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Research Article

Selective Ion Monitoring in Clinical Chemistry

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Pages 53-105 | Published online: 27 Sep 2008

References

  • Sweeley C. C., Elliot W. H., Tories J., Ryhage R. Mass spectrometric determination of unresolved components in gas chromatographic effluents. Anal. Chem. 1966; 38: 1549
  • Kelly R. W. The measurement by gas chromatography - mass spectrometry of oestra-l, 3, 5-triene-3, 15α, 16α, 17β-tetrol (oesterol) in pregnancy urine. J. Chromatogr. 1971; 54: 345
  • Breuer H., Nocke L., Siekmann L. Neue Methoden zur bestimmung von Steroidhormonen. Z. Klin. Chem. Klin. Biochem. 1970; 8: 329
  • Samuelsson B., Hamberg M., Sweeley C. C. Quantitative gas chromatography of prostaglandin E., at the nanogram level. Use of a deuterated carrier and multiple ion analyzer. Anal. Biochem. 1970; 38: 301
  • Axén U., Green K., Hörlin D., Samuelsson B. Mass spectrometric determination of picomole amounts of prostaglandin E2 and F2a using synthetic deuterium labeled carriers. Biochem. Biophys. Res. Commun. 1971; 45: 519
  • Bertilsson L., Atkinson A. J., Althaus J. R., Harfast Å., Lindgren J.-E., Holmstedt B. Quantitative determination of 5-hydroxyindole-3-acetic acid in cerebrospinal fluid by gas chromatography - mass spectrometry. Anal. Chem. 1972; 44: 1434
  • Lawson A. M. The scope of mass spectrometry in clinical chemistry. Clin. Chem. 1975; 21: 803
  • Gordon A. E., Frigerio A. Mass fragmentography as an application of gas-liquid chromatography - mass spectrometry in biological research. J. Chromatogr. 1972; 73: 401
  • Holmstedt B., Palmer L. Mass fragmentography: principles, advantages and further possibilities. Advances in Biochemical Psychopharmacology. Raven Press, New York 1973; Vol. 7: 1
  • Falkner F. C., Sweetman B. J., Watson J. T. Biomedical applications of selected ion monitoring. Applied Spectroscopy Reviews, E. G. Brame. Marcel Dekker, New York 1976; Vol. 10: 51
  • Appleton R. A., McCormick A. Quantitative analysis of mixtures of diterpene hydrocarbons by gas chromatography - mass spectrometry. Tetrahedron 1968; 24: 633
  • Reimendal R., Sjövall A. Analysis of steroids by off-line computerized gas chromatography - mass spectrometry. J. Anal. Chem. 1972; 44: 21
  • Hites R. A., Biemann K. Computer evaluation of continuously scanned mass spectra of gas chromatographic effluents. Anal. Chem. 1970; 42: 855
  • Hammar C.-G., Holmstedt B., Ryhage R. Mass fragmentography. Identification of chlorpromazine and its metabolites in human blood by a new method. Anal. Biochem. 1968; 25: 532
  • Watson J. T. Report on the nomenclature workshop at the second international conference on stable isotopes, Oakbrook, Illinois, October 1975. Biomed. Mass Spectrom. 1976; 3: 50
  • Middleditch B. S., Desiderio D. M. Comparison of selective ion monitoring and repetitive scanning during gas chromatography - mass spectrometry. Anal. Chem. 1973; 45: 806
  • Green K. Proc. Conf. Prostaglandins in Fertility Control. WHO Research and Training Centre on Human Reproduction, Karolinska Institutet, Stockholm 1973; 44
  • Homes W. F., Holland W. H., Shore B. L., Bier D. M., Sherman W. R. Versatile computer generated variable accelerating voltage circuit for magnetically scanned mass spectrometers. Use for assays in the picogram range and for assays of stable isotope tracers. Anal. Chem. 1973; 45: 2063
  • Klein P. D., Haumann J. R., Eisler J. Gas chromatograph - mass spectrometer - accelerating voltage alternator system for the measurement of stable isotope ratios in organic molecules. Anal. Chem. 1972; 44: 490
  • Elkin K., Pierrou L., Ahlborg U. G., Holmstedt B., Lindgren J.-E. Computer controlled mass fragmentography with digital signal processing. J. Chromatogr. 1973; 81: 47
  • Hammar C.-G., Pettersson G., Carpenter P. T. Computerized mass fragmentography and peak matching. Biomed. Mass Spectrom. 1974; 1: 397
  • Holland J. F., Seeley C. C., Thrust R. E., Teets R. E., Bieber M. A. On-line computer controlled multiple ion detection in combined gas-chromatography - mass spectrometry. Anal. Chem. 1973; 45: 308
