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C R Benedict

Publications and source records attributed to C R Benedict.

At least 91 records · Page 5Linked to original sources

Measurement of the release of adenine nucleotides during platelet aggregation by small-bore-column isocratic high-performance liquid chromatography.

This paper describes a simple and sensitive method for measuring adenosine, adenosine monophosphate, adenosine diphosphate, and adenosine triphosphate in plasma and tissues. This method involves sample preparation by perchloric acid extraction, followed by high-performance liquid chromatography on a small-bore column with UV detection at 254 nm. The minimum detectable amounts were adenosine, 0.60 pmol; adenosine monophosphate, 0.90 pmol; adenosine diphosphate, 1.5 pmol; and adenosine triphosphate, 2.5 pmol. The interassay coefficient of variation for the measurement of these compounds was less than 4%. The influence of varying the pH and the concentration of phosphate, acetonitrile, and ion-pairing reagent are described. This method can be used to measure adenine nucleotide release during platelet aggregation.

Adenine Nucleotides↗

Rapid, simplified radioimmunoassay of arginine-vasopressin and atrial natriuretic peptide in plasma.

We have improved a radioimmunoassay for arginine-vasopressin (AVP) and atrial natriuretic peptide (ANP) by using Sep-Pak C18 cartridges to extract AVP and ANP from acidified plasma. The analytes are co-eluted by use of a mobile phase consisting of 1,2-dimethoxyethane and 40 g/L aqueous trifluoroacetic acid (95/5, by vol). After rapid evaporation of the solvents, AVP and ANP are assayed by a nonequilibrium radioimmunoassay method in which commercially available antibodies and radiolabeled antigens are used. The bound fractions are separated from the free by use of polyethylene glycol with human gamma globulin and rabbit anti-human IgG as the second antibody. This results in very low nonspecific binding: 0.44% for the ANP assay, 0.70% for AVP. The minimum detectable amount of ANP is 0.39 pg per tube; for AVP, it is 0.13 pg per tube. Compared with other published methods, this method is substantially more reliable, economical, and easily established in a clinical chemistry laboratory.

Arginine Vasopressin↗

Cholesterol flux between cells and high density lipoprotein. Lack of relationship to specific binding of the lipoprotein to the cell surface.

The bidirectional flux of unesterified cholesterol between cells and high density lipoprotein (HDL) was studied in relationship to the binding of HDL to cells. At 100 micrograms at HDL protein/ml, the rate constant for cholesterol efflux from rat Fu5AH hepatoma cells is 3 X 10(-3)/min (t1/2 for efflux of 3.9 h), whereas efflux from GM3468 human fibroblasts is 0.075/4 h (equivalent to a t1/2 for efflux of 37 h). The relatively slow efflux of cholesterol from fibroblasts in comparison to rat hepatoma cells was observed previously with micellar and vesicular phospholipid-containing acceptors, which promote efflux by a mechanism involving the diffusion of cholesterol in the aqueous phase between the plasma membrane and the acceptor particles. When plotted against the logarithm of HDL concentration, the isotherms for efflux are centered at 300 and 100 micrograms of HDL protein/ml with the hepatoma cells and fibroblasts, respectively. These concentrations are 8-150 times greater than the corresponding values for Kd of specific HDL binding (2 and 12 micrograms of protein/ml, for hepatoma cells and fibroblasts, respectively). The treatment of HDL with tetranitromethane reduces the lipoprotein's affinity for specific cell-surface binding sites by 80-90%. However, at HDL concentrations of 5-60 micrograms of protein/ml, this treatment does not significantly inhibit cholesterol efflux from hepatoma cells, and inhibits efflux from fibroblasts an average of about 15%. Over the same range of concentrations, nitration alters influx by amounts less than 30% in the two cell types. These effects on flux do not parallel the reduced affinity of nitrated HDL for specific cell-surface binding sites. In summary, the present results do not support the concept that cholesterol transfer is facilitated by the specific cell-surface binding of HDL, but are consistent with the aqueous diffusion model of cholesterol transfer between cells and lipoproteins.

Animals↗

Tissue specific hormonal regulation of the rat angiotensinogen gene expression.

