 7.3) and during acidosis (pHo 6.8). 2. At pHo 7.3, increasing bathing [Ca2+] from 0.5 mmol l-1 to 8 mmol l-1 led to an increase in the size of the intracellular calcium transient. At the lower [Ca2+] this was accompanied by an increase in developed force; however, at the higher bathing [Ca2+] developed force reached a plateau. 3. Acidosis (produced by increasing the [CO2] of the gas with which the muscle superfusate was equilibrated) decreased maximum force and shifted the curve relating peak developed force to peak intracellular [Ca2+] to the right. 4. The mechanisms underlying the apparent decrease in the sensitivity of the contractile proteins to Ca2+ were investigated by applying rapid length changes to papillary muscles at control pHo, during acidosis, and after bathing [Ca2+] had been increased to match force during acidosis to that in control. 5. Acidosis decreased the change in force produced in response to a given length change (i.e. decreased muscle stiffness) but when bathing [Ca2+] was increased during acidosis, muscle stiffness returned to control. 6. Acidosis had no effect on muscle stiffness after the induction of rigor in the muscle (produced by metabolic inhibition). 7. It is suggested that in intact cardiac muscle the major effect of a mild acidosis is to decrease the sensitivity of the contractile proteins to Ca2+, hence decreasing the number of bound cross-bridges.

Aequorin

Failure to reverse cholera toxin induced intestinal secretion by agents which decrease mucosal cAMP.

The feasibility of reducing intestinal secretion by the use of agents which decrease intestinal mucosal cAMP concentration has been investigated in the weanling pig and the rabbit. Three different agents for decreasing mucosal cAMP concentration were studied. The cyclic nucleotide phosphodiesterase activator, imidazole, significantly reduced mucosal cAMP concentrations only in the weanling pig. Intraluminal 2'-deoxyadenosine-3'AMP inhibited adenylate cyclase and caused a decrease in mucosal cAMP concentration in both the pig and the rabbit. The introduction of the heat-stable enterotoxin of Escherichia coli into pig jejunal segments also gave lowered mucosal cAMP concentrations. While these three agents effectively reduced cAMP concentrations in intestinal mucosa, they were ineffective in reducing the net fluid secretory effects of cholera toxin. Secretion caused by cholera toxin apparently persists independent of the temporary changes in cAMP concentration which can be induced by pharmacological agents.

Adenylyl Cyclases

Permeability properties of swine small intestine: effect of a heat stable Escherichia coli enterotoxin.

The permeability of weanling swine small intestine was estimated using measurements of filtration coefficients and equivalent pore size. Hypertonic solutions of mannitol, erythritol and urea were used to calculate reflection coefficients in the duodenum, mid jejunum and distal jejunum. Estimated effective pore radius was 6.4-7.4, 5.6-7.2 and 4.7-4.9A degrees in the three respective regions. Similarly the filtration coefficient induced by hypertonic solutions of mannitol decreased significantly in the distal jejunal segments. The results show an aboral gradient of decreasing permeability along the small intestine of the weanling pig. In situ incubation of loops in the proximal jejunum with a heat stable Escherichia coli enterotoxin for one hour did not significantly change the effective pore size as calculated from reflection coefficients of hypertonic solutions of erythritol and urea. However, the filtration coefficients of loops exposed to the enterotoxin were significantly greater than control loops with hypertonic solutions of erythritol and urea but not mannitol. This suggests the occurrence of a slight reduction in epithelial porosity. The results support the hypothesis that intestinal secretion induced by heat stable E. coli enterotoxin is not the result of an increased mucosal permeability.

Animals

Cholera toxin effects on fluid secretion, adenylate cyclase, and cyclic AMP in porcine small intestine.

The effects of cholera toxin on mucosal cyclic nucleotide concentrations and on net fluid secretion in the porcine small intestine are reported. Cholera toxin causes net secretion of fluid into the small intestine of weanling pigs, and secretory rates are dependent on the dose of the toxin placed in intestinal loops. Intestinal secretion due to cholera toxin exposure was not consistently accompanied by elevated concentrations of mucosal cyclic AMP or cyclic GMP. Net fluid fluxes in individual loops did not correlate with mucosal cyclic AMP concentration in the same loop. Jejunal adenylate cyclase was activated to a lesser extent in pigs, compared with rabbits, after in vivo treatment with cholera toxin. In vitro activation in cell-free homogenates was similar for both species. Papaverine was similar to cholera toxin in causing fluid secretion without cyclic AMP accumulations, but 3-isobutyl-1-methyl xanthine significantly increased cyclic AMP concentration and induced fluid secretion in pigs. Weanling pigs appeared to differ from rabbits in having a secretory response to cholera toxin which was independent of elevations in total mucosal cyclic AMP concentration.