  • Watson J. T., Pelster D. R., Sweetman B. J., Frbölich J. C., Oates J. A. Display-oriented data system for multiple ion detection with gas chromatography - mass spectrometry in quantifying biomedically important compounds. Anal. Chem. 1973; 45: 2071
  • Gruenke L. D., Craig J. C., Bier D. M. Multiple ion detection by accelerating voltage alternation in conjunction with voltage sweeping. Biomed. Mass Spectrom. 1974; 1: 418
  • Cory H. T., Lascelles P. T., Millard B. J., Snedden W., Wilson B. Use of deuterated carrier plus homologous internal standard in the estimation of prostaglandin F2s by gas chromatography - mass spectrometry. Biochem. Soc. Trans. 1975; 3: 536
  • Adlercreutz H., Hunneman D. H. Quantitation of up to 12 estrogens in 1–50 μ of pregnancy urine. J. Steroid Biochem. 1973; 4: 233
  • Abramson F. P., McCaman M. W., McCaman R. E. Femtomole level of analysis of biogenic amines and amino acids using functional group mass spectrometry. Anal. Biochem. 1974; 51: 482
  • Adlercreutz H. Analysis of natural and synthetic hormonal steroids in biological fluids by mass fragmentography. Mass Spectrometry in Biochemistry and Medicine, A. Frigerio, N. Castagnoli. Raven Press, New York 1974; 165
  • Eldjarn L., Helland P., Skrede S., Christophersen B., Jellum E. Quantitative mass spect4ometry as absolute methodology in clinical chemistry. 10th Int. Congr. in Clinical Chemistry, Abstr. Mexico 1978; 124
  • Shaffer R., White E., Sniegoski V. L. T., Cohen A. Isotope dilution mass spectrometry as a definitive method for the analysis of cholesterol in serum. 10th Int. Cong. in Clinical Chemistry, Abstr. Mexico 1978; 125
  • Claeys M., Markey S. P., Maenhaut W. Variance analysis of error in selected ion monitoring assays using various internal standards. A practical study case. Biomed. Mass Spectrom. 1977; 4: 122
  • Björkhem I., Blomstrand R., Svensson L. Determination of serum cholesterol by mass fragmentography. Clin. Chim. Acta 1974; 54: 185
  • Siekmann L., Martin S., Siekmann A., Breuer H. Determination of cholesterol in serum using mass fragmentography—a reference method in clinical chemistry. Z. Anal. Chem. 1976; 279: 145
  • Björkhem I., Karlmar K.-E. A novel technique for assay of side-chain cleavage of exogenous and endogenous cholesterol in adrenal mitochondrial and submitochondrial preparations. Anal. Biochem. 1975; 68: 404
  • Dehennin L., Reifsteck A., Scholler R. A. Quantitative method for the estimation of testosterone and progesterone in human plasma using the gas chromatograph - mass spectrometer combination with single ion monitoring. J. Steroid Biochem. 1974; 5: 81
  • Breuer H., Siekmann L. Mass fragmentography as reference method in clinical steroid assay. J. Steroid Biochem. 1975; 6: 685
  • Vestergaard P., Sayegh J. F., Mowat J. H. Mass fragmentographic assay for testosterone in blood using high specific activity tritiated testosterone as an internal standard. Clin. Chim. Acta 1975; 62: 163
  • Björkhem I., Blomstrand R., Lantto O., Svensson L., Öhman G. Toward absolute methods in clinical chemistry: application of mass fragmentography to high accuracy analyses. Clin. Chem. 1976; 22: 1789
  • Lim C. K., Richmond W., Lawson A. M. Basis of a definitive method for the determination of creatinine in serum. 10th Int. Congr. in Clinical Chemistry. Mexico 1978; 125
  • Björkhem I., Blomstrand R., Svensson L., Tietz F., Carlstrom K. Validation of methods for determination of urinary estriol during pregnancy using mass fragmentography. Clin. Chim. Acta 1975; 62: 385
  • Brooks C. J. W., Middleditch B. S. The mass spectrometer as a gas chromatographic detector. Clin. Chim. Acta 1971; 34: 145
  • Maume B. F., Bournot P., Lhuguenot J. C., Baron C., Barbier F., Maume G., Prost M., Padieu P. Mass fragmentographic analysis of steroids, catecholamines and amino acids in biological materials. Anal. Chem. 1973; 45: 1073
  • Adlercreutz H., Tikkanen M. J., Hummeman D. H. Mass fragmentographic determination of eleven estrogens in the body fluids of pregnant and nonpregnant subjects. J. Steroid Biochem. 1974; 5: 211
