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The use of gas chromatography and gas chromatography-mass spectrometry for the characterization of permethylated oligosaccharides with molecular mass up to 2300.

Gas chromatography and gas chromatography-mass spectrometry were adapted for the analysis of large permethylated oligosaccharides of different types. Permethylated isomaltooligosaccharides with up to 11 sugar residues and a mass of 2291 Da and two branched blood group H-type decasaccharides derived from the corresponding glycosphingolipids with masses of 2150 Da were successfully analyzed. The capillary columns used have extremely good resolution exemplified by the separation of the two decasaccharides which only differed by one internal linkage position and by the separation of four isomeric tetrasaccharides. The combined information of retention times and mass spectra gave detailed information of 22 neutral oligosaccharides from porcine intestinal mucin and the approach thus allow quick screening of O-linked-type glycans. The procedure for permethylation of oligosaccharides using solid NaOH has been investigated and adapted for structures having a glucose alditol as in reduced oligosaccharides derived from milk and glycosphingolipids.

Animals↗

Determination of tissue folate composition by affinity chromatography followed by high-pressure ion pair liquid chromatography.

A recent report from this laboratory described the use of affinity chromatography for the isolation of pure folates from tissue extracts (J. Selhub, B. Darcy-Vrillon, and D. Fell (1988) Anal. Biochem. 168, 247-251). The present study was undertaken to develop chromatographic procedures for quantitative analysis of the individual folates in the affinity-purified mixture. Methods were devised whereby mixtures containing pteroylglutamates (PteGlu1-7) were batch reduced to the dihydro, H2PteGlu1-7, and tetrahydro, H4Pte-Glu1-7, forms. The 5-methylH4PteGlu1-7 and the 10-formylH4PteGlu1-7 series were prepared from H4Pte-Glu1-7. These compounds were used to calibrate a liquid chromatographic system for the resolution of folate mixtures. This system included reverse-phase ion pair chromatography and a diode array detector. A mixture containing oxidized and reduced PteGlu1-7, a total of 35 derivatives, was separated into seven clusters arranged in an order of increasing number of glutamate residues. Each cluster was represented by two or more peaks which were due to folates that differed in the pteridine ring structure but had the same number of glutamate residues. In clusters containing mono and diglutamyl derivatives the 10-formyltetrahydro-, the tetrahydro-, and the dihydrofolate forms appeared as separate peaks while those representing folic acid and 5-methyl-tetrahydrofolate derivatives eluted in coinciding peaks. This hierarchy was maintained in the following clusters except for increasing tendency of the former three forms of folates to elute in the same peak. The number of glutamate residues of any eluting folate can be determined on the basis of retention time in relation to those of the clusters. The pteridine ring structure of that same folate can be determined on the basis of its elution position within that cluster and spectral characteristics determined by the diode array detection system. If that position is common for more than one derivative then identification is based on differential spectral properties. Using uv absorption signals at 280 nm to determine indiscriminate folate activity, absorption signals at 350 nm are used to identify folic acid and dihydrofolate derivatives and signals at 258 nm are used to identify 10-formyltetrahydrofolate derivatives. These principles were incorporated into mathematic expressions which were used for quantitative resolution of simulated mixtures containing oxidized and reduced PteGlu5 and for the analysis of folate composition in rat liver, human milk, and cows milk.

Animals↗

Quantitative affinity chromatography: further developments in the analysis of experimental results from column chromatography and partition equilibrium studies.

The problem of allowance for the effects of gel partitioning of the solute in quantitative affinity chromatography has been reexamined, and new expressions have been derived for the description of results obtained by frontal chromatography. In addition, the theoretical expressions have been rearranged into forms suitable for determination of the relevant interaction parameters by simple graphical analysis, a procedure illustrated with results obtained in a partition equilibrium study of the NADH-dependent elution of rabbit muscle lactate dehydrogenase from Blue Sepharose.

Animals↗

TRH immunoreactivity in rat brain regions, spinal cord and pancreas: validation by high-pressure liquid chromatography and thin-layer chromatography.

Thyrotropin-releasing hormone (TRH) immunoreactivity in rat tissue was assayed using a new reversed-phase, ion-pair, high-pressure liquid chromatography (HPLC) method for separating TRH from its analogs. Virtually all of the TRH immunoreactivity in hypothalamus, brain stem, preoptic area, septum, striatum, frontal cortex, spinal cord and pancreas had chromatographic characteristics corresponding to those of synthetic TRH. When analyzed by two additional, previously described HPLC methods for neuropeptides, all TRH immunoreactivity in rat brain, spinal cord and pancreas also behaved identically to that of authentic TRH. Similarly, in two different thin-layer chromatography systems, all TRH immunoreactivity migrated with that of synthetic TRH. We conclude that TRH-immunoreactive material in rat brain, spinal cord and pancreas really is TRH. The perhaps surprising specificity of the TRH immunoassay may occur because antibodies directed against TRH (pyroglutamyl-histidyl-prolineamide) recognize two atypical amino acids in close proximity.

