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Analysis of 11-nor-9-carboxy-delta(9)-tetrahydrocannabinol in biological samples by gas chromatography tandem mass spectrometry (GC/MS-MS).

Gas chromatography tandem mass spectrometry (GC/MS-MS) analysis of 11-nor-carboxy-delta(9)-tetrahydrocannabinol (delta(9)-THC-COOH), the major metabolite of delta(9)-tetrahydrocannabinol, in biological samples is reported. The proposed method, using deuterated delta(9)-THC-COOH as an internal standard, is able to detect the major metabolite of cannabis derivatives at very low levels (picograms/millilitre) with high specificity. These characteristics render the proposed analytical procedure suitable for confirmatory analysis in drug testing for cannabis use.

Dronabinol↗

Detection of metabolites of toxic alkylmethylphosphonates in biological samples.

The major metabolites and breakdown products of some toxic organophosphonates are their respective alkymethylphosphonic acids. These acids ionize at physiological pH and are not amenable to gas chromatographic analysis in their underivatized forms. Their detection in biological samples has been difficult because of their presence at only trace levels. Existing analytical methods were developed mainly for measuring these phosphonic acids in environmental samples and at higher concentrations. In this study, we devised a gas chromatographic/mass spectrometric method to provide confirmation and quantification of the organophosphonic acids of soman (GD), sarin (GB) and GF in blood and urine. This report describes the various derivatization conditions that we have studied and demonstrates the characteristic mass spectra by different ionization techniques.

Animals↗

Determination of agmatine in biological samples by capillary electrophoresis with optical fiber light-emitting-diode-induced fluorescence detection.

A capillary electrophoresis (CE)/optical fiber light-emitting diode (LED)-induced fluorescence detection method is developed for the determination of agmatine in biological samples. The agmatine was precolumn-derivatized with fluorescence tagging reagent, fluorescein isothiocyanate (FITC). Optimal separation and determination for agmatine were obtained with an electrophoretic buffer of 20 mM sodium borate (pH 9.2). Under the optimal conditions, the determination of agmatine was achieved in less than 4 min, and the detection limit was 4.1x10(-9) M (S/N = 3). The relative standard deviation (RSD) for 11 parallel determination of agmatine was less than 3.0%. The present CE-LED induced fluorescence detection method has been applied to detect agmatine in rat brain tissue, rat stomach tissue, human serum, and human urine. The level of agmatine in human urine was quantified by CE for the first time and found to be in the range 2.5-4.1x10(-7) M.

Agmatine↗

Thickness determination of biological samples with a zeta-calibrated scanning tunneling microscope.

A single-tube scanning tunneling microscope has been zeta-calibrated by using atomic steps of crystalline gold and was used for measuring the thickness of two biological samples, metal-coated as well as uncoated. The hexagonal surface layer of the bacterium Deinococcus radiodurans with an open network-type structure shows thickness values that are strongly influenced by the substrate and the preparation method. In contrast, the thickness of the purple membrane of Halobacterium halobium with its densely packed less-corrugated structure exhibits very little variation in thickness in coated preparations and the values obtained are in good agreement with x-ray data.

Bacteriorhodopsins↗

Shotgun lipidomics of cardiolipin molecular species in lipid extracts of biological samples.

Cardiolipin is a prominent component of the mitochondrial inner membranes contributing to the regulation of multiple discrete mitochondrial functions. Here, we extend shotgun lipidomics to identify and quantitate cardiolipin molecular species directly from lipid extracts of biological samples. Three shotgun lipidomics approaches for analyses of cardiolipin molecular species were developed using either a continuous ion-transmission instrument (i.e., triple-quadrupole type) with either low or high mass resolution settings or a high mass resolution hybrid pulsed instrument [i.e., quadrupole time-of-flight (QqTOF) type]. Three chemical principles were used for the development of these approaches. These include the marked enrichment of linoleate in cardiolipin to maximize the signal-to-noise ratio, the specific neutral loss of ketenes from doubly charged cardiolipin molecular ions to yield doubly charged triacyl monolysocardiolipins, and the doubly charged character of two phosphates in each cardiolipin molecular species. Through these techniques, we identified and quantified the specific molecular species profiles of cardiolipin directly from lipid extracts of mouse heart, liver, and skeletal muscle. The accuracy ( approximately 5%) and the low end of the linear dynamic range (10 fmol/microl) for quantitation make these approaches useful for studying alterations in cardiolipin metabolism in multiple disease states using either type of mass spectrometer.