  • Adlercreutz H., Nylander P., Hunneman D. H. Studies on the mass fragmentographic determination of plasma estriol. Biomed. Mass Spectrom. 1974; 1: 332
  • Adlercreutz H., Martin F., Wahlroos Ö., Soini E. Mass spectrometric and mass fragmentographic determination of natural and synthetic steroids in biological fluids. J. Steroid Biochem. 1975; 6: 247
  • Millington D., Jemner D. A., Jones T., Griffiths K. Endogenous steroid concentrations in human breast tumours determined by high resolution mass fragmentography. Biochem. J. 1974; 139: 473
  • Heki N., Nato M., Hosojima H. Analysis of estrone, estradiol and estriol in serum and urine by mass fragmentography using GC-MS. Folia Endocrinol. Jpn. 1977; 53: 167
  • Siekmann L., Hoppen H.-O., Breuer H. Zur gas-chromatograpisch—massenspectrome-trischen bestimmung von Steroid-hormonen in Körperflussigkeiten unter verwendung eines Multiple Ion Detectors (fragmentographie). Z. Anal. Chem. 1970; 252: 294
  • Chapman J. R., Bailey E. Determination of plasma testosterone by combined gas chromatography - mass spectrometry. J. Chromatogr. 1974; 89: 215
  • Dehennin L., Reiffsteck A., Scholler R. Simultaneous estimation of testosterone, progesterone and androstenedione by gas chromatography - mass spectrometry with a single ion detection, correlation with radio-immunoassay. J. Steroid Biochem. 1974; 5: 767
  • Björkhem I., Lantto O., Svensson L. Determination of serum testosterone by mass fragmentography. Clin. Chim. Acta 1975; 60: 59
  • Siekmann L., Martin S., Siekmann A., Breuer H. Determination of testosterone and 5α-dihydrotestosterone in human plasma by isotope dilution - mass fragmentography. Acta Endocrinol. (Copenhagen) Suppl. 1976; 202: 65
  • Björkhem I., Blomstrand R., Lantto O. Validation of routine methods for serum progesterone determination using mass fragmentography. Clin. Chim. Acta 1975; 65: 343
  • Baillie T. A., Brooks C. J. W., Middleditch B. S. Comparison of corticosteroid derivatives by gas chromatography - mass spectrometry. Anal. Chem. 1972; 44: 30
  • Padieu P., Maume B.-F. Mesure d'activités enzymatiques dans la cellule hépatique par la fragmentographie de masse a chromatographic gaz-liquide. Ann. Biol. Clin. (Paris) 1976; 34: 63
  • Prost M., Maume B. F. Hormones steroides de la surrénale de rat: analyse des 18–hydroxycorticosteroides par chromatographic gaz-liquide couplée à la spectrometrie de masse par fragmentographie de masse. J. Steroid Biochem. 1974; 5: 133
  • Prost M., Maume B. F. Hormonal steroids in biological materials: a study by mass fragmentography. Mass Spectrometry in Biochemistry and Medicine, A. Frigerio, N. Castagnoli. Raven Press, New York 1974; 139
  • Siekmann L., Spiegelhalder B., Breuer H. Bestimmung von Aldosteron in Plasma des Menschen unter verwendung des (Combination Gas Chromatographie/Massenspektrometrie. Z. Anal. Chem. 1972; 261: 377
  • Björkhem I., Blomstrand R., Lantto O., Löf A., Svensson L. Plasma Cortisol determination by mass fragmentography. Clin. Chim. Acta 1974; 56: 241
  • Klein P. D., Haumann J. R., Eisler W. J. Instrument design considerations and clinical applications of stable isotope analysis. Clin. Chem. 1971; 17: 735
  • Balistrero W. F., Cowen A. E., Hofmann A. F., Szczepanik P. A., Klein P. D. Validation and use of H., 12-2H-labeled chenodeoxycholic acid in isotope dilution measurements of bile acid kinetics in man. Pediatr. Res. 1975; 9: 757
  • Klein P., Haumann J. R., Hachey D. L. Stable iotoperyatiometer-multiple ion detector unit for qualitative stable isotope studies by gas chromatography - mass spectrometry. Clin. Chem. (NY) 1975; 2253
  • Klein P. D., Hachey D. L., Szczepanik P. A., Hofmann A. F. Synthesis of 2H- and 13C-labeled bile acids and their analysis by electron impact and chemical ionization mass spectrometry. Proceedings of the Third Bile Acid Meeting, P. Back, S. Matern, J. Hackenschmidt. Schattauer Verlag, Frankfurt 1975; 39
  • Watkins J. B., Ingall D., Szczepanik P., Klein P. D., Lester R. Bile-salt metabolism in the newborn. Measurement of pool size by stable isotope technique. N. Engl. J. Med. 1973; 288: 431