Angiotensinogen is the precursor of the most potent pressor substance, angiotensin. Angiotensinogen levels are increased in some forms of human hypertension. Its levels are modulated by various factors including glucocorticoids, estrogens, and prostaglandins. We have recently reported the isolation of a human angiotensinogen cDNA clone and provided evidence for the presence of its mRNA in rat liver, brain, and heart. In this communication we report the effect of dexamethasone and estradiol on angiotensinogen mRNA levels in rat liver, brain, and heart. Our results indicate that angiotensinogen levels are increased to different extents in these three tissues as a result of glucocorticoid or estrogen administration.

Angiotensinogen↗

Simultaneous measurement of urinary and plasma norepinephrine, epinephrine, dopamine, dihydroxyphenylalanine, and dihydroxyphenylacetic acid by coupled-column high-performance liquid chromatography on C8 and C18 stationary phases.

This paper describes a simple and sensitive method for measuring norepinephrine, epinephrine, dopamine, dihydroxyphenylalanine, and dihydroxyphenylacetic acid in urine and plasma. This method involves a two-stage frontal-chromatographic clean-up, followed by coupled minibore high-performance liquid chromatography with electrochemical detection. The use of phenylboronate instead of alumina yields recoveries in the range of 80-90% for all the catecholamines, dihydroxyphenylalanine and dihydroxyphenylacetic acid without interferences. The interassay coefficient of variation for the measurement of these compounds was less than 12%.

3,4-Dihydroxyphenylacetic Acid↗

Radioenzymatic microassay for picogram quantities of serotonin or acetylserotonin in biological fluids and tissues.

This paper describes several modifications of the original radioenzymatic assay for serotonin which increase the sensitivity of the assay 20-fold as well as enhance its reliability. Using this method serotonin concentrations can be directly measured in biological examples without precleaning the sample. When compared to currently available methods this assay is specific and sensitive to approximately 1 pg of serotonin and can be used to measure serotonin levels in individual brain nuclei or microliter quantities of biological fluids. This assay can be easily adapted for the direct measurement of N-acetylserotonin. A large number of samples can be assayed in a single working day.

Acetylserotonin O-Methyltransferase↗

Plasma serotonin concentrations: validation of a sampling technique using long catheters.

Serotonin is released by activated platelets and may promote platelet aggregation and epicardial coronary artery constriction in animal models. Serotonin may have similar effects in humans and, thus may be a mediator of certain ischemic syndromes. However, the role of serotonin in human ischemic heart disease has not been studied. Since evaluation of transcardiac serotonin metabolism requires that blood samples be obtained through long catheters, it is possible that artifactual changes in serotonin concentration could occur because of platelet activation in the catheters themselves. Accordingly, to determine if serotonin could be measured through long catheters without artifactual changes, the authors obtained paired blood samples by gentle aspiration through a large bore steel needle and a 100-cm polyurethane catheter placed in the femoral vein of 13 patients. All samples were processed to obtain platelet-poor plasma and then analyzed by a sensitive radioenzymatic assay. Blood sampling through long catheters did not cause a systematic alteration in plasma serotonin concentration. Mean serotonin concentration from the femoral vein through a needle was 22.3 +/- 26.55 ng/ml (mean +/- standard deviation), and that obtained through a long catheter was 20.0 +/- 26.29 ng/ml (p = 0.34). The authors conclude that carefully obtaining blood samples through long catheters does not significantly alter the plasma serotonin concentration and thus the accurate measurement of transcardiac serotonin concentrations is possible using these methods.

Blood Platelets↗

Serotonin as a mediator of cyclic flow variations in stenosed canine coronary arteries.

The data obtained in this study demonstrate that the concentration of serotonin is markedly elevated (18- to 27-fold) at the site of a coronary arterial stenosis in open-chest, anesthetized dogs with cyclic flow variations. Cyclic flow variations in this experimental preparation were abolished by ketanserin, a 5-hydroxytryptamine antagonist, but serotonin concentration at the site of the coronary stenosis remained elevated. The intra-atrial administration of serotonin (0.16 to 1 mg/min) restored cyclic flow variations after they had been abolished by ketanserin. Taken together, these data suggest that serotonin may be one of the important mediators of cyclic flow variations in this experimental preparation.

Animals↗

Correlation of plasma serotonin changes with platelet aggregation in an in vivo dog model of spontaneous occlusive coronary thrombus formation.