Animals↗

Determination of some metals in biological samples for monitoring purposes.

The biological monitoring of toxic and essential metals in biological material is important for the study of influence of environmental conditions on the human body. In this work, the determination of Cd, Pb and Hg in blood, urine and hair of children has been performed by atomic absorption spectroscopy. The electrothermal atomisation with Zeeman background correction was used for Pb and Cd determination and mercury was determined using Trace Mercury Analyser TMA 254. Methylmercury in hair was determined simultaneously. To check the method, SRM Lyphochek Urine Metal control--Biorad, Seronorm Trace Elements--Nycomed and GWB Human Hair (China) were used. The group of more than 100 children were chosen for the study. Statistical tests were used for the evaluation of the obtained results. The concentrations of all elements in all types of samples correspond to the "normal contents" published for the non-exposed population.

Cadmium↗

HPLC-assay with electrochemical detection for the neurotoxin MPTP, its metabolite MPP+ and MPTP-analogues in biological samples after purification over Sephadex G10.

A sensitive and selective method for assaying the neurotoxin MPTP and some MPTP-analogues in mouse brain and serum is described. The method is based on isolation of the compounds from biological samples on small Sephadex G10 columns followed by reverse phase HPLC with amperometric detection. HPLC separation was performed at pH 3, after which the pH was increased to 6.8 by mixing the column effluent with 0.5 M phosphate pH 9, to provide the conditions required for electrochemical detection. A metabolite of MPTP, MPP+, was determined as MPTP after reduction with NaBH4. This assay allows the determination of brain and serum concentrations in the pmol/g range of administered MPTP and MPTP-analogues and the effects of these substances on dopamine and its metabolites in the same tissue sample.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Improved high-speed counter-current chromatograph with three multilayer coils connected in series. II. Separation of various biological samples with a semi-preparative column.

The semipreparative capability of the newly developed high-speed counter-current chromatograph equipped with a set of three multilayer coils has been demonstrated in separations of a variety of biological samples including triterpenoic acids, indole auxins, bacitracin, flavonoids and tetracycline derivatives, each with a suitable two-phase solvent system. The sample quantities ranging from 50 to 500 mg were efficiently separated within a few hours. The separation of tetracycline derivatives was remarkably improved by adding ammonium acetate to the solvent system.

Bacitracin↗

The use of radioreceptor assays for the determination of benzodiazepines in biological samples: a review.

Benzodiazepines are the most widely prescribed class of psychotropes. The demonstration of specific, high affinity binding sites for benzodiazepines in mammalian brain has provided a basis for a radioreceptor assay (RRA) of these compounds in biological samples (fluids or tissues). The RRA permits the simultaneous measurement of the benzodiazepine molecules that bind to the receptor, providing a total estimate of all pharmacologically active forms of the drug, which is useful in drug monitoring and in the intensive care of patients. After a complete description of the methodological aspects of this technique, the results obtained in therapeutic monitoring and in toxicological analysis are reviewed, and the advantages and disadvantages of this method are examined.

Animals↗

Determination of local polarization properties of biological samples in the presence of diattenuation by use of Mueller optical coherence tomography.

