METABOLOMICS: LC-MS ANALYSIS DEVELOPMENT
|
|
|
- John Greer
- 10 years ago
- Views:
Transcription
1 METABLMICS: LC-MS ANALYSIS DEVELPMENT V.V. Tolstikov 1, N. Tanaka 2 and. Fiehn Max Planck Institute of Molecular Plant Physiology, Dept. Lothar Willmitzer, Potsdam, Germany 2 - Kyoto Institute of Technology, Department of Polymer Science and Engineering, Matsugasaki, Sakyo-ku, Kyoto , Japan INTRDUCTIN Metabolomics, the comprehensive analysis of metabolites present in a biological sample, has emerged as the third major path of functional genomics besides transcriptomics (mrna profiling) and proteomics (Fiehn, 22; Sumner et al., 23; Jan van der Greef et al., 23). Combined with the information obtained on transcriptome and proteome, this would lead to a nearly complete molecular picture of the state of a particular biological system at a given time. Monitoring the biological system state as a function of time by above mentioned methods would allow the study of the temporal dynamics of the system homeostasis. The importance of metabolites in control, communication and as building blocks and energy transporters within the biological system provides metabolomics a unique opportunity for phenotypic and dynamic profiling. The analysis of metabolome is dramatically more complex than gene expression analysis. There is an enormous chemical diversity of an organism s metabolome as well as a large concentration range to be covered. This presents a considerable challenge for the development of an appropriate analytical technique. ver, metabolites are described in the plant kingdom, and it can be assumed, that the number of metabolites of an individual plant species may easily reach some 5, individual lowmolecular weight compounds. In plant biology and plant functional genomics, most academic and many industrial research groups use the small weed dicotyledonous plant Arabidopsis thaliana or the important monocotyledonous crop rice (ryza sativa) as models to tackle fundamental and applied research objectives. Both species are frequently used for plant functional genomics since complete genome sequences and functional gene annotations are publicly available. The most common and mature technique is GC-MS analysis. ver 3 metabolites were covered in a proof-of-concept study on functional genomics in Arabidopsis, using GC-MS technology. Although it has been shown that the number of detected peaks in typical GC-MS plant chromatogram can be multiplied by deconvolution algorithm, the de novo identification of GC-MS peaks remains cumbersome. Therefore, needs for development of the complementary technique allowing plant sample analysis without chemical modification and providing enhanced qualitative characterization of the components are clear. During the last decade, LC-MS techniques were developed employing soft ionization methods like electro spray (ESI) or photo ionization (APPI) and, simultaneously, mass spectrometers became both more sophisticated and more robust for daily use. More recently, achievements in separation sciences propose much better solutions for the separation of the complex mixtures than it was attainable before. Specifically, the advance of preparation of monolithic columns enabled the separation of the very complex mixture separations due to the high number of theoretical plates of these columns (Tanaka, 21). The objective of this study was to develop LC-MS methods of analysis suitable for the plant metabolomics studies, and to apply this for Arabidopsis and rice plants.