The role of platelets in contributing to occlusive coronary artery thrombus formation remains unresolved. A large number of studies have utilized in vitro techniques to study platelet aggregation. This report describes a model of spontaneous in vivo thrombus formation which involves application of current in the left circumflex coronary artery of the dog. Changes in mean coronary blood flow velocity (50% above control) are used to predict the point at which current can be discontinued without interrupting the ongoing process of thrombus formation. Thrombus formation proceeds to total vessel occlusion within 62 +/- 18 minutes after discontinuation of current. Coronary sinus plasma serotonin concentrations are used as an in vivo index of platelet aggregation during thrombus formation. Plasma serotonin levels increased only slightly above baseline levels during initial thrombus formation. Coronary sinus serotonin levels rose markedly after cessation of current, reaching a peak just prior to total vessel occlusion. The marked increase in serotonin concentration observed in the latter stages of thrombus formation strongly suggests that platelet aggregation is a significant factor in the evolution of an occlusive coronary thrombus.

Adenosine Diphosphate↗

Digitoxin therapy partially restores cardiac catecholamine and brain serotonin metabolism in congestive heart failure.

The effect of therapeutic doses of digitalis in modifying neural activity has been the subject of considerable controversy. In earlier studies we reported an increase both in serotonergic activity in the posterior hypothalamus and pons-medulla and in cardiac sympathetic tone in the failing cardiomyopathic hamster. In this study we examine the effects of doses of digitoxin, known to be therapeutic for hamster heart failure, on monoamine neurotransmitter metabolism in the brain and heart during the cardiomyopathy. Both digitoxin and ASI-222, a polar amino-glycoside which does not cross the blood-brain barrier, given either acutely (6 mg/kg ip) or chronically (2 mg/kg/day ip for 10 days), normalized the failure-induced increase in serotonin turnover in the pons-medulla but had no effect on the changes in the posterior hypothalamus. Digitoxin therapy also reduced cardiac and adrenal sympathetic activity partially restoring cardiac catecholamine stores. In order to more clearly define the pathways involved we measured serotonin (microgram/g protein) in 18 brain nuclei after 10 days of digitoxin or vehicle treatment. Heart failure was associated with an increase in serotonin in five nuclei: the mammillary; bodies, ventromedial, periventricular and paraventricular nuclei of the hypothalamus, and the centralis superior nucleus of the raphe. Digitoxin therapy completely normalized the changes in the centralis superior and ventromedialis nuclei; neither congestive heart failure nor digitoxin affected serotonin levels in other nuclei. We conclude that there is an increase in activity in specific brain serotonergic nuclei in congestive heart failure. Digitalis reduces cardiac sympathetic tone and restores the changes in two of these nuclei: the ventromedial and the centralis superior.+2

Animals↗

Radioenzymatic microassay for simultaneous estimations of dopamine, norepinephrine, and epinephrine in plasma, urine, and tissues.

With this sensitive and specific radioenzymatic assay picogram quantities of norepinephrine, epinephrine, and dopamine can be simultaneously determined directly in plasma, urine, and tissue. We discuss in detail the steps that are critical for success of the assay, as well as the rationale behind the use of specific reagents. The assay is appropriate for use in any routine clinical chemistry laboratory. This assay is sensitive to approximately 1 pg of catecholamine. As compared with a commercially available method, this assay is significantly more economical and less time consuming.

Animals↗

Determination of urinary and plasma dihydroxyphenylalanine by coupled-column high-performance liquid chromatography with C8 and C18 stationary phases.

This paper describes a rapid, simple and sensitive method for measurement of L-dihydroxyphenylalanine (DOPA) in biological fluids. The method uses a two step frontal-chromatographic clean-up, followed by coupled minibore HPLC with electrochemical detection. The use of phenylboronate removes the peaks that interfere with the detection of DOPA. Inclusion of [14C]DOPA corrects for any variability in recovery.

Adult↗

cis-Polyisoprene Synthesis in Guayule Plants (Parthenium argentatum Gray) Exposed to Low, Nonfreezing Temperatures.