  • Watkins J. B., Szczepanik P., Gould J. B., Klein P., Lester R. Bile salt metabolism in the human premature infant. Preliminary observations of pool size and synthesis rate following prenatal administration of dexamethasone and phenobarbital. Gastroenterology 1975; 69: 706
  • Cowen A. E., Hofmann A. F., Hachey D. L., Thomas P. J., Belobaba D. T. E., Klein P. D., Tökes L. Synthesis of 11, 12-2H2 and 11, 12-2-H2-labeled chenodeoxycholic acid and lithocholic acids. J. Lipid Res. 1976; 17: 231
  • Miyazaki H., Ishibashi M., Inoue M., Itoh M. Simultaneous qualitative and quantitative analyses of bile acids by mass chromatography. J. Chromatogr. 1974; 99: 553
  • Axelsson M., Cronholm T., Curstedt T., Reimendal R., Sjövall J. Quantitative analysis of unlabeled and polydeuterated compounds by gas chromatography - mass spectrometry. Chromatographia 1974; 7: 502
  • Almé B., Bremmelgaard A., Sjovall J., Thomassen P. Analysis of metabolic profiles of bile acids in urine using a lipophilic anion exchanger and computerized gas-liquid spectrometry. J. Lipid Res. 1977; 18: 339
  • Almé B. Synthesis and analytical use of lipophilic anioin exchangers. thesis, Karolinska Institutet, Stockholm 1977
  • Angelin B., Björkhem I., Einarsson K. Individual serum bile acid concentrations in normo-and hyperlipoproteinemia as determined by mass fragmentography: relation to bile acid pool size. J. Lipid Res. 1978; 19: 527
  • Angelin B., Björkhem I. Postprandial serum bile acids in healthy man—evidence for differences in absortive pattern between individual bile acids. Cur 1977; 18: 606
  • Ahlberg J., Angelin B., Björkhem I., Einarsson E. Individual bile acids in portal venous and systemic blood serum of fasting man. Gastroenterology 1977; 73: 1377
  • Björkhem I., Falk O. Mass fragmentographic assay of serum bile acids with use of deuterium labeled internal standards, To be published
  • Björkhem I. Mechanisms of hydroxylation in bile acid biosynthesis. Bile Acids in Human Diseases, S. Matern, W. Gerock. Schattauer Verlag, Stuttgart 1975; 3
  • Björkhem I., Danielsson H. 7α-Hydroxylation of exogenous and endogenous cholesterol in rat liver microsomes. Eur. J. Biochem. 1975; 53: 63
  • Gustafsson J. On the heterogeneity of the mitochondrial C27-steroid 26–hydroxylase system. J. Lipid Res. 1976; 17: 366
  • Leenheer A. P., Cruyl A. A. M. Quantitative mass spectrometry. Life Science. Elsevier, Amsterdam 1977; 165
  • Björkhem I., Larsson A. A novel specific assay of vitamin D3 in human serum. Clin. Chim. Acta 1979; 88: 559
  • Björkhem I., Holmberg I. A novel specific assay of 25–hydroxy vitamin D3. Clin. Chim. Acta 1976; 68: 215
  • Björkhem I., Holmberg I. Assay and properties of a mitochondrial 25-hydroxylase active on vitamin D3. J. Biol. Chem. 1978; 253: 842
  • Björkhem I., Holmberg I. Mass fragmentographic assay of 25-hydroxy vitamin D3. Methods of Enzymology, S. P. Colowick, N. O. Kaplan. Academic Press, New York 1978
  • Hammarström S., Hamberg M., Samuelsson B., Duell E. A., Stawiski M., Voorhees J. J. Increased concentration of nonesterified arachidonic acid, 12L-hydroxy-5, 8, 10, 14–eicosatetraenoic acid, prostaglandin E2 and prostaglandin E2 in epidermis of psoriasis. Proc. Natl. Acad. Sci. U.S.A. 1975; 72: 5130
  • Phillipou G., Bigham D. A., Seamark R. F. Subnanogram detection of t-butyl dimethylsilyl fatty acid ester by mass fragmentography. Lipids 1975; 10: 714
  • Blomstrand R., Svensson L., Herslöf B. Mass fragmentographic determination of docosenoic acid in rapeseed oils. Lipids 1978; 13: 283
  • Petty F., Ragland J. B., Kuiken L. B., Sabesin S. M., Wander J. D. Quantitative multicomponent analysis of fatty acids from cholesteryl esters by chemical ionization reconstructed mass chromatography. Lipids 1975; 10: 800
  • Murata T., Takahashi S., Takeda T. Chemical ionization mass spectrometry. I. Application to analysis of fatty acids. Anal. Chem. 1975; 47: 573
  • Emken E. A., Rohwedder W. K., Dutton H. J., Dougherty R., Iacono J. M., Mackin J. Dual-labeled technique for human lipid metabolism studies using deuterated fatty acid isomers. Lipids 1975; 11: 135