2 MATERIALS AND METHDS Samples Application examples for LC-MS analysis were cold methanol extracts of the grounded leaves of Arabidopsis thaliana Col- and rice (ryza sativa) grown in the green house. At this stage, no specific biological question was followed. LC-MS^n In our present studies, we have used the LC-MS system consisted of a Finnigan LCQ DECA mass spectrometer (ThermoFinnigan, San Jose, CA, USA), a Rheos 2 pump (Flux Instruments AB, Karlskoga, Sweden), and an HTS PAL auto sampler (CTC Analytics, Zwingen, Switzerland). The system was operated under the Xcalibur software (version 1.3, ThermoFinnigan, USA). Data acquisition has been done in positive and negative modes. Chromatography was performed using 6.5 mm ammonium acetate (ph 5.5, adjusted by acetic acid) (A) and highest grade acetonitrile available (Biotech grade solvent, 99,93+%, (SAF), Seelze, Germany) (B), as the mobile phases. Reverse-phased (RP) split chromatography was used for capillary monolithic column at the flow rates of 5-12 µl/min at ambient temperature. LC-MS analysis was performed on monolithic capillary silica based C18 column (6 x.2mm ID). With the pre-column split ratio 1:1 mentioned above flow rate provided 5-12 µl/min actual flow rate through the capillary column. Separation was accomplished by stepwise gradients from 5% B to % B at 75 min followed by isocratic elution. Hydrophilic interaction chromatography (termed HILIC, see Tolstikov, 22) was performed on PolyHYDRXYETHYL A (PolyLC, USA) columns (4,6x mm, A, 3 µm particles size and,2x mm, A, 3 µm particles size). RESULTS AND DISCUSSIN Reliable and reproducible GC-MS technique for metabolomics studies is suffering from certain limitations. Specifically, the upper mass limit of metabolites can hardly be increased over the range of trisaccharides due to volatility constraints, which is well below the mass of membrane lipids, or lots of secondary metabolites. Furthermore, metabolites usually require derivatization, which on the one hand may already adversely affect certain compound classes and on the other hand hampers de novo identification of unknown compounds tremendously. Complementary techniques are capillary electrophoresis or liquid chromatography coupled to mass spectrometry (LC-MS). A number of problems arise from current LC-MS protocols for metabolic profiling. Some of these problems are related to the LC separation itself, others are connected to the MS detectors used. In general, mass spectrometers are able to detect a large number of the compounds simultaneously, even if these are co-eluting. Selectivity is gained by identification and quantification of the compound s specific molecular masses and fragmentation pathways. However, mass spectrometers can only detect ions, with the result, that any quantification will adamantly demand that there is perfect ionization of all compounds throughout the chromatogram. Unfortunately, this is not the case. It is well known among mass spectrometrists, that one compound can hamper the ionization efficacy of another, even if these are chemically related and co-elute at the same time. Therefore, ultimate separation is needed to ensure robust quantification, especially for very complex mixtures consisting of hundreds of components to be analysed and quantified. Figure 1 shows analyses of 15 C cold methanol extracts of mg fresh weight of grounded leaves of Arabidopsis thaliana by monolithic C18 reversed phase LC-MS. Compared to other plant species such as rice (ryza sativa), lipophilic metabolic profiles varied largely in abundance and identity of detectable metabolites which is in accordance with background knowledge of comparative genomics between different species. For example, glucosinolates only occur in Brassicaceae like Arabidopsis, and are absent from all other species. In general, many important lipophilic compound classes can be observed such as glucosinolates, flavonoids,
3 phenolics, anthocyanines, major and minor components of membrane lipids, porphyrins, chlorophylls and their allomers, and miscellaneous and unidentified compounds , ,8 41,35 45,38 38,2 49,5 55,47 432,9 H 3 C H 287, 413, m/z 8,26 H CH ,99 36,14 59,6 75,19 68,82 35,65 22,25 65,14 21,1 33,92 3,8 29,69 87,53 5,34 16,57 9, ,29 54, , H , 44, , , 4 481, 49,1 445,1 469, 493,2 511,1 427, ,1 3 23, ,41 m/z 4, ,84 76, ,3 75, ,83 52,59 59,361, ,29 81,58 22,52 28,7 2,5 37,29 88,87 9,71 17,8 98, H H H 547, Figure 1. RP/LC-MS chromatograms. Column dimensions are.2mm ID x 6mm length. Upper panel: Arabidopsis leaf extract. Lower panel: Rice leaf extract. Examples for specific extracted ion chromatograms are located in the upper left corners. Compound identifications by MS^2 spectra and corresponding structures are situated in the upper right corners. In this respect, a good coverage of the plant lipophilic and secondary metabolome is achieved. Under the current electro spray conditions, carotenoids do not produce ions and were only detectable using LC post-column flow splitter and UV-VIS detection. The identification process has been described earlier (Tolstikov, 22) and is mainly based on the fragmentation study and off-line accurate mass measurements, off-line NMR studies, followed by a reconstruction of the molecular structure, in the case where there are no standards available to compare with. A further example of metabolic profiling with the use of currently developed LC-MS technique is shown on Figure 2, demonstrating the results of a cold acclimation experiment performed on Arabidopsis thaliana seedlings. Anticipated metabolic changes such as increase in raffinose family oligosaccharides were directly observable from visual