Exposure of guayule plants (Parthenium argentatum Gray) to 6 months of a night temperature of 7 degrees C results in a 2-fold stimulation of cis-polyisoprene (rubber) formation over that of control plants exposed to 21 to 24 degrees C night temperature. Control and cold-treated plants contained 2.18% and 5.69% rubber, respectively. Examination of the stem apices by transmission electron microscopy showed extensive formation of rubber particles in the cold-treated plants compared to the control plants. The rubber particles in guayule are formed in the cytoplasm and fuse to form large globular deposits. The surface area of the rubber particles and globules range from 4 x 10(-6) to 2.9 x 10(-3) square micrometers. The deposition of rubber in the cytoplasm of the cortical parenchyma cells differs from rubber deposition in the vacuoles of laticifers of Asclepias syriaca. Electron micrographs of stem cortical parenchyma in control plants show mature cells with large central vacuoles, thin layers of parietal cytoplasm, and smaller numbers of rubber particles. Radioactive acetate and mevalonate are incorporated into rubber at a faster rate in stem slices from cold-treated plants compared to slices from control plants. A faster rate of these reactions may account for the increase in rubber synthesis in the cold-treated plants.

Journal Article↗

Isopentenyl Pyrophosphate cis-1,4-Polyisoprenyl Transferase from Guayule (Parthenium argentatum Gray).

Electron micrographs of the mesophyll cells of guayule Parthenium argentatum Gray leaves show deposits of cis-polyisoprene (rubber) in the cytoplasm in the vicinity of mitochondria and chloroplasts and demonstrate that the rubber-synthesizing enzymes are present in guayule leaves. The terminal step in the synthesis of cis-polyisoprene from isopentenyl pyrophosphate (IPP) catalyzed by isopentenyl pyrophosphate cis-1,4-polyisoprenyl transferase has been demonstrated in crude leaf extracts by the enzymic incorporation of [(14)C]isopentenyl pyrophosphate into the polymer and the recovery of [(14)C]levulinic acid following ozonolysis. The rubber transferase activity in the crude extracts of guayule leaves was 5.8 nanomoles isopentenyl pyrophosphate incorporated per milligram protein per hour. This is the first description of the rubber transferase from a nonlaticiferous plant.The specific activity (in units of nanomoles IPP converted per milligram protein per hour) of the partially purified enzyme following chromatography on diethylaminoethyl-cellulose columns was 41.7 units and contained 0.29 units of IPP isomerase activity and 0.08 units of farnesyl pyrophosphate synthetase activity. The rubber transferase requires reduced glutathione and Mg(2+) for maximal activity. There was no incorporation of IPP into cis-1,4-polyisoprene in the absence of rubber particles as primer, and Langmuir isotherm plots showed that the specific activity of the enzyme was proportional to the concentration of the enzyme on the surface of the rubber particles. For a given rubber particle distribution, enzyme activity was proportional to time, IPP concentration, and rubber concentration. The addition of 0.4 millimolar dimethylallyl pyrophosphate to the rubber transferase reaction resulted in a 2-fold increase in the incorporation of IPP into rubber. A comparison was made of the relative activities of rubber transferase in different species of Parthenium, Ficus, and Euphorbia.

Journal Article↗

The influence of oral tyrosine and tryptophan feeding on plasma catecholamines in man.

We investigated the effects of oral tyrosine (7.5 g/day) and oral tryptophan (3 g/day) feeding with regular meals in normal male volunteers using a double-blind cross-over design with a "run in" period for acclimatization. Oral tyrosine feeding significantly decreased both free and conjugated plasma norepinephrine concentrations while oral tryptophan feeding did not have such an effect. Since alpha adrenergic stimulation in certain areas of the CNS has been shown to decrease peripheral sympathetic tone, we postulate that dietary tyrosine supplementation in man causes an increase in brain catecholaminergic activity which in turn leads to a decrease in peripheral sympathetic activity as evidenced by the decrease in plasma catecholamines.

Adult↗

Development and Characterization of Ribulose-1,5-bisphosphate Carboxylase : Evidence Indicating a Lack of Carboxylase Function in CO(2) Fixation in Endosperm of Germinating Castor Bean Seedlings.

