Literature DB >> 24300588

Dithranol as a matrix for matrix assisted laser desorption/ionization imaging on a fourier transform ion cyclotron resonance mass spectrometer.

Cuong H Le1, Jun Han, Christoph H Borchers.   

Abstract

Mass spectrometry imaging (MSI) determines the spatial localization and distribution patterns of compounds on the surface of a tissue section, mainly using MALDI (matrix assisted laser desorption/ionization)-based analytical techniques. New matrices for small-molecule MSI, which can improve the analysis of low-molecular weight (MW) compounds, are needed. These matrices should provide increased analyte signals while decreasing MALDI background signals. In addition, the use of ultrahigh-resolution instruments, such as Fourier transform ion cyclotron resonance (FTICR) mass spectrometers, has the ability to resolve analyte signals from matrix signals, and this can partially overcome many problems associated with the background originating from the MALDI matrix. The reduction in the intensities of the metastable matrix clusters by FTICR MS can also help to overcome some of the interferences associated with matrix peaks on other instruments. High-resolution instruments such as the FTICR mass spectrometers are advantageous as they can produce distribution patterns of many compounds simultaneously while still providing confidence in chemical identifications. Dithranol (DT; 1,8-dihydroxy-9,10-dihydroanthracen-9-one) has previously been reported as a MALDI matrix for tissue imaging. In this work, a protocol for the use of DT for MALDI imaging of endogenous lipids from the surfaces of mammalian tissue sections, by positive-ion MALDI-MS, on an ultrahigh-resolution hybrid quadrupole FTICR instrument has been provided.

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Year:  2013        PMID: 24300588      PMCID: PMC3992112          DOI: 10.3791/50733

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  47 in total

1.  Direct tissue analysis using matrix-assisted laser desorption/ionization mass spectrometry: practical aspects of sample preparation.

Authors:  Sarah A Schwartz; Michelle L Reyzer; Richard M Caprioli
Journal:  J Mass Spectrom       Date:  2003-07       Impact factor: 1.982

2.  Sublimation as a method of matrix application for mass spectrometric imaging.

Authors:  Joseph A Hankin; Robert M Barkley; Robert C Murphy
Journal:  J Am Soc Mass Spectrom       Date:  2007-06-30       Impact factor: 3.109

3.  Molecular analysis of tumor margins by MALDI mass spectrometry in renal carcinoma.

Authors:  Stacey R Oppenheimer; Deming Mi; Melinda E Sanders; Richard M Caprioli
Journal:  J Proteome Res       Date:  2010-05-07       Impact factor: 4.466

4.  Importance of solubility in the sample preparation of poly(ethylene terephthalate) for MALDI TOFMS.

Authors:  Andrew J Hoteling; Thomas H Mourey; Kevin G Owens
Journal:  Anal Chem       Date:  2005-02-01       Impact factor: 6.986

5.  Distribution of phospholipid molecular species in autogenous access grafts for hemodialysis analyzed using imaging mass spectrometry.

Authors:  Hiroki Tanaka; Nobuhiro Zaima; Naoto Yamamoto; Minoru Suzuki; Yuuki Mano; Hiroyuki Konno; Naoki Unno; Mitsutoshi Setou
Journal:  Anal Bioanal Chem       Date:  2011-03-16       Impact factor: 4.142

Review 6.  Analytical strategies in lipidomics and applications in disease biomarker discovery.

Authors:  Chunxiu Hu; Rob van der Heijden; Mei Wang; Jan van der Greef; Thomas Hankemeier; Guowang Xu
Journal:  J Chromatogr B Analyt Technol Biomed Life Sci       Date:  2009-02-05       Impact factor: 3.205

Review 7.  Analysis of tissue specimens by matrix-assisted laser desorption/ionization imaging mass spectrometry in biological and clinical research.

Authors:  Jeremy L Norris; Richard M Caprioli
Journal:  Chem Rev       Date:  2013-02-11       Impact factor: 60.622

8.  Matrix-assisted laser desorption/ionization imaging mass spectrometry for direct measurement of clozapine in rat brain tissue.

Authors:  Yunsheng Hsieh; Roger Casale; Elaine Fukuda; Jiwen Chen; Ian Knemeyer; Julia Wingate; Richard Morrison; Walter Korfmacher
Journal:  Rapid Commun Mass Spectrom       Date:  2006       Impact factor: 2.419

9.  Acid-base-driven matrix-assisted mass spectrometry for targeted metabolomics.

Authors:  Rohit Shroff; Lubomír Rulísek; Jan Doubsky; Ales Svatos
Journal:  Proc Natl Acad Sci U S A       Date:  2009-06-11       Impact factor: 11.205

10.  Imaging mass spectrometry detection of gangliosides species in the mouse brain following transient focal cerebral ischemia and long-term recovery.

Authors:  Shawn N Whitehead; Kenneth H N Chan; Sandhya Gangaraju; Jacqueline Slinn; Jianjun Li; Sheng T Hou
Journal:  PLoS One       Date:  2011-06-08       Impact factor: 3.240

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  1 in total

1.  Lipid Landscape of the Human Retina and Supporting Tissues Revealed by High-Resolution Imaging Mass Spectrometry.

Authors:  David M G Anderson; Jeffrey D Messinger; Nathan H Patterson; Emilio S Rivera; Ankita Kotnala; Jeffrey M Spraggins; Richard M Caprioli; Christine A Curcio; Kevin L Schey
Journal:  J Am Soc Mass Spectrom       Date:  2020-07-24       Impact factor: 3.109

  1 in total

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