4 1,26 35,24 2,16 6,7 1,48 25,97 29,6332,78 4,9 23,2 14,33 43,75 15,39 39,74 48,85, ,32 38,53 19,5 52,43 3,28 55,43 65,7 41,21 28,31 18,61 6,6869,66 5,54 26,89 72,28 8, ,93 35,33 1,24 13,94 26,2 33, 31,41 19,3 38,73 1,45 4,78 43,85 53,96 23,3 17,3 39,86 52,6 56, ,37 3,39 43,19 55,54 56,32 28,4 1,74 16,87 57,79 69,6972,39 84, Figure 2. RP and HILIC -MS chromatograms. Upper panel: control plant. Lower panel: cold acclimated plant. Left column: HILIC capillary column. Right column: RP capillary monolithic column. inspection. A more detailed investigation revealed that more than 2 peaks/components were statistically significantly different between cold acclimated plants samples compare to controls. The relative quantification of the detected components has been done with the assistance of LCQuan software (ThermoFinnigan, USA, included in Xcalibur 1.3 package) by calculation of peak areas for each pre-defined target compound. External standards have been used for calibrations. Peak height/area of a number of components changed reflecting changes in the metabolite concentrations in the sample. Eventually, such changes can be interpreted in terms of alteration of biochemical processes. With respect to metabolome coverage, the total number of detectable peaks is particularly interesting. A careful manual and scan-wise inspection of peaks using the instrument s Xcalibur software revealed about 2 distinct components found on chromatogram for the Arabidopsis extract recorded for RP/LC-MS analysis with the use of monolithic column, positive/negative ionization switching and MS/MS triggering. By applying mass spectral deconvolution with Mass Frontier 3. software, 16 peaks were found in positive electro spray mode. Unfortunately, MS deconvolution on continuous positive/negative ionization switching is not possible with any software available to date. This would be highly advantageous since many components are much more efficiently ionized in negative mode than in positive that strictly depends on the chemical structure of the ionized compounds.
5 13,36 45,91 4,22 12,39 17,3 46,29 45,69 3,54 26,71 19,79 17,9 2,33 11,29 25,46 64,97 8,92 32,1635,35 7,27 79,15 37,4 5,49 59, ,76 11,44 14,32 65,32 7,77 79,1 28,23 4,51 36,4 49, RT: 46,12 RT: 45, RT: 58, RT: 58, Figure 3. HILIC-MS chromatograms. Upper panel: full chromatogram. Lower panel: sucrose (Rt 46 min) and raffinose (Rt 59 min) peak area on extracted chromatograms for positive ions. Left column: rice leaf extract. Right column: rice grain extract. Figure 3 illustrates HILIC -MS analyses of methanol extracts of rice (ryza sativa) leaf and rice grain. The analysis of compounds of specific interest is done either on extracted ion chromatograms or on MS^2 transitions. n the lower panel, the determination of a reduced amount of sucrose by extracted ion monitoring is demonstrated concomitant with an elevated amount of raffinose in grain compare to leaf extract. CNCLUSIN In conclusion, we have briefly described LC-MS methods for plant metabolomic studies based on RP and HILIC chromatography. This technique is complementary to established GC-MS metabolomic profiling and provides unique information on compound identity and mass ranges. We believe the reported data supports the successful integration of capillary silica based monolithic C18 columns into current reversed phase LC-MS protocols. ACKNWLEDGEMENTS This work was financially supported by Metanomics GmbH & Co. KGaA, Berlin, Germany, and by the project fund Development of micro HPLC for post-genomic analysis", provided by the Ministry of Economy, Trade and Industry, through Kansai Bureau of Economy, Trade and Industry, and saka Science and Technology Centre. REFERENCES Fiehn,. (22). Plant.Mol.Biol. 48:
6 Jan van der Greef, Eugene Davidov, Elwin Verheij, Jack Vogels, Rob vander Heijden, Aram S. Adourian, Matej resic, Edward W. Marple and Stephen Naylor (23) The Role of Metabolomics in Systems Biology. George G. Harrigan & Royston Goodacre (eds.) Metabolic Profiling: Its Role in Biomarker Discovery and Gene Function Analysis. Boston/Dordrecht/London: Kluwer Academic Publishers Sumner, L.W., Mendes, P. and Dixon, R.A. (23). Phytochemistry, 62: Tanaka, N., Kobayashi, H., Nakanishi, K., Minakuchi, H., Ishizuka, N. (21) Anal. Chem. 73: 42A-429A. Tolstikov, V.V., Fiehn,. (22). Anal.Biochem. 31: Tolstikov, V., Costisella, B., Weckwerth, W., Zhang, B., Fiehn,. (22) Proceedings 5 th ASMS Conference on Mass Spectrometry and Allied Topics, Carbohydrates and Glycoconjugates, 146.