1-Methyl-3-isobutylxanthine

Some comparative properties and localization of porcine jejunal adenylate cyclase.

Cholera toxin is thought to cause intestinal secretion by activating adenylate cyclase and increasing intracellular 3',5'-cyclic AMP concentrations in intestinal mucosa. Cholera toxin causes profuse secretion of fluid into ligated intestinal loops of both pigs and rabbits, but cholera toxin-induced increases in 3',5'-cyclic AMP concentration are much lower in the pig than in the rabbit. Porcine jejunal adenylate cyclase was examined for unusual properties which might account for a lack of 3'-5'-cyclic AMP accumulation after treatment with cholera toxin. The divalent cation requirements, the pH optimum, and the stimulation by fluoride ion were unremarkable. The Km for ATP was 0.11 mM with negative cooperativity indicated by a Hill coefficient of 0.83. Triton X-100 was inhibitory and guanosine diphosphate methylenephosphate stimulated enzyme activity. Adenylate cyclase activity was highest in the basal and lateral membrane fractions of jejunal mucosa and relatively low in brush-border preparations. Pretreatment of pig jejunum with cholera toxin caused a 30-40% activation of the crude and of the partly purified enzyme. A relatively low activation of adenylase cyclase in pig jejunal mucosa, compared with rabbit, may account for the absence of 3',5'-cyclic AMP accumulation after cholera-toxin treatment in the pig.

Adenylyl Cyclases

Zinc, cadmium, and iron interactions during intestinal absorption in iron-deficient mice.

Zinc absorption from a test dose of (65Zn) zinc chloride was increased in mice with a high capacity to absorb iron induced by a low-iron diet. When radiolabelled zinc chloride in concentrations varying from 0.025 to 0.30 mM was perfused through open-ended duodenal loops of mice fed this diet, the proportion of zinc taken up from the lumen and transferred to the body was greater from lower than from higher doses. The addition of iron to the perfusate inhibited zinc uptake and transfer, and zinc had a similar effect on iron absorption. Cadmium, a potent inhibitor of iron uptake in mice fed a low-iron diet, impaired zinc uptake under these dietary conditions. These results suggest that in dietary-induced iron deficiency there are analogous mucosal binding sites for the uptake of iron and zinc. There also appear to be mutually exclusive binding sites for the absorption of these metals: radiolabelled iron absorption from an intragastric test dose was enhanced in mice with a high capacity to absorb iron produced by bleeding, whereas the absorption of zinc was not increased.

Animals

The effect of cholera toxin and heat labile and heat stable Escherichia coli enterotoxin on cyclic AMP concentrations in small intestinal mucosa of pig and rabbit.

The effect of cholera toxin, heat labile and heat stable Escherichia coli enterotoxin on mucosal cyclic AMP concentrations was determined on the proximal jejunum of weanling pigs and young rabbits. Ligated loops were injected with solutions containing no enterotoxin for control and either cholera toxin, heat labile or heat stable E. coli enterotoxin. The loops were drained after either two, four or six hours incubation at which time accumulated fluid was recorded and mucosal samples removed for determination of cyclic AMP concentration. In the rabbit, cholera toxin and heat labile, but not heat stable E. coli enterotoxin stimulated intestinal secretion while in the pig all three enterotoxins induced net fluid accumulation. Cholera toxin and heat labile, but not heat stable E. coli enterotoxin elevated rabbit mucosal cyclic AMP concentrations. In the pig these enterotoxins had no significant effect on mucosal cyclic AMP concentrations. The results are inconsistent with the hypothesis that the adenyl cyclase system is an essential step for enterotoxin induced intestinal secretion. The activation of intestinal adenyl cyclase by bacterial enterotoxins may only be an associated and not a necessary event for the stimulation of intestinal secretion.

Animals

Effects of intraluminal glucose on intestinal secretion induced by heat stable and heat labile Escherichia coli enterotoxin, cholera toxin and theophylline.