Animals↗

A comparison of serum phenytoin determination by the substrate-labeled fluorescent immunoassay with gas chromatography, liquid chromatography, radioimmunoassay and "EMIT".

Patients' sera were analyzed for phenytoin by the Substrate-Labeled Fluorescent Immunoassay (SLFIA), gas chromatography (GC), liquid chromatography (LC), Radioimmunoassay (RIA) and EMIT and the results were compared. The EMIT assay was performed using a "PACER Analyzer". All assay results compared favorably. The correlation coefficients were: SLFIA vs GC, 0.995 (n = 45); SLFIA vs. LC, 0.993 (n = 37); SLFIA vs. EMIT, 0.965 (n = 67); SLFIA vs. RIA, 0.977 (n = 34). These results show that phenytoin levels determined by the SLFIA compare well with those obtained by the other four assay techniques.

Chromatography, Gas↗

Determination of glucitollysine for the quantitation of non-enzymatic glucosylation by ion exchange chromatography and reverse phase liquid chromatography.

A specific and sensitive method for the quantitative determination of the stable, reduced glucose-lysine adduct, glucitollysine (GL), in plasma protein samples is described. The method uses standard amino acid ion exchange chromatography followed by reverse phase high performance liquid chromatography after derivatisation of GL to a fluorescent product. Moreover, GL was characterised and identified in plasma samples by means of mass spectroscopy. GL measured in plasma samples of eleven type I diabetics and two healthy controls showed a significant linear correlation to concomitantly determined haemoglobin AI and glucosylated plasma proteins, but did not correlate with plasma glucose levels. This method allows the estimation of non-enzymatic glucosylation in biological samples with a high degree of specificity and sensitivity down to the low nanogram range.

Adolescent↗

Assessment of the biotransformation of the cardiotonic agent piroximone by high-performance liquid chromatography and gas chromatography-mass spectrometry.

14C-labelled piroximone was administered to rats at a dose of 10 mg/kg body weight. Of the total radioactivity administered, 74.9 +/- 7.9% (n = 4) and 87.8 +/- 1.7 (n = 3) were recovered in the 8-h urine collection after oral and intravenous administration, respectively. Two major metabolites, M1 and M2, were detected in methanol extracts and accounted for 7.1 +/- 1.2% (n = 4) (M1) and 4.3 +/- 0.4% (n = 4) (M2) in response to oral administration and 5.7 +/- 0.8% (n = 3) (M1) and 6.7 +/- 2.0% (n = 3) (M2) in response to intravenous administration. In addition, three minor metabolites were detected; M3 and M4 in the 8-h urine collection and M5 in the 12-h urine collection. Separation of piroximone and metabolites was achieved by high-performance liquid chromatography on a C18 column by gradient elution with 0.05 M ammonium acetate (pH 7) using 0-60% methanol over 20 min at a flow-rate of 1 ml/min, followed by isocratic elution with 60% methanol for 10 min. M1 and M2 were isolated by fraction collection following the addition of 1 mM tetrabutylammonium acetate in the mobile phase. Between each injection a column re-equilibration time of 45 min was necessary to achieve optimum collection of M1 and M2 fractions. Gas chromatography-mass spectrometry of M1 provided evidence for a molecular structure consistent with isonicotinic acid methyl ester. Corroborative evidence for this identification was obtained by comparison with a synthetic standard. Isonicotinic acid is assumed to be the actual metabolite while esterification with methanol had occurred as a result of the work-up procedure.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Analysis of sterol esters from alga and yeast by high-performance liquid chromatography and capillary gas chromatography-mass spectrometry with chemical ionization.

Sterol esters from the green alga Chlorella kessleri and the yeast Saccharomyces cerevisiae were analysed by tandem high-performance liquid chromatography (HPLC-HPLC). Non-polar lipids were separated by normal-phase HPLC into individual classes and the fraction of sterol esters was subsequently separated by reversed-phase HPLC into intact molecular species. Further separation and identification of the fractions after HPLC were effected by capillary gas chromatography-mass spectrometry (cGC-MS) with positive and/or negative chemical ionization. A technique consisting of direct injection of the sample after its passage through the detector into the on-column injector of the gas chromatograph was used to transfer the sample from HPLC-HPLC to cGC-MS. By means of this method it was possible to demonstrate more than 30 sterols in both the alga and the yeast, and more than 20 new sterol esters were detected.

Chlorophyta↗

Simultaneous determination of amounts of major phospholipid classes and their fatty acid composition in erythrocyte membranes using high-performance liquid chromatography and gas chromatography.