  • Mee J. M. L., Korth J., Halpern B. Rapid and quantitative blood analysis for free fatty acids by chemical ionization mass spectrometry. Anal. Lett. 1976; 9: 1075
  • Stein R. A. Fractionation of methyl-d-tetracosanoates by GCMS. Chem. Phys. Lipids 1976; 17: 22
  • Ariga T., Araki E., Murata T. Determination of geometrical and positional isomers in octadecenoic acids by chemical ionization mass spectrometry. Chem. Phys. Lipids 1977; 19: 14
  • Ariga T., Araki E., Murata T. Determination of double bond positions polyunsaturated fatty acid methyl esters by combined gas chromatography - chemical ionization mass spectrometry. Anal. Biochem. 1977; 83: 474
  • Murata T. Analysis of fatty acid methyl esters by gas-liquid chromatography - chemical ionization mass spectrometry computer system. J. Lipid Res. 1978; 19: 166
  • Murata T., Ariga T., Araki E. Determination of double bond positions of unsaturated fatty acids by a chemical ionization mass spectrometry computer system. J. Lipid Res. 1978; 19: 172
  • Wendt G., McCloskey A. Mass spectrometry of perdeuterated molecules of biological origin. Fatty acid esters from Scenedesmus obliquus. Biochemistry 1970; 9: 4854
  • Hamberg M., Svensson J., Samuelsson B. Prostaglandin endoperoxides. A new concept concerning the model of action and release of prostaglandins. Proc. Natl. Acad. Sci. U.S.A. 1974; 71: 3824
  • Björkhem I., Blomstrand R., Svensson L. Determination of triglycerides by mass fragmentography. Clin. Chim. Acta 1976; 71: 191
  • Jellum E. Profiling of human body fluids in healthy and diseased state using gas chromatography and mass spectrometry with special reference to organic acid. J. Chromatogr. 1977; 143: 427
  • Liebich H. M., Huesgen G. Rapid quantitative microanalysis of kethones in urine by gas chromatography-mass fragmentography. J. Chromatogr. 1976; 126: 465
  • Samuelsson B., Green K., Hamber M., Hammarstrom S. Prostaglandins. Annu. Rev. Biochem. 1975; 44: 676
  • Green K., Samuelsson B. On the excretion of dinorprostaglandin F1 in the rat. Prostaglandin Symposium of the Worcester Foundation for Experimental Biology, P. W. Ramwell, J. E. Shaw. Interscience, New York 1968; 389
  • Beguin F., Bygdeman M., Green K., Samuelsson B., Toppozada M., Wiqvist N. Analysis of prostaglandin F2s and metabolites in blood during constant intravenous infusion of prostaglandin F2 in the human female. Acta Physiol. Scand. 1972; 86: 430
  • Gustav B., Green K. Release of prostaglandin F2s following injection of hypertonic saline for therapeutic abortion: a preliminary study. Am. J. Obstet. Gynecol. 1972; 114: 1099
  • Green K., Bygdeman M., Toppozada M., Wiqvist N. The role of prostaglandin F2s in human parturition. Am. J. Obstet. Gynecol. 1974; 120: 25
  • Green K., Hagenfeldt K. Prostaglandins in the human endometrium. Gas chromatographic -mass spectrometric quantitation before and after IUD-insertion. Am. J. Obstet. Gynecol. 1975; 122: 611
  • Green K., Beguin F., Bygdeman M., Toppozada M., Wiqvist N. Analysis of prostaglandin F2s and metabolites following intravenous, intra-amniotic and vaginal administration of prostaglandin F2s. 3rd Conf. Prostaglandins in Fertility Control, S. Bergström, K. Green, B. Samuelsson. WHO Research and Training Centre on Human Reproduction, Karolinska Institutet, Stockholm 1972; 189
  • Granstrom E., Green K., Bygdeman M., Toppozada M., Wiqvist N. Metabolic and quantitative studies in connection with intraamniotic administration of prostaglandin F2 for induction and abortion. Life Sci. 1973; 12: 219
  • Green K., Granstrom E., Samuelsson B., Axen U. Methods for quantitative analysis of PGF2s, PGE2, 9α, 11α-dihydroxy-15-keto-prost-5-enoic acid and 9α, 11α, 15-trihydroxy-prost-5-enoic acid from body fluids using deuterated carriers and gas chromatography - mass spectrometry. Anal. Biochem. 1973; 54: 434
  • Hubbard W. C., Watson J. T. Determination of 15-keto-13, 14-dihydro-metabolites of PGE, and PGF2s in plasma using high performance liquid chromatography and gas chromatography—mass spectrometry. Prostaglandins 1976; 12: 21
