PubMed HealthSearch

SEARCH · PubMed Health

Results for “Cation Exchange Resins”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Analytical separation of amino acids on a cation-exchange resin cross-linked with m-divinylbenzene.

The elution bands of acidic and neutral amino acids of protein hydrolysates, emerging from the column of a cation-exchange resin cross-linked with pure m-divinylbenzene, are narrower than those from a resin prepared from styrene and technical divinylbenzene. As a result of these narrower bands, a more complete resolution of the critical pairs threonine-serine, glycine-alanine and tyrosine-phenylalanine is obtained. The most probable reason for the narrower elution peaks is the more rapid diffusion of the exchanged components through the bulk of the resin as a result of a more regular arrangement of cross-linkages in the cation-exchange resin prepared from m-divinylbenzene.

Amino Acids

The use of calcium chelating agents and prostaglandin E to eliminate platelet and white blood cell losses resulting from hemoperfusion through uncoated charcoal, albumin-agarose gel, and neutral and cation exchange resins.

Hemoperfusion through adsorbents such as charcoal, cation exchange (e.g., AG 50W-X8) and uncharged (e.g., XAD-2) resins, and albumin-agarose gel (AAG) has been proposed for use in patients with hepatic failure. However, the loss of white blood cells and, particularly, platelets caused by each of these adsorbents remains a major deterrent to their clinical use. In vitro studies demonstrate that addition of citrate, ethylenediamine tetraacetate (EDTA), or oxalate to heparinized human blood eliminated this loss of formed blood elements during hemoperfusion. The improvement in postperfusion platelet counts (per cent of preperfusion values) produced by citrate were XAD-2, 13 leads to 95 per cent; AG 50W-X8, 10 leads to 94 per cent; AAG, 17 leads to 94 per cent; and charcoal, 44 leads to 96 per cent. Prostaglandin E1 in high doses (5 mug/ml.) markedly reduced platelet losses. Lower doses were less uniformly effective. Three young rhesus monkeys were hemoperfused for 160 minutes with columns containing AAG, XAD-2, and charcoal. During the first 80 minutes, citrate and calcium were infused into the column inflow and outflow lines respectively. For all three adsorbents, average platelet counts in the monkeys (115 per cent) and column effluent (95 per cent) were unchanged from preperfusion control values during the first 80 minutes but fell promptly to 13 and 7 per cent, respectively, after the citrate infusion was stopped. Each of the monkeys tolerated the procedure without ill effects. Use of a system analogous to that described here may facilitate clinical application of the technique of hemoperfusion through a variety of adsorbents.

Albumins

Simple method for the simultaneous determination of noradrenaline, dopamine and serotonin by stepwise elution from a short column of weak cation-exchange resin.

A simple method for the simultaneous determination of noradrenaline, dopamine and serotonin using a short column of Amberlite CG-50 is described. Noradrenaline and dopamine were eluted from the column with phosphate buffers containing 1.5 and 4.0% boric acid, respectively, and then serotonin was eluted with 1.0 N HCl. Catecholamines were determined by a modification of the ethylenediamine condensation method using potassium ferricyanide as oxidant and isobutanol for extraction of the fluorophores. Serotonin was measured by the acidic o-phthalaldehyde method. The method was applied to the simultaneous determination of noradrenaline, dopamine and serotonin in discrete regions of rat brain.

Animals

Chromatography of xanthines on ion-exchange resins.

Short columns of a 4% crosslinked cation-exchange resin gave good chromatography of xanthines, including caffeine, theophylline and hypoxanthine, and related polar aromatic compounds. Elution volumes and sequences can be modified by changing pH, solvent composition and resin counter-ion. A macroporous cation-exchange resin showed exaggerated counter-ion effects. A method is described for determining caffeine and theophylline in blood serum, using the 4% crosslinked resin with aqueous sodium phosphate eluent of pH 7.5; the temperature was 65 degrees. Detection limits are 10 ng and less.

Caffeine

Simultaneous canine tracheal transport of different particles.

We describe a method to study simultaneously the transport of 2 different markers in the canine trachea. In our studies, we found that choice of radioisotopic label and variation in marker size from 3 to 180 micrometer did not affect the transport rate of basic anion exchange resin particles. Furthermore, anion exchange and acidic cation exchange particles of the same size had similar tracheal transport rates. This method may help to determine the influence of the physicochemical properties of markers on mucous transport.

Animals

Effect of temperature and an ion-exchange resin on cation diffusion through silicone polymer tubing.

Permeation of cations through silicone rubber tubing was measured, and the effect of an ion-exchange resin on the cation diffusion was determined. Silicone rubber has been used as a biomedical polymer and shows a very low solubility to ionizable species. Correlations between the calculated diffusion coefficients, with and without the resin, depended on the charge and number of waters of hydration for each cation. These increases ranged from 1.11 for potassium to 3.06 for iron, multiplied by the diffusion coefficient as a result of the resin. Solubilities of each cation in the polymer were temperature dependent. Activation energies were calculated for each cation by measuring the increased permeation with increasing temperature, with and without the resin. Decreasing magnitudes of activation energies ranged from 0.91 for sodium to 0.57 for iron when the resin was present. Correlations were established between the measured activation energies and reported free energy change for the hydration of each cation.