A unique feature of polarization-sensitive Mueller optical coherence tomography is that, by measuring Jones or Mueller matrices, it can reveal the complete polarization properties of biological samples, even in the presence of diattenuation. We map local polarization properties for the first time to our knowledge by using polar decomposition in combination with least-squares fitting to differentiate measured integrated Jones matrices with respect to depth. We also introduce the new concept of dual attenuation coefficients to characterize diattenuation per unit infinitesimal length in tissues. We experimentally verify the algorithm using measurements of a section of porcine tendon and the septum of a rat heart.

Algorithms↗

Bioaccumulation and toxic effects of elevated levels of 3,3',4,4'-tetrachloroazobenzene (33'44'-TCAB) towards aquatic organisms. I: A simple method for the rapid extraction, detection and determination of 33'44'-TCAB in multiple biological samples.

The polychlorinated aromatic compound 3,3',4,4'-tetrachloroazobenzene (33'44'-TCAB) is a contaminant of 3,4-dichloroaniline based herbicides, but there have been no reports of methods for the quantitative determination of 33'44'-TCAB in biological organisms. In this communication we address this knowledge gap by presenting a method for the rapid extraction, detection and determination of 33'44'-TCAB in multiple biological samples based on the alkaline decomposition of the sample followed by alumina cartridge column chromatography and GC-HRMS analysis.

Animal Feed↗

Simultaneous determination of fluoxetine and norfluoxetine enantiomers in biological samples by gas chromatography with electron-capture detection.

An electron-capture gas chromatographic procedure was developed for the simultaneous analysis of the enantiomers of fluoxetine and norfluoxetine. The assay involves basic extraction of these enantiomers from the biological samples, followed by their conversion to diastereoisomers using the chiral derivatizing reagent (S)-(-)-N-trifluoroacetylprolyl chloride. The method was utilized to detect and measure the quantity of these enantiomers in plasma and urine of patients and in liver and brain tissue of rats treated with (R,S)-fluoxetine.

Animals↗

A liquid chromatographic method for the simultaneous determination of alpha-tocopherol and tocopherolquinone in human red blood cells and other biological samples where tocopherol is easily oxidized during sample treatment.

A liquid chromatographic method for the simultaneous determination of alpha-tocopherol and tocopherolquinone in human red blood cells is described. Tocopherols in the red cell membrane are very susceptible to oxidation during sample processing. Red cell samples are saponified in the presence of a mixture of butylated hydroxytoluene, ascorbic acid, and pyrogallol and then extracted with hexane. The tocopherol compounds are separated on a C-18 column using a mobile phase containing 12% acetonitrile, 83% methanol, and 5% buffer (NaH2PO4.H2O, 7.5 mM final concentration) and are detected electrochemically. The mixture of antioxidants is essential to avoid loss of the tocopherol compounds during processing of samples. The use of acetonitrile in the mobile phase results in the separation of tocopherolquinone from delta-tocopherol. The proposed method may be generally suitable for the analysis of biological samples where tocopherols are especially vulnerable to oxidation. The levels of tocopherolquinone and delta-tocopherol in normal red cells are quite small (less than 1% of alpha-tocopherol). The ratio of tocopherol and tocopherolquinone concentrations might serve as a useful index of the redox status of red cell membranes, particularly under in vitro conditions.

Biological Assay↗

Improved method for morphine extraction from biological samples.

Methadone morphine, or naloxone extraction from brain homogenates, plasma, and urine is described. An aqueous sample was loaded on a surgical gauze support, which was washed with extracting solvents. Aqueous samples remained on the support, and nonpolar drugs partitioned into the lipophilic extracting solvent. The procedure recovered 80-100% of nanogram levels of methadone, morphine, or naloxone from biological samples. In addition, an approximate 10-fold timesaving capacity was demonstrated compared to standard liquid-liquid extraction techniques.

Animals↗

Polyaromatic hydrocarbons as high-performance liquid chromatographic calibration standards for the low level determination of chlorinated dibenzo-p-dioxins and chlorinated dibenzofurans in biological samples.