  • Sweetman B. J., Watson J. T., Carr K., Oates J. A., Frolich J. C. Quantitative vapor-phase analysis of prostaglandin F2s in female human urine. Prostaglandins 1973; 3: 385
  • Wolfe L. S., Pace-Asciak C. Measurement of prostaglandin F2 concentration in plasma during clinical evaluation in therapeutic abortion. 3rd Conf. Prostaglandins in Fertility Control, S. Bergstrom, K. Green, B. Samuelsson. WHO Research and Training Centre and Human Reproduction, Karolinska Institutet, Stockholm 1972; 201
  • Gillett P. G., Kinch R. A. H., Wolfe L. S., Pace-Asciak C. Therapeutic abortion using prostaglandin F2- A study of efficacy, tolerance and plasma levels with intravenous administration. Amer. J. Obstet. Gynecol. 1972; 112: 330
  • Hamberg M. Quantitative studies on prostaglandin synthesis in man. Determination of the major urinary metabolite of prostaglandins F1s and F2s. Anal. Biochem. 1973; 55: 368
  • Brash A. R., Bailie T. A., Clare R. A., Draffan G. H. Quantitative determination of the major metabolite of prostaglandin F1s and F2s in human urine by stable isotope dilution and combined gas chromatoraphy - mass spectrometry. Biochem. Med. 1976; 16: 77
  • Seyberth H. W., Sweetman B. J., Frölich J. C., Oates J. A. Quantification of the major urinary metabolite of the E prostaglandins by mass spectrometry: evaluation of the method's application to clinical studies. Prostaglandins 1976; 11: 381
  • Oates J. A., Sweetman B. J., Green K., Samuelsson B. Identification and assay of tetranorprostaglandin E1 in human urine. Anal. Biochem. 1976; 74: 546
  • Green K., Steffenrud S. Method for quantitative analysis of PGA2 from plasma using deuterated carrier and gas liquid chromatography - mass spectrometry. Anal Biochem. 1976; 76: 606
  • Hamberg M. Metabolism of prostaglandins in rat liver mitochondria. Eur. J. Biochem. 1968; 6: 135
  • Frolich J. C., Williams W. M., Sweetman B. J., Smigel M., Carr K., Hollifield J. W., Fleisher S., Nies A. S., Frisk-Holmberg M., Oates J. A. Analysis of renal prostaglandin synthesis by competitive protein binding assay and gas chromatography - mass spectrometry. Advances in Prostaglandin and Tromboxane Research, B. Samuelsson, R. Paoletti. Raven Press, New York 1975; Vol. 1: 65
  • Green K., Hedqvist P., Svanborg N. Increased plasma levels of 15-keto-13, 14–dihydro-pros-taglandin F2s after allergen-provoked asthma in man. Lancet 1974; 14: 1419
  • McCracken J. A., Carlson J. C., Glew M. E., Goding J. R., Baird D. T., Green K., Samuelsson B. Prostaglandin F2s identified as a luteolytic hormone in the sheep. Nature (London) New Biol. 1972; 238: 129
  • Kelly R. W. A simple device for analogue recording of the abundance of selected ions from a combined gas chromatograph - mass spectrometer. J. Chromatogr. 1972; 71: 337
  • Hamberg M. Inhibition of prostaglandin synthesis in man. Biochem. Biophys. Res. Commun. 1972; 49: 720
  • Sweetman B. J., Frölich J. C., Watson J. T. Quantitative determination of prostaglandins A., B and E in the sub-nanogram range. Prostaglandins 1973; 3: 75
  • Bier D. M., Sherman W. R., Holland W. H., Kipnies D. M. The in vitro measurement of alanine and glucose turnover with deuterium labeled metabolites. Proc. 1st Int. Conf. on Stable Isotopes in Chemistry. May, 9 to 111973. Biology and Medicine, Argonne National Laboratories, Argonne, III, 397
  • Björkhem I., Blomstrand R., Falk O., Öhman G. The use of mass fragmentography in the evaluation of routine methods for glucose determination. Clin. Chim. Acta 1976; 353
  • Laine R. A., Sweeley C. C. Analysis of trimethylsilyl-O-methyloximes of carbohydrates by combined gas-liquid chromatography - mass spectrometry. Anal. Biochem. 1971; 43: 533
  • Iwase H., Murai A. On the derivatives for the ultramicrodetermination of amino acids by mass fragmentography. Anal. Biochem. 1977; 78: 340
  • Pereira W. E., Hoyano Y., Reynolds W. E., Summons R. E., Duffield A. M. The simultaneous quantitation of ten amino acids in soil extracts by mass fragmentography. Anal. Biochem. 1973; 55: 236