Supplementary Materials and Methods (Metabolomics analysis)
Supplementary Materials and Methods (Metabolomics analysis) Metabolite extraction and mass spectrometry analysis. 12 Vldlr-/- knock out and 12 wild type (WT) retinas were separately frozen at -80 ºC in
In-Depth Qualitative Analysis of Complex Proteomic Samples Using High Quality MS/MS at Fast Acquisition Rates
In-Depth Qualitative Analysis of Complex Proteomic Samples Using High Quality MS/MS at Fast Acquisition Rates Using the Explore Workflow on the AB SCIEX TripleTOF 5600 System A major challenge in proteomics
UHPLC/MS: An Efficient Tool for Determination of Illicit Drugs
Application Note: 439 UHPLC/MS: An Efficient Tool for Determination of Illicit Drugs Guifeng Jiang, Thermo Fisher Scientific, San Jose, CA, USA Key Words Accela UHPLC System MSQ Plus MS Detector Drugs
# LCMS-35 esquire series. Application of LC/APCI Ion Trap Tandem Mass Spectrometry for the Multiresidue Analysis of Pesticides in Water
Application Notes # LCMS-35 esquire series Application of LC/APCI Ion Trap Tandem Mass Spectrometry for the Multiresidue Analysis of Pesticides in Water An LC-APCI-MS/MS method using an ion trap system
Application Note # LCMS-81 Introducing New Proteomics Acquisiton Strategies with the compact Towards the Universal Proteomics Acquisition Method
Application Note # LCMS-81 Introducing New Proteomics Acquisiton Strategies with the compact Towards the Universal Proteomics Acquisition Method Introduction During the last decade, the complexity of samples
Chemical analysis service, Turner s Green Technology Group
Chemical analysis service, Turner s Green Technology Group Hourly costs, Academic collaborations leading to co-publications: 627 SEK/hr (excl. VAT) Hourly costs, Industry/Academic collaborations, no publications:
Guide to Reverse Phase SpinColumns Chromatography for Sample Prep
Guide to Reverse Phase SpinColumns Chromatography for Sample Prep www.harvardapparatus.com Contents Introduction...2-3 Modes of Separation...4-6 Spin Column Efficiency...7-8 Fast Protein Analysis...9 Specifications...10
Overview. Triple quadrupole (MS/MS) systems provide in comparison to single quadrupole (MS) systems: Introduction
Advantages of Using Triple Quadrupole over Single Quadrupole Mass Spectrometry to Quantify and Identify the Presence of Pesticides in Water and Soil Samples André Schreiber AB SCIEX Concord, Ontario (Canada)
Daniel M. Mueller, Katharina M. Rentsch Institut für Klinische Chemie, Universitätsspital Zürich, CH-8091 Zürich, Schweiz
Toxichem Krimtech 211;78(Special Issue):324 Online extraction LC-MS n method for the detection of drugs in urine, serum and heparinized plasma Daniel M. Mueller, Katharina M. Rentsch Institut für Klinische
Introduction to mass spectrometry (MS) based proteomics and metabolomics
Introduction to mass spectrometry (MS) based proteomics and metabolomics Tianwei Yu Department of Biostatistics and Bioinformatics Rollins School of Public Health Emory University September 10, 2015 Background
Analysis of Free Bromate Ions in Tap Water using an ACQUITY UPLC BEH Amide Column
Analysis of Free Bromate Ions in Tap Water using an ACQUITY UPLC BEH Amide Column Sachiki Shimizu, FUJIFILM Fine Chemicals Co., Ltd., Kanagawa, Japan Kenneth J. Fountain, Kevin Jenkins, and Yoko Tsuda,
