Solvent-resistant microfluidic paper-based analytical device/spray mass spectrometry for quantitative analysis of C


Journal

Journal of mass spectrometry : JMS
ISSN: 1096-9888
Titre abrégé: J Mass Spectrom
Pays: England
ID NLM: 9504818

Informations de publication

Date de publication:
Apr 2021
Historique:
revised: 28 06 2020
received: 07 05 2020
accepted: 30 06 2020
pubmed: 14 8 2020
medline: 27 10 2021
entrez: 14 8 2020
Statut: ppublish

Résumé

We developed a highly efficient and low-cost organic solvents-resistant microfluidic paper-based analytical device (μPAD) coupled with paper spray mass spectrometry (PS-MS) for quantitative determination of C

Identifiants

pubmed: 32789982
doi: 10.1002/jms.4611
doi:

Substances chimiques

Biomarkers 0
Carbon Radioisotopes 0
Carbon-18 0
Ceramides 0
Ions 0
Metals 0
Solvents 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e4611

Subventions

Organisme : Changwon National University

Informations de copyright

© 2020 John Wiley & Sons, Ltd.

Références

Stith JL, Velazquez FN, Obeid LM. Advances in determining signaling mechanisms of ceramide and role in disease. J Lipid Res. 2019;60(5):913-918.
Zelnik ID, Ventura AE, Kim JL, Silva LC, Futerman AH. The role of ceramide in regulating endoplasmic reticulum function. Biochimica et Biophysica Acta. 2020;1865(1):158489.
de Carvalho LP, Tan SH, Ow G-S, et al. Plasma ceramides as prognostic biomarkers and their arterial and myocardial tissue correlates in acute myocardial infarction. JACC Basic Transl Sci. 2018;3(2):163-175.
Madigan JP, Robey RW, Poprawski JE, et al. A role for ceramide glycosylation in resistance to oxaliplatin in colorectal cancer. Exp Cell Res. 2020;388(2):111860.
Sharipov M, Azizov S, Kakhkhorov S, Yunuskhodjaev A, Lee Y-I. Emerging spectroscopic techniques for prostate cancer diagnosis. Appl Spectrosc Rev. 2018;1-27.
Turpin-Nolan SM, Hammerschmidt P, Chen W, et al. CerS1-derived C18:0 ceramide in skeletal muscle promotes obesity-induced insulin resistance. Cell Rep. 2019;26(1):1-10.
Kurz J, Parnham MJ, Geisslinger G, Schiffmann S. Ceramides as novel disease biomarkers. Trends Mol Med. 2019;25(1):20-32.
Bergman BC, Brozinick JT, Strauss A, et al. Muscle sphingolipids during rest and exercise: a C18:0 signature for insulin resistance in humans. Diabetologia. 2016;59(4):785-798.
Makdessi SA, Sweidan H, Schmid E, Weimar U, Gulbins E, Lang F. Quantitative determination of ceramide molecular species in dendritic cells. Cell Physiol Biochem. 2016;39(4):1608-1617.
Khoury S, Masson E, Sibille E, Cabaret S, Berdeaux O. Rapid sample preparation for ganglioside analysis by liquid chromatography mass spectrometry. J Chromatogr B. 2020;1137, 121956.
Xu H, Xia A, Luo J, et al. A sample-to-answer quantitative platform for point-of-care testing of biochemical markers in whole blood. Sens Actuators B. 2020;308, 127750.
Darwish RS, Shawky E, Hammoda HM, Harraz FM. A new thin-layer chromatography-direct bioautography assay for the qualitative and quantitative determination of peroxidase inhibitors in plant extracts. JPC J Planar Chromatogr Modern TLC. 2020;33(1):3-9.
Zhou J, Li B, Qi A, et al. ZnSe quantum dot based ion imprinting technology for fluorescence detecting cadmium and lead ions on a three-dimensional rotary paper-based microfluidic chip. Sens Actuators B. 2020;305, 127462.
Mabbott S, Fernandes SC, Schechinger M, et al. Detection of cardiovascular disease associated miR-29a using paper-based microfluidics and surface enhanced Raman scattering. Analyst. 2020;145(3):983-991.
Liu Y, Shangguan J-W, Xu B-Y, Yu X-D, Xu J-J, Chen H-Y. Abnormal liquid chasing effect in paper capillary enables versatile gradient generation on microfluidic paper analytical devices. Anal Chem. 2020;92(3):2722-2730.
Lim WY, Goh C-H, Thevarajah TM, Goh BT, Khor SM. Using SERS-based microfluidic paper-based device (μPAD) for calibration-free quantitative measurement of AMI cardiac biomarkers. Biosens Bioelectron. 2020;147, 111792.
Kaneta T, Alahmad W, Varanusupakul P. Microfluidic paper-based analytical devices with instrument-free detection and miniaturized portable detectors. Appl Spectrosc Rev. 2018;1-25.
Xia Y, Si J, Li Z. Fabrication techniques for microfluidic paper-based analytical devices and their applications for biological testing: a review. Biosens Bioelectron. 2016;77:774-789.
Carrilho E, Martinez AW, Whitesides GM. Understanding wax printing: a simple micropatterning process for paper-based microfluidics. Anal Chem. 2009;81(16):7091-7095.
Lim J-Y, Kumar AP, Lee Y-I. Investigation on C2-ceramide complexes with transition metal ions using electrospray ionization tandem mass spectrometry. Eur J Mass Spectrom. 2008;14(2):87-97.
