Show simple item record

Detection and quantification of vitamins in microliter volumes of biological samples by LC‐MS for clinical screening

dc.contributor.authorKhaksari, Maryam
dc.contributor.authorMazzoleni, Lynn R.
dc.contributor.authorRuan, Chunhai
dc.contributor.authorSong, Peng
dc.contributor.authorHershey, Neil D.
dc.contributor.authorKennedy, Robert T.
dc.contributor.authorBurns, Mark A.
dc.contributor.authorMinerick, Adrienne R.
dc.date.accessioned2018-11-20T15:33:07Z
dc.date.available2019-12-02T14:55:09Zen
dc.date.issued2018-10
dc.identifier.citationKhaksari, Maryam; Mazzoleni, Lynn R.; Ruan, Chunhai; Song, Peng; Hershey, Neil D.; Kennedy, Robert T.; Burns, Mark A.; Minerick, Adrienne R. (2018). "Detection and quantification of vitamins in microliter volumes of biological samples by LC‐MS for clinical screening." AIChE Journal 64(10): 3709-3718.
dc.identifier.issn0001-1541
dc.identifier.issn1547-5905
dc.identifier.urihttps://hdl.handle.net/2027.42/146352
dc.publisherJohn Wiley & Sons, Inc.
dc.subject.otherfat‐soluble vitamins
dc.subject.otherwater‐soluble vitamins
dc.subject.otherLC‐MS
dc.subject.otherblood serum
dc.subject.othertear
dc.titleDetection and quantification of vitamins in microliter volumes of biological samples by LC‐MS for clinical screening
dc.typeArticleen_US
dc.rights.robotsIndexNoFollow
dc.subject.hlbsecondlevelChemical Engineering
dc.subject.hlbtoplevelEngineering
dc.subject.hlbtoplevelScience
dc.description.peerreviewedPeer Reviewed
dc.description.bitstreamurlhttps://deepblue.lib.umich.edu/bitstream/2027.42/146352/1/aic16345_am.pdf
dc.description.bitstreamurlhttps://deepblue.lib.umich.edu/bitstream/2027.42/146352/2/aic16345.pdf
dc.identifier.doi10.1002/aic.16345
dc.identifier.sourceAIChE Journal
dc.identifier.citedreferenceHarris DC. Quantitative Chemical Analysis. 8th ed. New York, NY: W. H. Freeman and Company; 2010.
dc.identifier.citedreferenceTaguchi K, Fukusaki E, Bamba T. Simultaneous analysis for water‐ and fat‐soluble vitamins by a novel single chromatography technique unifying supercritical fluid chromatography and liquid chromatography. J Chromatogr A. 2014; 1362: 270 ‐ 277.
dc.identifier.citedreferenceVan Agtmaal EJ, Bloem MW, Speek AJ, Saowakontha S, Schreurs WHP, Vanhaeringen NJ. The effect of vitamin‐A supplementation on tear fluid retinol levels of marginally nourished preschool‐children. Curr Eye Res 1988; 7 ( 1 ): 43 – 48.
dc.identifier.citedreferenceVan Agtmaal EJ, Bloem MW, Speek AJ, Saowakontha S, Van Hearingen NJ, Schreurs WHP. Effect of vitamin A supplements on the retinol in tear fluid. Voeding (The Hague). 1989; 50 ( 6–7 ): 198 – 199.
dc.identifier.citedreferenceLin Y, Ubels JL, Schotanus MP, et al. Enhancement of vitamin D metabolites in the eye following vitamin D3 supplementation and UV‐B irradiation. Curr Eye Res. 2012; 37 ( 10 ): 871 ‐ 878.
dc.identifier.citedreferencePaterson CA, O’Rourke MC. Vitamin C levels in human tears. Arch Ophthalmol. 1987; 105 ( 3 ): 376 ‐ 377.
dc.identifier.citedreferenceVenkata SJA, Narayanasamy A, Srinivasan V, et al. Tear ascorbic acid levels and the total antioxidant status in contact lens wearers: a pilot study. Indian J Ophthalmol. 2009; 57 ( 4 ): 289 ‐ 292.
dc.identifier.citedreferenceMayo Clinic. https://www.mayomedicallaboratories.com/test-catalog [last accessed May 29, 2018].
dc.identifier.citedreferenceNational Health and Nutrition Examination Survey (NHANES) Laboratory Data. https://wwwn.cdc.gov/nchs/nhanes/search/datapage.aspx?Component=Laboratory. Accessed May 29, 2018.
dc.identifier.citedreferenceLu J, Frank EL. Rapid HPLC measurement of thiamine and its phosphate esters in whole blood. Clin Chem. 2008; 54 ( 5 ): 901 ‐ 906.