Integrated Data Mining Strategy for Effective Metabolomic Data Analysis
The First International Symposium on Optimization and Systems Biology (OSB 07) Beijing, China, August 8 10, 2007 Copyright 2007 ORSC & APORC pp. 45 51 Integrated Data Mining Strategy for Effective Metabolomic
GENERAL UNKNOWN SCREENING FOR DRUGS IN BIOLOGICAL SAMPLES BY LC/MS Luc Humbert1, Michel Lhermitte 1, Frederic Grisel 2 1
GENERAL UNKNOWN SCREENING FOR DRUGS IN BIOLOGICAL SAMPLES BY LC/MS Luc Humbert, Michel Lhermitte, Frederic Grisel Laboratoire de Toxicologie & Génopathologie, CHRU Lille, France Waters Corporation, Guyancourt,
Analysis of the Vitamin B Complex in Infant Formula Samples by LC-MS/MS
Analysis of the Vitamin B Complex in Infant Formula Samples by LC-MS/MS Stephen Lock 1 and Matthew Noestheden 2 1 AB SCIEX Warrington, Cheshire (UK), 2 AB SCIEX Concord, Ontario (Canada) Overview A rapid,
Simultaneous qualitative and quantitative analysis using the Agilent 6540 Accurate-Mass Q-TOF
Simultaneous qualitative and quantitative analysis using the Agilent 654 Accurate-Mass Q-TOF Technical Overview Authors Pat Perkins Anabel Fandino Lester Taylor Agilent Technologies, Inc. Santa Clara,
The Scheduled MRM Algorithm Enables Intelligent Use of Retention Time During Multiple Reaction Monitoring
The Scheduled MRM Algorithm Enables Intelligent Use of Retention Time During Multiple Reaction Monitoring Delivering up to 2500 MRM Transitions per LC Run Christie Hunter 1, Brigitte Simons 2 1 AB SCIEX,
Effects of Intelligent Data Acquisition and Fast Laser Speed on Analysis of Complex Protein Digests
Effects of Intelligent Data Acquisition and Fast Laser Speed on Analysis of Complex Protein Digests AB SCIEX TOF/TOF 5800 System with DynamicExit Algorithm and ProteinPilot Software for Robust Protein
Simultaneous Metabolite Identification and Quantitation with UV Data Integration Using LightSight Software Version 2.2
Technical ote Simultaneous Metabolite Identification and Quantitation with UV Data Integration Using LightSight Software Version 2.2 Alek. Dooley, Carmai Seto, esham Ghobarah, and Elliott B. Jones verview:
MarkerView Software 1.2.1 for Metabolomic and Biomarker Profiling Analysis
MarkerView Software 1.2.1 for Metabolomic and Biomarker Profiling Analysis Overview MarkerView software is a novel program designed for metabolomics applications and biomarker profiling workflows 1. Using
LC-MS/MS Method for the Determination of Docetaxel in Human Serum for Clinical Research
LC-MS/MS Method for the Determination of Docetaxel in Human Serum for Clinical Research J. Jones, J. Denbigh, Thermo Fisher Scientific, Runcorn, Cheshire, UK Application Note 20581 Key Words SPE, SOLA,
HRMS in Clinical Research: from Targeted Quantification to Metabolomics
A sponsored whitepaper. HRMS in Clinical Research: from Targeted Quantification to Metabolomics By: Bertrand Rochat Ph. D., Research Project Leader, Faculté de Biologie et de Médecine of the Centre Hospitalier
Waters Core Chromatography Training (2 Days)
2015 Page 2 Waters Core Chromatography Training (2 Days) The learning objective of this two day course is to teach the user core chromatography, system and software fundamentals in an outcomes based approach.