Picklo MJ, Hanson BK, Bukowski MR. Simplified mass spectrometric analysis of ceramides using a common collision energy. Lipids. 2019;54(8):471-477.
Pu F, Chiang S, Zhang W, Ouyang Z. Direct sampling mass spectrometry for clinical analysis. Analyst. 2019;144(4):1034-1051.
Krenkel H, Hartmane E, Piras C, Brown J, Morris M, Cramer R. Advancing liquid atmospheric pressure matrix-assisted laser desorption/ionization mass spectrometry toward ultrahigh-throughput analysis. Anal Chem. 2020;92(4):2931-2936.
Tang S, Cheng H, Yan X. On-demand electrochemical epoxidation in nano-electrospray ionization mass spectrometry to locate carbon-carbon double bonds. Angew Chem Int Ed. 2020;59:209-214.
Meng X, Hu J, Chao Z, Liu Y, Ju H, Cheng Q. Thermoresponsive arrays patterned via photoclick chemistry: smart MALDI plate for protein digest enrichment, desalting, and direct ms analysis. ACS Appl Mater Inter. 2018;10:1324-1333.
Steuer AE, Poetzsch M, Kraemer T. MALDI-MS drug analysis in biological samples: opportunities and challenges. Bioanalysis. 2016;8(17):1859-1878.
Stopka SA, Vertes A. In: Shrestha B, ed. Toward Single Cell Molecular Imaging by Matrix-Free Nanophotonic Laser Desorption Ionization Mass Spectrometry, in Single Cell Metabolism: Methods and Protocols. New York: New York, NY: Springer; 2020:135-146.
Espy RD, Teunissen SF, Manicke NE, et al. Paper spray and extraction spray mass spectrometry for the direct and simultaneous quantification of eight drugs of abuse in whole blood. Anal Chem. 2014;86(15):7712-7718.
Liu J, Wang H, Manicke NE, Lin J-M, Cooks RG, Ouyang Z. Development, characterization, and application of paper spray ionization. Anal Chem. 2010;82(6):2463-2471.
Jhang C-S, Lee H, He Y-S, Liu J-T, Lin C-H. Rapid screening and determination of 4-chloroamphetamine in saliva by paper spray-mass spectrometry and capillary electrophoresis-mass spectrometry. Electrophoresis. 2012;33(19-20):3073-3078.
Manicke NE, Bills BJ, Zhang C. Analysis of biofluids by paper spray MS: advances and challenges. Bioanalysis. 2016;8(6):589-606.
Wang H, Manicke NE, Yang Q, et al. Direct analysis of biological tissue by paper spray mass spectrometry. Anal Chem. 2011;83(4):1197-1201.
Wang H, Ren Y, McLuckey MN, et al. Direct quantitative analysis of nicotine alkaloids from biofluid samples using paper spray mass spectrometry. Anal Chem. 2013;85(23):11540-11544.
Wang H, Liu J, Cooks RG, Ouyang Z. Paper spray for direct analysis of complex mixtures using mass spectrometry. Angew Chem. 2010;122(5):889-892.
Christov IC, Cognet V, Shidhore TC, Stone HA. Flow rate-pressure drop relation for deformable shallow microfluidic channels. J Fluid Mech. 2018;841:267-286.
Sackmann EK, Fulton AL, Beebe DJ. The present and future role of microfluidics in biomedical research. Nature. 2014;507(7491):181-189.
An J-Y, Azizov S, Kumar AP, Lee Y-I. Quantitative analysis of artificial sweeteners by capillary electrophoresis with a dual-capillary design of molecularly imprinted solid-phase extractor. Bull Korean Chem Soc. 2018;39(11):1315-1319.
Lin C-H, Liao W-C, Chen H-K, Kuo T-Y. Paper spray-MS for bioanalysis. Bioanalysis. 2014;6(2):199-208.
Damon DE, Davis KM, Moreira CR, Capone P, Cruttenden R, Badu-Tawiah AK. Direct biofluid analysis using hydrophobic paper spray mass spectrometry. Anal Chem. 2016;88(3):1878-1884.
Yang Q, Wang H, Maas JD, et al. Paper spray ionization devices for direct, biomedical analysis using mass spectrometry. Int J Mass Spectrom. 2012;312:201-207.
Trofimchuk E, Hu Y, Nilghaz A, Hua MZ, Sun S, Lu X. Development of paper-based microfluidic device for the determination of nitrite in meat. Food Chem. 2020;316, 126396.
Flick TG, Williams ER. Williams, supercharging with trivalent metal ions in native mass spectrometry. J Am Soc Mass Spectrom. 2012;23:1885-1895.
Feng C, Commodore JJ, Cassady CJ. The use of chromium (III) to supercharge peptides by protonation at low basicity sites. J Am Soc Mass Spectrom. 2015;26(2):347-358.
Watson HM, Vincent JB, Cassady CJ. Effects of transition metal ion coordination on the collision-induced dissociation of polyalanines. J Mass Spectrom. 2011;46(11):1099-1107.
Commodore JJ, Jing X, Cassady CJ. Optimization of electrospray ionization conditions to enhance formation of doubly protonated peptide ions with and without addition of chromium (III). Rapid Commun Mass Spectrom. 2017;31(13):1129-1136.
Hanamatsu H, Ohnishi S, Sakai S, et al. Altered levels of serum sphingomyelin and ceramide containing distinct acyl chains in young obese adults. Nutr Diabetes. 2014;4(10):e141.