dc.identifier.citedreferenceKhaksari M. Rapid nutritional analysis from infant tears [PhD Dissertation]. ProQuest: Chemical Engineering, Michigan Technological Unversity; 2016.
dc.identifier.citedreferenceRentel C, Strohschein S, Albert K, Bayer E. Silver‐plated vitamins: a method of detecting tocopherols and carotenoids in LC/ESI‐MS coupling. Anal Chem. Oct 15 1998; 70 ( 20 ): 4394 ‐ 4400.
dc.identifier.citedreferenceMontero O, Ramirez M, Sanchez‐Guijo A, Gonzalez C. Determination of lipoic acid, Trolox methyl ether and tocopherols in human plasma by liquid‐chromatography and ion‐trap tandem mass spectrometry. Biomed Chromatogr. 2012; 26 ( 10 ): 1228 ‐ 1233.
dc.identifier.citedreferenceHampel D, York ER, Allen LH. Ultra‐performance liquid chromatography tandem mass‐spectrometry (UPLC‐MS/MS) for the rapid, simultaneous analysis of thiamin, riboflavin, flavin adenine dinucleotide, nicotinamide and pyridoxal in human milk. J Chromatogr B Analyt Technol Biomed Life Sci. 2012; 903: 7 ‐ 13.
dc.identifier.citedreferenceRogatsky E, Jayatillake H, Goswami G, Tomuta V, Stein D. Sensitive LC MS quantitative analysis of carbohydrates by Cs+ attachment. J Am Soc Mass Spectrom. 2005; 16 ( 11 ): 1805 ‐ 1811.
dc.identifier.citedreferenceVan Meulebroek L, Vanhaecke L, De Swaef T, Steppe K, De Brabander H. U‐HPLC‐MS/MS to quantify liposoluble antioxidants in red‐ripe tomatoes, grown under different salt stress levels. J Agric Food Chem 2012; 60 ( 2 ): 566 – 573.
dc.identifier.citedreferenceLauridsen C, Leonard SW, Griffin DA, Liebler DC, McClure TD, Traber MG. Quantitative analysis by liquid chromatography–tandem mass spectrometry of deuterium‐labeled and unlabeled vitamin E in biological samples. Anal Biochem. 2001; 289 ( 1 ): 89 ‐ 95.
dc.identifier.citedreferenceMayo Clinic. https://www.mayomedicallaboratories.com/test-catalog/Overview/9198. Accessed April 9, 2018.
dc.identifier.citedreferenceFairbanks V, Klee G. Biochemical aspects of hematology. In: Burtis CA, Ashwood ER, eds. Tietz Textbook of Clinical Chemistry. Philadelphia: WB Saunders Company; 1999: 1690 ‐ 1698.
dc.identifier.citedreferenceJohnson LE. Vitamin Deficiency, Dependency, and Toxicity. Merck Manual for Health Care Professionals. Kenilworth, NJ: Merck Sharp & Dohme Corporation https://www.merckmanuals.com/professional, Accessed: May 23, 2016.
dc.identifier.citedreferenceBaker H. Assessment of biotin status: clinical implications. Ann N Y Acad Sci. 1985; 447 ( 1 ): 129 ‐ 132.
dc.identifier.citedreferenceVogeser M, Kyriatsoulis A, Huber E, Kobold U. Candidate reference method for the quantification of circulating 25‐hydroxyvitamin D3 by liquid chromatography‐tandem mass spectrometry. Clin Chem. 2004; 50 ( 8 ): 1415 ‐ 1417.
dc.identifier.citedreferenceMcClain CJ, Baker H, Onstad GR. Biotin deficiency in an adult during home parenteral nutrition. JAMA. 1982; 247 ( 22 ): 3116 ‐ 3117.
dc.identifier.citedreferenceLippi G, Franchini M. Vitamin K in neonates: facts and myths. Blood Transfus. 2011; 9 ( 1 ): 4 ‐ 9.
dc.identifier.citedreferenceSaenger AK, Laha TJ, Bremner DE, Sadrzadeh SM. Quantification of serum 25‐hydroxyvitamin D(2) and D(3) using HPLC‐tandem mass spectrometry and examination of reference intervals for diagnosis of vitamin D deficiency. Am J Clin Pathol. 2006; 125 ( 6 ): 914 ‐ 920.
dc.identifier.citedreferencePapadoyannis IN, Tsioni GK, Samanidou VF. Simultaneous determination of nine water and fat soluble vitamins after SPE separation and RP‐HPLC analysis in pharmaceutical preparations and biological fluids. J Liq Chromatogr Relat Technol. 1997; 20 ( 19 ): 3203 ‐ 3231.