AB SCIEX TOF/TOF 4800 PLUS SYSTEM. Cost effective flexibility for your core needs
AB SCIEX TOF/TOF 4800 PLUS SYSTEM Cost effective flexibility for your core needs AB SCIEX TOF/TOF 4800 PLUS SYSTEM It s just what you expect from the industry leader. The AB SCIEX 4800 Plus MALDI TOF/TOF
Ultra Fast UHPLC-LCMSMS Method Development in Clinical Drug Monitoring
PO-CON1359E Ultra Fast UHPLC-LCMSMS Method Development in HPLC 2013 MASS-09 Anja Grüning 1 ; Brigitte Richrath 1 ; Klaus Bollig 2 ; Sven Vedder 1 ; Robert Ludwig 1 1 Shimadzu Europa GmbH, Duisburg, Germany;
SPE, LC-MS/MS Method for the Determination of Ethinyl Estradiol from Human Plasma
SPE, LC-MS/MS Method for the Determination of Ethinyl Estradiol from uman Plasma Krishna Rao Dara, Dr. Tushar N. Mehta, Asia Pacific Center of Excellence, Thermo Fisher Scientific, Ahmedabad, India Application
Using Natural Products Application Solution with UNIFI for the Identification of Chemical Ingredients of Green Tea Extract
Using Natural Products Application Solution with UNIFI for the Identification of Chemical Ingredients of Green Tea Extract Lirui Qiao, 1 Rob Lewis, 2 Alex Hooper, 2 James Morphet, 2 Xiaojie Tan, 1 Kate
Advantages of Polar, Reversed- Phase HPLC Columns for the Analysis of Drug Metabolites
Advantages of Polar, Reversed- Phase HPLC Columns for the Analysis of Drug Metabolites Carmen T. Santasania and David S. Bell SUPELCO, 595 North Harrison Road, Bellefonte, PA 16823 T404045 GUS Abstract
Automated Method Development Utilizing Software-Based Optimization and Direct Instrument Control
Automated Method Development Utilizing Software-Based Optimization and Direct Instrument Control Dr. Frank Steiner, 1 Andreas Brunner, 1 Fraser McLeod, 1 Dr. Sergey Galushko 2 1 Dionex Corporation, Germering,
How To Test For Contamination In Large Volume Water
Automated Solid Phase Extraction (SPE) of EPA Method 1694 for Pharmaceuticals and Personal Care Products in Large Volume Water Samples Keywords Application Note ENV0212 This collaboration study was performed
A High Throughput Automated Sample Preparation and Analysis Workflow for Comprehensive Forensic Toxicology Screening using LC/MS/MS
A High Throughput Automated Sample Preparation and Analysis Workflow for Comprehensive Forensic Toxicology Screening using LC/MS/MS AB SCIEX QTRAP 4500 LC/MS/MS System and Gerstel, Inc. MultiPurpose Sampler
Application Note # LCMS-62 Walk-Up Ion Trap Mass Spectrometer System in a Multi-User Environment Using Compass OpenAccess Software
Application Note # LCMS-62 Walk-Up Ion Trap Mass Spectrometer System in a Multi-User Environment Using Compass OpenAccess Software Abstract Presented here is a case study of a walk-up liquid chromatography
Overview. Introduction. AB SCIEX MPX -2 High Throughput TripleTOF 4600 LC/MS/MS System
Investigating the use of the AB SCIEX TripleTOF 4600 LC/MS/MS System for High Throughput Screening of Synthetic Cannabinoids/Metabolites in Human Urine AB SCIEX MPX -2 High Throughput TripleTOF 4600 LC/MS/MS
Extraction of Epinephrine, Norepinephrine and Dopamine from Human Plasma Using EVOLUTE EXPRESS WCX Prior to LC-MS/MS Analysis
Application Note AN844 Extraction of, and from Human Plasma Using EVOLUTE EXPRESS WCX Page 1 Extraction of, and from Human Plasma Using EVOLUTE EXPRESS WCX Prior to LC-MS/MS Analysis Introduction Catecholamines
Method Development of LC-MS/MS Analysis of Aminoglycoside Drugs: Challenges and Solutions
Method Development of LC-MS/MS Analysis of Aminoglycoside Drugs: Challenges and Solutions authors Angela (Qi) Shen, Ling Morgan, Marcele L. Barroso, and Xin Zhang; Tandem Labs Tuyen Nguyen; Sepracor Inc.