Auteurs

Shavkatjon Azizov (S)

Department of Chemistry, Changwon National University, Changwon, 51140, Republic of Korea.

Mirkomil Sharipov (M)

Department of Chemistry, Changwon National University, Changwon, 51140, Republic of Korea.

Jae-Min Lim (JM)

Department of Chemistry, Changwon National University, Changwon, 51140, Republic of Korea.

Salah M Tawfik (SM)

Department of Chemistry, Changwon National University, Changwon, 51140, Republic of Korea.

Nuritdin Kattaev (N)

Department of Chemistry, National University of Uzbekistan, Tashkent, 100174, Uzbekistan.

Yong-Ill Lee (YI)

Department of Chemistry, Changwon National University, Changwon, 51140, Republic of Korea.

Articles similaires

[Redispensing of expensive oral anticancer medicines: a practical application].

Lisanne N van Merendonk, Kübra Akgöl, Bastiaan Nuijen
1.00
Humans Antineoplastic Agents Administration, Oral Drug Costs Counterfeit Drugs

Smoking Cessation and Incident Cardiovascular Disease.

Jun Hwan Cho, Seung Yong Shin, Hoseob Kim et al.
1.00
Humans Male Smoking Cessation Cardiovascular Diseases Female
Humans United States Aged Cross-Sectional Studies Medicare Part C
1.00
Humans Yoga Low Back Pain Female Male

Classifications MeSH