  • Summons R. E., Pereira W. E., Reynolds W. E., Rindfleisch T. C., Duffield A. M. Analysis of twelve amino acids in biological fluids by mass fragmentography. Anal. Chem. 1974; 46: 582
  • Schulman M. F., Abramson F. P. Plasma amino acid analysis by isotope ratio gas chromatography - mass spectrometry computer techniques. Biomed. Mass Spectrom. 1975; 2: 9
  • Pereira W. E., Bacon V. A., Hoyano Y., Summons R., Duffield A. M. The determination of phenylalanine in serum by mass fragmentography. Clin. Biochem. 1973; 6: 300
  • Pereira W. E., Summons R. E., Reynolds W. E., Rindfleisch T. C., Duffield A. M. The quantitation of β-aminoisobutyric acid in urine by mass fragmentography. Clin. Chim. Acta 1973; 49: 401
  • Petty F., Tucker H. N., Molinary S. V., Flynn N. W., Wander J. D. Quantitation of glycine in plasma and urine by chemical ionization mass fragmentography. Clin. Chim. Acta 1976; 66: 111
  • Ampulksi R. S., Boggs R. W. The utilization of D- and L-methionin by man. presented at the Proc. 25th Annu. Conf. on Mass Spectrometry and Allied Topics. May to June, 29 to 31977. Argonne National Laboratories, Washington, DC, 517
  • Bertilsson L., Costa E. Mass fragmentographic quantitation of glutamic acid and yγ-aminobutyric acid in cerebellar nuclei and sympathetic ganglia of rats. J. Chromatogr. 1976; 118: 395
  • Hoffenberg R., Lawson A. M., Ramsden D. B., Raw P. J. The application of mass spectrometry to the study of thyroxine and related compounds in biological fluids. Mass Spectrometry in Biochemistry and Medicine, A. Frigero, N. Castagnoli. Raven Press, New York 1974; 303
  • Petersen B. A., Vouros P. Analysis of thyroid hormones as their hepta-fluorobutyryl methyl ester derivatives by gas chromatography - mass spectrometry. Anal. Chem. 1977; 49: 1304
  • Heki N., Noto M., Hosojima H., Takahashi S., Murata T. Analysis of thyroid hormones in serum and urine by mass fragmentography using GC-MS. Folia Endocrinol. Jpn. 1976; 52: 149
  • Rosenberg I. H., Hachey D. L., Beer D. E., Klein P. D. Deuterium labeled folic acid: synthesis and applications to studies in man. Proc. First Int. Conf. on Stable Isotopes in Chemistry. May, 9 to 111973. Biology, and Medicine, Argonne National Laboratories, Argonne, III, 477
  • Karum F., Cattabeni F., Costa E., Ruthven C. R. J., Sandler M. Gas chromatographic assay of picomole concentrations of biogenic amines. Anal. Biochem. 1972; 47: 550
  • Koslow S. H., Cattabeni F., Costa E. Norepinephrine and dopamine: assay by mass fragmentography in the picomole range. Science 1972; 176: 177
  • Lhuguenot J.-C., Maume B. F. Improvements in quantitative gas phase analysis of catecholamines in the picomole range by electron capture detection and mass fragmentography of their pentafluorobenzylimine - trimethylsilyl derivatives. J. Chromatogr. Sci. 1974; 12: 411
  • Wang M.-T., Imai K., Yoshioka M., Tamura Z. Gas liquid chromatographic and mass fragmentographic determination of catecholamines in human plasma. Clin. Chim. Acta 1975; 63: 13
  • Curtius H., Wolfensberger M., Steinmann B., Redweik U., Siegfried J. Mass fragmentography of dopamine and 6-hydroxydopamine. Application to the determination of dopamine in human brain biopsies from the caudate nucleus. J. Chromatogr. 1974; 99: 529
  • Walker R. W., Ann H. S., Albers-Schönberg G., Mandel L. R., Vandenheuvel W. J. A. Gas chromatographic - mass spectrometric isotope dilution assay for N., N-dimethyltryptamine in human plasma. Biochem., Med. 1973; 8: 105
  • Sjöquist B., Änggard E. Gas chromatographic determination of homovanillic acid in human cerebrospinal fluid by electron capture detection and by mass fragmentography with a deuterated internal standard. Anal. Chem. 1972; 44: 2297
  • Sjöquist B., Lindstrom B., Änggård E. Mass fragmentographic determination of homovanillic acid in tissues and body fluids using the deuterium labeled species as internal standard. Life Sci. 1973; 13: 1655
  • Lindstrom B., Sjöquist B., Ånggård E. Preparation of deuterium labelled catecholamine precursors and metabolites for use as internal standards in mass fragmentographic determination and for turnover studies. J. Labelled Compd. 1974; 10: 187