The Use of Micro Flow LC Coupled to MS/MS in Veterinary Drug Residue Analysis
The Use of Micro Flow LC Coupled to MS/MS in Veterinary Drug Residue Analysis Stephen Lock AB SCIEX Warrington (UK) Overview A rapid, robust, sensitive and specific LC-MS/MS method has been developed for
Fast, Reproducible LC-MS/MS Analysis of Dextromethorphan and Dextrorphan
Fast, Reproducible LC-MS/MS Analysis of and Kimberly Phipps, Thermo Fisher Scientific, Runcorn, Cheshire, UK Application Note 685 Key Words Accucore C18, dextromethorphan, dextrorphan, SOLA CX Abstract
Increasing Quality While Maintaining Efficiency in Drug Chemistry with DART-TOF MS Screening
Increasing Quality While Maintaining Efficiency in Drug Chemistry with DART-TOF MS Screening Application Note Forensics Author Erin Shonsey Director of Research Alabama Department of Forensic Science Abstract
Application Note. Determination of Nitrite and Nitrate in Fruit Juices by UV Detection. Summary. Introduction. Experimental Sample Preparation
Application Note Determination of Nitrite and Nitrate in Fruit Juices by UV Detection Category Food Matrix Fruit Juice Method HPLC Keywords Ion pair chromatography, fruit juice, inorganic anions AZURA
Determination of N-cyclohexyl-diazeniumdioxide (HDO) containing compounds in treated wood using GC-MS
Application Note No. 051 Determination of N-cyclohexyl-diazeniumdioxide (HDO) containing compounds in treated wood using GC-MS by P Jüngel ¹), J Wittenzellner ²) and E Melcher ¹) ¹) Federal Research Centre
Advantages of the LTQ Orbitrap for Protein Identification in Complex Digests
Application Note: 386 Advantages of the LTQ Orbitrap for Protein Identification in Complex Digests Rosa Viner, Terry Zhang, Scott Peterman, and Vlad Zabrouskov, Thermo Fisher Scientific, San Jose, CA,
High-Throughput 3-D Chromatography Through Ion Exchange SPE
High-Throughput 3-D Chromatography Through Ion Exchange SPE Application Note 205 Luke Roenneburg and Alan Hamstra (Gilson, Inc.) Introduction 2-dimensional (2-D) separation is the separation of a sample
Improving the Metabolite Identification Process with Efficiency and Speed: LightSight Software for Metabolite Identification
Improving the Metabolite Identification Process with Efficiency and Speed: LightSight Software for Metabolite Identification Overview LightSight Software for Metabolite Identification is a complete environment
Application Note # LCMS-92 Interlaboratory Tests Demonstrate the Robustness and Transferability of the Toxtyper Workflow
Application Note # LCMS-92 Interlaboratory Tests Demonstrate the Robustness and Transferability of the Toxtyper Workflow Abstract There is high demand in clinical research and forensic toxicology for comprehensive,
amazon SL Innovation with Integrity Setting New Standards in Performance, Simplicity and Value Ion Trap MS
amazon SL Setting New Standards in Performance, Simplicity and Value Innovation with Integrity Ion Trap Best-In-Class Ion Trap Mass Spectrometer for Routine Analysis The amazon SL entry-level system is
SIMULTANEOUS DETERMINATION OF NALTREXONE AND 6- -NALTREXOL IN SERUM BY HPLC
SIMULTANEOUS DETERMINATION OF NALTREXONE AND 6- -NALTREXOL IN SERUM BY HPLC Katja SÄRKKÄ, Kari ARINIEMI, Pirjo LILLSUNDE Laboratory of Substance Abuse, National Public Health Institute Manerheimintie,
Overview. Purpose. Methods. Results
A ovel Approach to Quantify Unbound Cisplatin, Carboplatin, and xaliplatin in Human Plasma Ultrafiltrate by Measuring Platinum-DDTC Complex Using LC/M/M Min Meng, Ryan Kuntz, Al Fontanet, and Patrick K.
A Streamlined Workflow for Untargeted Metabolomics
A Streamlined Workflow for Untargeted Metabolomics Employing XCMS plus, a Simultaneous Data Processing and Metabolite Identification Software Package for Rapid Untargeted Metabolite Screening Baljit K.