dc.identifier.citedreferencePhinney KW, Rimmer CA, Thomas JB, Sander LC, Sharpless KE, Wise SA. Isotope dilution liquid chromatography‐mass spectrometry methods for fat‐ and water‐soluble vitamins in nutritional formulations. Anal Chem. 2010; 83 ( 1 ): 92 ‐ 98.
dc.identifier.citedreferenceBall GFM. Vitamins: Their Role in the Human Body. Ames, IA: Blackwell Science; 2004.
dc.identifier.citedreferenceCrooke A, Guzman‐Aranguez A, Peral A, Abdurrahman MKA, Pintor J. Nucleotides in ocular secretions: their role in ocular physiology. Pharmacol Ther. 2008; 119 ( 1 ): 55 ‐ 73.
dc.identifier.citedreferenceKaufman HE. The Cornea. New York, NY: Churchill Livingstone; 1998: 1104.
dc.identifier.citedreferenceKhaksari M, Mazzoleni LR, Ruan C, Kennedy RT, Minerick AR. Determination of water‐soluble and fat‐soluble vitamins in tears and blood serum of infants and parents by liquid chromatography/mass spectrometry. Exp Eye Res. 2017; 155: 54 ‐ 63.
dc.identifier.citedreferenceKhaksari M, Mazzoleni LR, Ruan C, Kennedy RT, Minerick AR. Data representing two separate LC‐MS methods for detection and quantification of water‐soluble and fat‐soluble vitamins in tears and blood serum. Data Brief. 2017; 11: 316 ‐ 330.
dc.identifier.citedreferenceLu B, Ren Y, Huang B, Liao W, Cai Z, Tie X. Simultaneous determination of four water‐soluble vitamins in fortified infant foods by ultra‐performance liquid chromatography coupled with triple quadrupole mass spectrometry. J Chromatogr Sci. 2008; 46 ( 3 ): 225 ‐ 232.
dc.identifier.citedreferenceEkinci R, Kadakal Ç. Determination of seven water‐soluble vitamins in Tarhana, a traditional Turkish cereal food, by high‐performance liquid chromatography. Acta Chromatogr. 2005; 15: 289 ‐ 297.
dc.identifier.citedreferenceChen Z, Chen B, Yao S. High‐performance liquid chromatography/electrospray ionization‐mass spectrometry for simultaneous determination of taurine and 10 water‐soluble vitamins in multivitamin tablets. Anal Chim Acta. 2006; 569 ( 1–2 ): 169 ‐ 175.
dc.identifier.citedreferenceChatzimichalakis PF, Samanidou VF, Verpoorte R, Papadoyannis IN. Development of a validated HPLC method for the determination of B‐complex vitamins in pharmaceuticals and biological fluids after solid phase extraction. J Sep Sci. 2004; 27 ( 14 ): 1181 ‐ 1188.
dc.identifier.citedreferenceGoldschmidt RJ, Wolf WR. Simultaneous determination of water‐soluble vitamins in SRM 1849 infant/adult nutritional formula powder by liquid chromatography‐isotope dilution mass spectrometry. Anal Bioanal Chem. May 2010; 397 ( 2 ): 471 ‐ 481.
dc.identifier.citedreferencePriego Capote F, Jimenez JR, Granados JM, de Castro MD. Identification and determination of fat‐soluble vitamins and metabolites in human serum by liquid chromatography/triple quadrupole mass spectrometry with multiple reaction monitoring. Rapid Commun Mass Spectrom. 2007; 21 ( 11 ): 1745 ‐ 1754.
dc.identifier.citedreferenceWang L‐H, Huang S‐H. Determination of vitamins A, D, E, and K in human and bovine serum, and β‐carotene and vitamin A palmitate in cosmetic and pharmaceutical products, by isocratic HPLC. Chromatographia. 2002; 55 ( 5 ): 289 ‐ 296.
dc.identifier.citedreferenceBlanco D, Fernandez MP, Gutierrez MD. Simultaneous determination of fat‐soluble vitamins and provitamins in dairy products by liquid chromatography with a narrow‐bore column. Analyst. 2000; 125 ( 3 ): 427 ‐ 431.
dc.identifier.citedreferenceDelgado Zamarreño MM, Sánchez Pérez A, Gómez Pérez C, Hernández Méndez J. High‐performance liquid chromatography with electrochemical detection for the simultaneous determination of vitamin A, D3 and E in milk. J Chromatogr A. 1992; 623 ( 1 ): 69 ‐ 74.