A method for the simultaneous determination of amounts of major phospholipid classes and their fatty acid composition in erythrocyte membranes is described. The method consists in extraction of phospholipids from erythrocyte membranes, separation of phospholipid classes by high-performance liquid chromatography, methylation of phospholipids and determination of phospholipid-bound fatty acids by capillary gas chromatography. The amounts of phospholipid classes are calculated from the total weight of phospholipid-bound fatty acids and their average molecular weights. The method was applied to erythrocytes from rats. The results show that the method is reproducible and is useful for the determination of amounts of phospholipid classes and their fatty acid composition in small blood samples.

Animals↗

Complementary use of counter-current chromatography and preparative reversed-phase high-performance liquid chromatography in the separation of a synthetic mixture of brominated tetrachlorofluoresceins.

A synthetically prepared mixture of brominated 4,5,6,7-tetrachlorofloresceins was separated by a combination of preparative reversed-phase high-performance liquid chromatography and high-speed counter-current chromatography. Two new lower-brominated subsidiary colors of D&C Red Nos. 27 and 28 (phloxine B), 4',5'-dibromo-4, 5,6,7-tetrachlorofluorescein and 2',4',5'-tribromo-4,5,6, 7-tetrachlorofluorescein, were isolated and characterized by 1H NMR and chemical ionization mass spectrometry.

Chromatography, High Pressure Liquid↗

Screening of beta-blockers in human serum by ion-pair chromatography and their identification as methyl or acetyl derivatives by gas chromatography-mass spectrometry.

A simultaneous screening method for atenolol, acebutolol, metoprolol, oxprenolol, alprenolol and propranolol by ion-pair chromatography with a column-switching technique was developed. The serum samples were purified using either liquid-liquid extraction or solid-phase extraction methods. The pretreatment of the samples consisted of hydrolysis and protein precipitation. The drug separation was on either octadecylsilica or polymer-based alkyl column material. Binary eluent mixtures containing methanol and a buffer solution with a quaternary ammonium salt as an ion-pair former were used. Detection of the compounds in liquid chromatographic analysis was based on ultraviolet spectra. The effects of methanol, two buffers and the ion-pair former on the retention of the compounds were studied. The determination limits ranged from nanograms to micrograms in the ion-pair chromatographic method, depending on the drug studied. Identification was based on the mass spectra or, if necessary, on selected-ion monitoring spectra of either the methylated or the acetylated compounds obtained by means of gas chromatography-electron impact or negative chemical ionization mass spectrometry. The detection limits for the identified compounds were in the picogram range. The matrix effect was strong, and this resulted in determination limits in the nanogram range with the scan method.

Adrenergic beta-Antagonists↗

Simultaneous analysis of 25 pesticides in crops using gas chromatography and their identification by gas chromatography-mass spectrometry.

The simultaneous analysis of 25 pesticides in soy beans and rices was performed by gas chromatography with dual electron-capture detection and nitrogen-phosphorus detection. The pesticides were extracted from the samples with solvent and the Bio-Beads S-X3 clean-up procedure was used. Recovery studies were performed at the 1-ppm level of pesticides added to each crop. Their recoveries ranged between 83 and 105% with coefficient of variations of 0.5-8.2%. The gas chromatographic properties of the 25 pesticides were also investigated. Conformation analysis was achieved by the retention time and characteristic fragment ions using the technique of gas chromatography-mass spectrometry-selected-ion monitoring.

Chromatography, Gas↗

High-performance liquid chromatography versus solid-phase extraction for post-derivatization cleanup prior to gas chromatography-electron-capture negative-ion mass spectrometry of N1,N3-bis-(pentafluorobenzyl)-N7- (2-[pentafluorobenzyloxy]ethyl)xanthine, a product derived from an ethylene oxide DNA adduct.

N7-(2-Hydroxyethyl)xanthine (N7-HEX), as a standard, has been measured at the low picomole level by the following sequence of steps: (1) derivatization with pentafluorobenzyl bromide; (2) post-derivatization sample cleanup by reversed-phase high-performance liquid chromatography (HPLC) or silica solid-phase extraction; and (3) separation/detection by gas chromatography electron-capture negative-ion mass spectrometry (GC-ECNI-MS). The average yield of product from the two sample cleanup procedures applied to 95 pg (0.48 pmol) of N7-HEX was comparable: 60% for HPLC; 56% for solid-phase extraction. The reaction blanks (0 pg N7-HEX) showed an interfering GC-ECNI-MS peak after HPLC cleanup. This problem was not encountered with solid-phase extraction, which, along with its greater convenience, made it the preferred technique for post-derivatization sample cleanup.

Chromatography, High Pressure Liquid↗

Peptide mapping using combinations of size-exclusion chromatography, reversed-phase chromatography and capillary electrophoresis.