Glucose, l-alanine, l-aspartate, l-methionine and glycine enhanced net fluid and electrolyte absorption in acute isolated loops of the proximal jejunum of weanling swine. The effect of glucose on intestinal secretion induced by heat stable and heat labile Escherichia coli entero-toxin, cholera toxin and theophylline was examined in both the proximal and distal jejunum of weanling swine. In the proximal jejunum glucose enhanced the rate of net fluid and electrolyte absorption. This increase was accompanied by an increase in unidirectional dosium absorption. In loops exposed to either heat stable or heat labile enterotoxins, glucose significantly decreased the rate of net fluid and electrolyte secretion. The magnitude of glucose enhancement in loops exposed to heat stable and heat labile enterotoxins was similar to adjacent control loops. However, glucose enhancement did not occur in loops exposed previously to cholera toxin or concurrently to theophylline. Therefore, cholera toxin and theophylline may inhibit substrate dependent sodium absorption in the proximal jejunum. In the distal jejunum glucose enhancement did occur but the rate of enhancement was less than in the proximal jejunum. In this region glucose enhancement was not evident in loops exposed to either theophylline, heat stable, heat labile or cholera toxin.

Amino Acids

Effect of heat stable and heat labile Escherichia coli enterotoxins and cholera toxin in combination with theophylline on unidirectional sodium and chloride flux in the small intestine of weanling swine.

The effect of heat stable and heat labile Escherichia coli enterotoxins or cholera toxin in combination with theophylline on net water, sodium and chloride and unidirectional sodium and chloride fluxes was examined in acute isolated loops of jejunum of weanling swine. The effect of heat stable enterotoxin in combination with theophylline was determined in loops located in the proximal jejunum, while combinations of theophylline and either heat labile enterotoxin or cholera toxin were studied in the distal jejunum. In each situation the addition of theophylline resulted in an additive rather than a synergistic increment of intestinal secretory activity. This study implies that the intestinal adenyl cyclase system and enterotoxin induced intestinal secretion may not be directly related in the swine small intestine.

Animals

Electrolyte levels and net fluid and electrolyte movements in the gastrointestinal tract of weanling swine.

Electrolyte concentrations, osmolality and pH were determined in conventionally raised weanling swine fed a liquid diet. Incorporation of a dilution marker into the diet in combination with frequent feeding enabled estimations as to the sites of relative fluid and electrolyte absorption and secretion along the gastrointestinal tract. Unlike many other species the weanling pig depends largely on its large intestine for absorption of fluid and electrolytes with small changes in net fluid movement occurring along the jejunal and ileal segments. Additional observations included the absorption of water by the porcine stomach which increased dilution marker concentration by approximately twofold and the high osmolality values recorded in the small and large intestine. The implications of these observations are discussed with regard to pathogenesis of colibacillary diarrhea in the weanling pig.

Animals

Effect of heat stable and heat labile Escherichia coli enterotoxins, cholera toxin and theophylline on unidirectional sodium and chloride fluxes in the proximal and distal jejunum of weanling swine.

Acute, isolated loops of proximal and distal jejunum of weanling swine were exposed to either heat stable porcine Escherichia coli enterotoxin, heat labile porcine Escherichia coli enterotoxin, cholera toxin or theophylline. Unidirectional sodium fluxes in response to heat stable in the proximal jejunum were dependent on the length of time that the intestinal mucosae was exposed to the enterotoxin. Net water, sodium and chloride and unidirectional sodium and chloride flux measurements in the proximal jejunum in response to each agent uniformly indicated that net secretion of fluid and electrolytes was the result of increased unidirectional sodium secretion or blood-to-lumen flux and decreased unidirectional chloride absorption or lumen-to-blood flux. In addition heat stable cholera toxin and theophylline but not heat labile decreased unidirectional chloride secretion a small but significant amount in the proximal jejunum. Sodium and chloride flux measurements in the distal jejunum demonstrated that all four secretory agents could stimulate net secretion of water, sodium and chloride in that region. The response to these secretory agents as measured by sodium and chloride unidirectional flux rates was not similar to changes observed in the proximal jejunum. In the distal small intestine, whereas heat labile cholera toxin and theophylline induced similar qualitative changes in unidirectional sodium and chloride fluxes, that induced by heat stable differed.

Animals

Effects of immune-mediated enteroluminal neltrophil emigration on intestinal function in pigs.

Intestinal function was assessed in cannulated loops of porcine proximal jejunum during immune-mediated emigration of neutrophils into the intestine. Net water, net sodium, net chloride, undirectional sodium and unidirectional chloride fluxes were measured before and after intestinal exposure to an antigen in both sensitized and nonsensitized pigs. Neutrophil emigration was assessed histologically. The results indicate that fluid and electrolyte movements in the intestine are not significantly altered during immune-mediated enteroluminal neutrophil emigration suggesting that the neutrophil response does not interfere with intestinal function.

Animals