Anion Exchange Resins

In vitro adsorption of possible aetiological factors of hepatic encephalopathy.

Four different adsorbents (activated charcoal, XAD-4, a strong base anion and a strong acid cation-exchange resin) were tested in vitro for their capacity to remove substances that may be important in the development of hepatic encephalopathy. Separate columns packed with one of these adsorbents were perfused for three hours with a reconstituted plasma solution containing simultaneously high concentrations of amino-acids, ammoniumchloride, short-chain fatty acids, octopamine and bile salts. Effective removal of all these substances was only obtained when either activated charcoal, or XAD-4, were combined with the cation-exchange resin. Possible implications for the treatment of hepatic coma are discussed.

Absorption

Evaluation of the Du Pont aca ammonia procedure.

We evaluated the determination of ammonia used in the Du Pont Automatic Clinical Analyzer (aca). Correlation studies were done with a manual method, based on the same enzymatic principles as the aca and with a method involving a cation-exchange resin, followed by the Berthelot color reaction. In either case, the results agreed well with the results found with the aca. For the aca the mean analytical recovery of ammonia in plasma samples was 104%. Within-run and day-to-day precision had coefficients of variation of 6% for normal values and 1 and 2% for above-normal values. The linearity, tested with primary standards and plasma samples, was good up to 1000 mumol of NH3 per liter.

Ammonia

Chromatographic behaviour of alkaloids on thin layers of anion and cation exhangers. I. AG 1-X4 and cellex D.

The chromatographic behaviour of 48 alkaloids has been studied on Bio-Rad AG 1-X4, Cellex D and microcrystalline cellulose, eluting with solutions of different pH but constant ionic strength (0.5). Many interesting separations were effected on both AG 1-X4 and Cellex D layers. The influence of pH on the chromatographic behaviour of alkaloids has been quantitatively studied and an equation was used that expresses the behaviour of the alkaloids on both AG 1-X4 (AcO-) and microcrystalling cellulose layers. The nonapplicability of this equation to Cellex D layers is discussed.

Alkaloids

Multiple forms of acid phosphatase activity in Gaucher's disease.

Although the primary genetic defect in all individuals with Gaucher's disease is a deficiency in glucocerebrosidase activity, the finding of marked elevations in splenic and serum acid phosphatase activity is almost as consistent a finding. Gaucher spleen and serum contain at least two forms of acid phosphatase that can be readily separated by chromatography on columns containing the cation exchange resin Sulphopropyl Sephadex. The major species of acid phosphatase (designated SP-I) contained in Triton X-100 (1% v/v) extracts of Gaucher spleen accounts for 65%--95% of the total activity and has the following properties: (1) it does not bind to the cation exchange column; (2) it exhibitis a pH optimum of 4.5--5.0; (3) it is inhibited by sodium fluoride (15 mM), L(+)-tartaric acid (20 mM), and beta-mercaptoethanol (2.1 M), and (4) it is resistant to inhibition by sodium dithionite (10 mM). The minor acid phosphatase activity (designated SP-II) present in extracts of Gaucher spleen has properties similar to those of the major species of acid phosphatase activity contained in serum from patients with Gaucher's disease: (1) it binds firmly to cation exchange columns (eluted by 0.5 M sodium chloride); (2) it exhibits a pH optimum of 5.0--6.0; (3) it is inhibited by sodium fluoride and sodium dithionite; and (4) it is resistant to inhibition by beta-mercaptoethanol (2.1 M) and L(+)-tartaric acid (20 mM). In addition, a second form of acid phosphatase that is tartrate resistant was found to be elevated in Gaucher serum. This form of serum acid phosphatase did not bind to Sulphopropyl Sephadex, was found to be significantly resistant to beta-mercaptoethanol (2.1 M), and was only partially inhibited by sodium dithionite (10 mM). The findings reported here indicate that at least three distinct forms of acid phosphatase activity are elevated in Gaucher's disease. Furthermore, the minor acid phosphatase activity contained in spleen homogenates has properties very similar to those of the major acid phosphatase activity observed to be present in serum of patients with Gaucher's disease. These data indicate that simple spleen spillage cannot account for the increased levels of serum acid phosphatase in patients with Gaucher's disease.

Acid Phosphatase

Metabolism of N-nitrosohexamethyleneimine to give 1,6-hexanediol bound to rat liver nucleic acids.

Rats were gavaged with the liver carcinogen H-nitrosohexamethyleneimine labeled with 3H or 14C and killed 16 hours later. The liver RNA and DNA were isolated and hydrolyzed with 1 M HCl at 100 degrees C. Chromatography of the 3H-labelled RNA hydrolysate on a cation exchange resin (NH4+ form), with water elution, separated five radioactive peaks, with peak "E" containing 27% of the bound 3H. There were no radioactive peaks in the 7-substituted guanine region. Hydrolysis of the 3H-labeled DNA gave a similar profile, but E contained only 5% of the 3H. The major component of E was identified as 1,6-hexanediol by its behavior and/or that of its benzoate derivative on cation exchange, anion exchange, thin-layer and gas-liquid chromatography, and by recrystallization of a mixture of the E and diol benzoates to constant specific radioactivity.

Animals