  • Fri C.-G., Wiesel F.-A., Sedvall G. Mass fragmentographic analysis of homovanillic acid and its homoiso analogue in cerebrospinal fluid using the α-dideutero acid as internal standard. Psychopharmacologia 1974; 35: 295
  • Ånggård E., Lewander T., Sjöquist B. Determination of homovanillic acid turnover in man. Life Sci. 1974; 15: 111
  • Fyrö B., Wode-Helgodt B., Borg S., Sedvall G. The effect of chlorpromazine on homovanillic acid levels in cerebrospinal fluid of schizophrenic patients. Psychopharmacologia 1974; 35: 287
  • Mayevsky A., Sjöquist B., Fri C.-G., Samuel D., Sedvall G. Incorporation of into homovanillic acid of rat brain during exposure to oxygen 18 containing atmospheres. Biochem. Biophys. Res. Commun. 1973; 51: 746
  • Narasimhachari N. The use of isomeric compounds as internal standards for quantitative mass fragmentography of biological samples. Determination of homovanillic acid in cerebrospinal fluid and plasma. Biochem. Biophys. Res. Commun. 1974; 56: 36
  • Gordon E. K., Oliver J., Kopin I. J. The effect of probemecid on catecholamine metabolites in human cerebrospinal fluid analyzed by mass fragmentography. Life Sci. 1975; 16: 1527
  • Muskiet F. A. J., Fremouw-Ottevangers D. C., Meulen J., Wothers B. G., de Vries J. A. Determination of some L-3, 4-dihydroxyphenylalanine and dopamine metabolites in urine by means of mass fragmentography. Clin. Chem. 1978; 24: 122
  • Bertilsson L. Quantitative determination of 4-hydroxy-3-methoxyhenyl glycol and its conjugates in cerebrospinal fluid by mass fragmentography. J. Chromatogr. 1973; 87: 147
  • Sjöquist B., Lindström B., Änggård E. Mass fragmentographic determination of 4-hydroxy-3-methoxyphenylglycol (HMPG) in urine, cerebrospinal fluid, plasma and tissues using a deuteriumlabeled internal standard. J. Chromatogr. 1975; 105: 309
  • Takahashi S., Godse D. D., Warsh J. J., Stancer H. C. A gas chromatographic - mass spectrometry (GC-MS) assay for 3-methoxy-4-hydroxyphenyleneglycol and vanilmandelic acid in human serum. Clin. Chim. Acta 1977; 81: 183
  • Wang M.-T., Yoshika M., Imai K., Tamura Z. Gas-liquid chromatographic and mass fragmentographic determination of 3-O-methylated catecholamines in human plasma. Clin. Chem. Acta 1975; 63: 21
  • Fri C.-G., Wiesel F.-A., Sedvall G. Simultaneous quantitation of homovanillic acid and 5-hydroxyindolacetic acid in cerebrospinal fluid by mass fragmentography. Life Sci. 1974; 14: 2469
  • Bertilsson L., Palmer L. Indole-3-acetic acid in human cerebrospinal fluid: identification and quantitation by mass fragmentography. Science 1972; 177: 74
  • Jenden D. J., Roch M., Booth R. A. Simultaneous measurement of deuterium label tracer variants of choline and acetylcholine in subpicomole quantities by gas chromatography - mass spectrometry. Anal. Biochem. 1973; 55: 438
  • Walker R. W., Vandeheuvel W. J. A., Wolf F. J., Noll R. M., Duggan D. E. A stable isotope gas liquid chromatographic - mass spectrometry assay for determination uric acid body pool size. Anal. Biochem. 1977; 77: 235
  • Sweetman L., Nyhan W. L., Klein P. D., Szczepanik P. A. Glycine 1-1C in the investigation of children with inborn errors of metabolism. Proc. First Int. Conf. Stable Isotopes in Chemistry. May, 9 to 111973. Biology, and Medicine, Argonne National Laboratories, 404
  • Björkhem I., Blomstrand R., Öhman G. Mass fragmentography of creatinine proposed as a reference method. Clin. Chem. 1977; 23: 2114
  • Lim C. K., Richmond W., Robinson D. P., Brown S. S. Towards a definitive assay of creatinine in serum and in urine: separation by high-performance liquid chromatography. J. Chromatogr. 1978; 145: 41
  • Björkhem I., Blomstrand R., Öhman G. Determination of serum urea by mass fragmentography. Clin. Chim. Acta 1976; 71: 199
  • Bertilsson L., Palmer L. Determination of isomeric acid dopamine metabolites in human cerebrospinal fluid by mass fragmentography. Life Sci. 1973; 13: 859
  • Öhman G. Clin. Chem. Acta 1979, in press

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