Ribulose-1,5-bisphosphate carboxylase activity was found in endosperm of germinating castor bean seed Ricinus communis and was localized in proplastids. The endosperm carboxylase has been extensively purified and is composed of two different subunits. The molecular weights of the native carboxylase and its subunits were 560,000, 55,000, and 15,000 daltons, respectively. The Michaelis-Menten constants, K(m), for the endosperm carboxylase with respect to ribulose 1,5-bisphosphate, bicarbonate, CO(2), and magnesium in millimolar are 0.54, 13.60, 0.92, and 0.57, respectively. The endosperm carboxylase was activated by Mg(2+) and HCO(3) (-). The preincubation of the carboxylase with 1 millimolar HCO(3) (-) and 5 millimolar MgCl(2) resulted in activation by low and inhibition by high concentrations of 6-phosphogluconate.In studies of dark (14)CO(2) fixation by endosperm slices, [(14)C]malate and [(14)C]citrate were the predominantly labeled products after 30 seconds of exposure of the tissue to H(14)CO(3) (-). In pulse-chase experiments, 87% of the label is malate, and citrate was transferred to sugars after a 60-minute chase with a small amount of the label appearing in the incubation medium as (14)CO(2). The minimal incorporation of the label from (14)CO(2) into phosphoglyceric acid indicated a lack of the endosperm ribulose-1,5-bisphosphate carboxylase participation in the endosperm's CO(2) fixation system. The activities of key Calvin cycle enzymes were examined in the endosperms and cotyledons of dark-grown castor bean seedlings. Many of these autotrophic enzymes develop in the dark in these tissues. The synthesis of ribulose-1,5-bisphosphate carboxylase in the nonphotosynthetic endosperms is not repressed in the dark, and high levels of enzymic activity appear with germination. All of the Calvin cycle enzymes are present in the castor bean endosperm except NADP-linked glyceraldehyde 3-P dehydrogenase, and the absence of this dehydrogenase probably prevents the functioning of these series of reactions in dark CO(2) fixation.

Journal Article↗

Effect of 2-(3,4-Dichlorophenoxy)-triethylamine on the Synthensis of cis-Polyisoprene in Guayule Plants (Parthenium argentatum Gray).

The application of 2-(3,4-dichlorophenoxy)-triethylamine to guayule (Parthenium argentatum Gray var 593) plants results in a 2-fold stimulation of rubber synthesis and a 1.5- to 3-fold increase in mevalonic acid kinase, isopentenyl pyrophosphate isomerase, and rubber transferase. The increase in these enzymic activities accounts in part for the chemical induction of rubber synthesis.

Journal Article↗

Biosynthesis of Starch in Proplastids of Germinating Ricinus communis Endosperm Tissue.

Electron photomicrographs of endosperm tissue from germinating seed of Ricinus communis L. cv. Hale show proplastids which contain prominent starch grains. The content of starch in endosperm tissue increased from 500 micrograms per seed, in imbibed seed, to 1,100 micrograms per seed in 5-day-old seedlings. The maximum net rate of starch deposition was 1.1 nanomoles glucose incorporated per minute per seed. About 200 micrograms of starch remained in the endosperm 9 days after imbibition. Starch content followed the same developmental pattern as the content of sucrose, free reducing sugars, and other metabolic processes found in this tissue. Two key enzymes of starch synthesis, adenosine diphosphoglucose (ADPG) pyrophosphorylase and ADPG-starch glucosyl transferase (starch synthetase) exhibited maximum activities at 4 and 5 days after germination, respectively. The maximum activity of ADPG pyrophosphorylase was 8.17 nanomoles ADPG formed per minute per seed, whereas starch synthetase exhibited an activity of 125 nanomoles glucose incorporated per minute per seed. These levels of enzyme activity are sufficient to account for the starch synthesis observed. Other enzymes which may be involved in starch synthesis include 3-phosphoglycerate kinase which showed an activity of 8.76 units per seed, triose-P isomerase (2.56 units per seed), fructose-1,6-bisphosphate aldolase (0.99 units per seed), fructose-1,6-bisphosphatase (0.23 units per seed), phosphoglucose isomerase (12.6 units per seed), and phosphoglucomutase (9.72 units per seed). The activities of these enzymes were similar to previously reported values.Starch synthetase was found in association with the fraction containing proplastids isolated from endosperm tissue. Of the total starch synthetase activity in the endosperm, 38% was particulate. Forty-four% of the total particulate activity of starch synthetase placed on sucrose gradients was associated with the band containing proplastids. The proplastids contained 98% of the ribulose 1,5-bisphosphate carboxylase carboxylase activity placed on the gradient.

Journal Article↗