dc.identifier.citedreferenceScalia S, Ruberto G, Bonina F. Determination of vitamin A, vitamin E, and their esters in tablet preparations using supercritical‐fluid extraction and HPLC. J Pharm Sci. 1995; 84 ( 4 ): 433 ‐ 436.
dc.identifier.citedreferenceMidttun O, Ueland PM. Determination of vitamins A, D and E in a small volume of human plasma by a high‐throughput method based on liquid chromatography/tandem mass spectrometry. Rapid Commun Mass Spectrom. 2011; 25 ( 14 ): 1942 ‐ 1948.
dc.identifier.citedreferenceKüçükbay FZ, Açari İK. Simultaneous determination of water and fat‐soluble vitamins in Pekmez samples by high performance liquid chromatography coupled with diode array detection. Asian J Chem. 2010; 22 ( 5 ): 4083 ‐ 4091.
dc.identifier.citedreferenceMidttun O, McCann A, Aarseth O, et al. Combined measurement of 6 fat‐soluble vitamins and 26 water‐soluble functional vitamin markers and amino acids in 50 μL of serum or plasma by high‐throughput mass spectrometry. Anal Chem. 2016; 88 ( 21 ): 10427 ‐ 10436.
dc.identifier.citedreferenceKlejdus B, Petrlová J, Potěšil D, et al. Simultaneous determination of water‐ and fat‐soluble vitamins in pharmaceutical preparations by high‐performance liquid chromatography coupled with diode array detection. Anal Chim Acta. 2004; 520 ( 1‐2 ): 57 ‐ 67.
dc.identifier.citedreferenceEiff J, Monakhova YB, Diehl BWK. Multicomponent analysis of fat‐ and water‐soluble vitamins and auxiliary substances in multivitamin preparations by qNMR. J Agric Food Chem. 2015; 63 ( 12 ): 3135 ‐ 3143.
dc.identifier.citedreferenceMonakhova YB, Mushtakova SP, Kolesnikova SS, Astakhov SA. Chemometrics‐assisted spectrophotometric method for simultaneous determination of vitamins in complex mixtures. Anal Bioanal Chem. 2010; 397 ( 3 ): 1297 ‐ 1306.
dc.identifier.citedreferenceSvidritskii EP, Pashkova EB, Pirogov AV, Shpigun OA. Simultaneous determination of fat‐ and water‐soluble vitamins by microemulsion electrokinetic chromatography. J Anal Chem. 2010; 65 ( 3 ): 287 ‐ 292.
dc.identifier.citedreferenceSantos J, Mendiola JA, Oliveira MBPP, Ibáñez E, Herrero M. Sequential determination of fat‐ and water‐soluble vitamins in green leafy vegetables during storage. J Chromatogr A. 2012; 1261: 179 ‐ 188.
dc.identifier.citedreferenceTayade AB, Dhar P, Kumar J, Sharma M, Chaurasia OP, Srivastava RB. Sequential determination of fat‐ and water‐soluble vitamins in Rhodiola imbricata root from trans‐Himalaya with rapid resolution liquid chromatography/tandem mass spectrometry. Anal Chim Acta. 2013; 789: 65 ‐ 73.
dc.identifier.citedreferenceMendiola JA, Marin FR, Señoráns FJ, et al. Profiling of different bioactive compounds in functional drinks by high‐performance liquid chromatography. J Chromatogr A. 2008; 1188 ( 2 ): 234 ‐ 241.
dc.identifier.citedreferenceFerreiro‐Vera C, Priego‐Capote F, Luque de Castro MD. An approach for quantitative analysis of vitamins D and B9 and their metabolites in human biofluids by on‐line orthogonal sample preparation and sequential mass spectrometry detection. Analyst. 2013; 138 ( 7 ): 2146 ‐ 2155.
dc.owningcollnameInterdisciplinary and Peer-Reviewed


Files in this item

Show simple item record

Remediation of Harmful Language

The University of Michigan Library aims to describe library materials in a way that respects the people and communities who create, use, and are represented in our collections. Report harmful or offensive language in catalog records, finding aids, or elsewhere in our collections anonymously through our metadata feedback form. More information at Remediation of Harmful Language.

Accessibility

If you are unable to use this file in its current format, please select the Contact Us link and we can modify it to make it more accessible to you.