A series of polyaromatic hydrocarbons (PAHs) has been used to calibrate the retention times of chlorinated dibenzo-p-dioxins (dioxins) and chlorinated dibenzofurans (furans) on high-performance liquid chromatography (HPLC) in the ultra-trace analysis of biological samples. Fraction collection is then based on the HPLC retention times of the PAHs without the need for the dioxins or furans. Because of the variety of PAHs, a particular one can be chosen that will co-chromatograph near any given dioxin or furan. It has been shown that the effect of solvent changes and sample co-extractives on the HPLC eluting properties of the PAHs is minimal. The use of PAHs as secondary standards for HPLC calibration in dioxin trace analysis diminishes both the potential for contamination of the sample by the standard and the handling of the chlorinated dioxins and furans. The PAH standards could also be useful for those laboratories who are limited in their safety facilities or in the number and amount of dioxin-furan standards available to them.

Animals↗

On-line high-performance liquid chromatography-post-column reaction-capillary gas chromatography analysis of lipids in biological samples.

The versatility of on-line liquid chromatography and gas chromatography is further expanded by the addition of on-line derivatization. The on-line fractionation, derivatization and separation system is applied to the characterization of lipids in biological samples. Separation of the triglycerides from the phospholipids was accomplished on a narrowbore (2.0 mm I.D.) 5 microns silica column. The entire triglyceride fraction was transferred to a heated fixed bed reactor for esterification of the fatty acid constituents. Transfer of the derivatized zones to the gas chromatograph was accomplished by the use of a retention gap. Application of the system to the separation and characterization of Staphylococcus aureus is presented.

Chromatography, Gas↗

Simultaneous determination of trace levels of nine haloacetic acids in biological samples as their pentafluorobenzyl derivatives by gas chromatography/tandem mass spectrometry in electron capture negative ion chemical ionization mode.

Haloacetic acids (HAAs) are environmentally and medically important chemicals. No analytical method is currently available to analyze EPA-regulated HAAs in biological samples at environmentally relevant low concentrations. Clinical studies of this class of chemicals are also limited by the lack of analytical techniques of high sensitivity and precision. We now report a new analytical method using gas chromatography/ion trap mass spectrometry for quantifying nine HAAs present inplasma, urine, and water at picogram per milliliter levels. The derivatization reactions of HAAs with pentafluorobenzyl bromide were optimized and detection with an electron capture negative ion chemical ionization mode was employed to enhance the sensitivity. Selected ion monitoring and selected reaction monitoring methods were utilized for quantitation. The detection limits of HAAs in plasma, urine, and water were 25-1000 pg/mL. Accuracies varied from 86.6 to 118.1% (intraday) and 81.7 to 119.6% (interday). Precisions (CV) varied from 0.9 to 19.9% (intraday) and 0.8 to 19.8% (interday), and linearities (r2) varied from 0.9732 to 0.9998 (intraday) and 0.9422 to 0.9987 (interday), respectively. Methyl tertbutyl ether and diethyl ether provided the highest extraction recoveries for the HAAs (74.9-107.2%). The method was applied successfully to a kinetic investigation of low levels of HAAs in humans consuming chlorinated drinking water.

Acetates↗

The gas chromatographic determination of atenolol in biological samples.

Methods are described for the gas chromatographic determination of the B-adrenoceptor blocking agent atenolol (ICI 66,082 Tenormin) in whole blood, serum, tissue and urine. The method involves the extraction of the free base from the prepared biological sample into an organic solvent mixture. Further purification is done by backextracting the base into dilute acid from which, after basification it is extracted again into organic solvent. Any atenolol in the residue remaining after solvent evaporation is converted into a heptafluorobutyrate derivative ready for gas chromatography. Use of an electron-capture detector enables concentrations as low as 0.01 mug ml-minus 1 body fluid and 0.04 mug ml-minus 1 tissue to be measured.

Acetamides↗