Recombinant extracellular superoxide dismutase was proteolytically degraded by trypsin and the digest was thereafter separated using three different separation techniques. The size differences of the obtained fragments were exploited by size-exclusion chromatography (SEC) on a highly efficient column for peptide separation. Collected fractions representing different size groups of peptides were then separated on the basis of hydrophobicity on reversed-phase liquid chromatography (RPLC). This led to simplified RPLC-chromatograms where collected peaks were considerably more pure than if the digest was separated direct on RPLC and the identity of eluted peaks could easily be determined by amino acid analysis. Finally the digest was run on capillary electrophoresis for separation based on charge differences. For the identification of the different peaks in the electropherogram, the total digest was spiked with known peptides purified by the two other separation techniques. This technique proved to be very powerful for peak identification in an electropherogram from a digest composed of many fragments eluting closely together.

Amino Acid Sequence↗

Determination of amino acids in the foods by reversed-phase high-performance liquid chromatography with a new precolumn derivative, butylthiocarbamyl amino acid, compared to the conventional phenylthiocarbamyl derivatives and ion-exchange chromatography.

A new derivatizing reagent, butylisothiocyanate (BITC), reacts quantitatively with the 22 standard amino acids and the amino acids in the acid hydrolysate of food and the protein standard, bovine serum albumin (BSA), at 40 degrees C for 30 min to yield butylthiocarbamyl (BTC) amino acids. The sensitivity of BTC-amino acid was similar to phenylthiocarbamyl (PTC) amino acid. The detection limit in both derivatives was about 3.9 pmol at 0.05 AUFS that showed a stable baseline for the quantitative determination. Analysis of the results obtained with BSA and food samples as BTC derivatives showed good agreement with those determined as PTC derivatives, ion-exchange chromatography and data presented in the literatures, except for a few amino acids. Especially the values compared to those of ion-exchange chromatography were very close, except for histidine. The advantage of the BITC reagent over the phenylisothiocyanate was that it had high volatility, so the excess reagent and by-products were removed in about 10 min, compared to about 1 h in the PITC reagent, with a common aspirator. In the BTC derivatives, cystine and cysteine were determined separately but in the PTC derivatives they were resolved into a single peak.

Amino Acids↗

Determination of individual porphyrins in rodent urine using high-performance liquid chromatography following clean-up by anion-exchange chromatography.

We describe a method for the rapid clean-up of rodent urine samples prior to the analysis of porphyrin carboxylic acids by reversed-phase high-performance liquid chromatography (HPLC) with fluorescence detection. A simple pretreatment step using chromatography on a Dowex 1X8 anion-exchange resin effectively removes fluorescent substances that are present in rodent urine and would otherwise interfere with the detection and quantitation of urinary porphyrins by HPLC. Recovery of porphyrins with four to eight carboxyl groups (coproporphyrin to uroporphyrin) averaged 93% using this procedure. The use of this method to determine the amount of individual porphyrins present in the urine of hexachlorobenzene-treated mice is illustrated.

Animals↗

Determination of polysulphides in blood by gas chromatography and gas chromatography-mass spectrometry.

A sensitive and simple method to determine polysulphides in human blood, using an extractive alkylation technique and gas chromatography, has been devised. Polysulphides were alkylated with pentafluorobenzyl bromide, and then converted into bis(pentafluorobenzyl)disulphide by desulphuration with potassium cyanide. The disulphide was analysed qualitatively by mass fragmentography and quantitatively by gas chromatography with electron-capture detection. The lower limit of detection was 0.005 mumol/ml. Field testing in a suicide case confirmed the validity of the method.

Alkylation↗

Reversed-phase chromatography of phenylthiocarbamyl amino acid derivatives of physiological amino acids: an evaluation and a comparison with analysis by ion-exchange chromatography.

Reversed-phase chromatography of phenylthiocarbamyl (PTC) amino acid derivatives of physiological amino acids was evaluated and compared with the traditional method of ion exchange. The PTC amino acid derivatives were stable for at least 32 h at ambient temperature before injection. The relationship of detector response to concentration for the PTC derivatives was linear from 39 to 1250 pmol. With few exceptions, the within- and between-run precisions of plasma amino acid retention times were less than 0.2 and 0.3%, respectively; the within- and between-run precisions of their concentrations were less than 4.0 and 5.0%, respectively. Twenty-four plasma samples were quantitated by both reversed-phase and ion-exchange chromatography; fifteen of the twenty amino acids determined had correlation coefficients in the range 0.81-1.00. Nine non-standard amino acids and ten therapeutic drugs were added to plasma; D-glucosaminic acid and alpha-amino-beta-guanidinopropionic acid co-eluted with alpha-aminoadipic acid and threonine, respectively. Of the ten drugs added, only metronidazole and theophylline co-eluted with beta-alanine and histidine, respectively. The precision, stability, and sensitivity of the method render it ideal for the quantitation of plasma amino acids.

Amino Acids↗