L. Yu et al. Correspondence to: Q. Zhang ([email protected])
Supplement of Atmos. Chem. Phys. Discuss., 5, 967 974, 5 http://www.atmos-chem-phys-discuss.net/5/967/5/ doi:.594/acpd-5-967-5-supplement Author(s) 5. CC Attribution. License. Supplement of Molecular transformations
Rapid Screening Method for Illicit Drugs, Using an Advanced Solid Core UHPLC Column and UHPLC System with MS/MS Detection
Rapid Screening Method for Illicit Drugs, Using an Advanced Solid Core UHPLC Column and UHPLC System with MS/MS Detection Derek Hillbeck, Thermo Fisher Scientific, Runcorn, UK Application Note 2999 Key
Plant Metabolomics. For BOT 6516
Plant Metabolomics For BOT 6516 Introduction Modern metabolomics began about ten years ago and yet many continue to question the relative performance of this area of technology in advancing plant biology.
Introduction to Proteomics 1.0
Introduction to Proteomics 1.0 CMSP Workshop Tim Griffin Associate Professor, BMBB Faculty Director, CMSP Objectives Why are we here? For participants: Learn basics of MS-based proteomics Learn what s
Expectations for GC-MS Lab
Expectations for GC-MS Lab Since this is the first year for GC-MS to be used in Dr. Lamp s CHEM 322, the lab experiment is somewhat unstructured. As you move through the two weeks, I expect that you will
Analysis of Polyphenols in Fruit Juices Using ACQUITY UPLC H-Class with UV and MS Detection
Analysis of Polyphenols in Fruit Juices Using ACQUITY UPLC H-Class with UV and MS Detection Evelyn Goh, Antonietta Gledhill Waters Pacific, Singapore, Waters Corporation, Manchester, UK A P P L I C AT
Pep-Miner: A Novel Technology for Mass Spectrometry-Based Proteomics
Pep-Miner: A Novel Technology for Mass Spectrometry-Based Proteomics Ilan Beer Haifa Research Lab Dec 10, 2002 Pep-Miner s Location in the Life Sciences World The post-genome era - the age of proteome
Mass Frontier 7.0 Quick Start Guide
Mass Frontier 7.0 Quick Start Guide The topics in this guide briefly step you through key features of the Mass Frontier application. Editing a Structure Working with Spectral Trees Building a Library Predicting
Advances in Steroid Panel Analysis with High Sensitivity LC/MS/MS. Kenneth C. Lewis 1, Lisa St. John-Williams 1, Changtong Hao 2, Sha Joshua Ye 2
Advances in Steroid Panel Analysis with High Sensitivity LC/MS/MS Kenneth C. Lewis 1, Lisa St. John-Williams 1, Changtong Hao 2, Sha Joshua Ye 2 1 OpAns LLC, Durham, NC, USA; 2 Ionics Mass Spectrometry
Introduction to HPLC. Basic Module in Bioorganic Chemistry January 16, 2007 Johannes Ranke. Introduction to HPLC p.1/17
Introduction to HPLC Basic Module in Bioorganic Chemistry January 16, 2007 Johannes Ranke Introduction to HPLC p.1/17 Sources R. Kellner, J.-M. Mermet, M. Otto, H. M. Widmer (Eds.), Analytical Chemistry,
Chemistry 321, Experiment 8: Quantitation of caffeine from a beverage using gas chromatography
Chemistry 321, Experiment 8: Quantitation of caffeine from a beverage using gas chromatography INTRODUCTION The analysis of soft drinks for caffeine was able to be performed using UV-Vis. The complex sample
LC-MS/MS for Chromatographers
LC-MS/MS for Chromatographers An introduction to the use of LC-MS/MS, with an emphasis on the analysis of drugs in biological matrices LC-MS/MS for Chromatographers An introduction to the use of LC-MS/MS,
STANFORD UNIVERSITY MASS SPECTROMETRY 333 CAMPUS DR., MUDD 175 STANFORD, CA 94305-5080
Training on the ZQ Open access MS Questions? Contact Dr. Allis Chien [email protected] 650-723-0710 0710 STANFORD UNIVERSITY MASS SPECTROMETRY STANFORD UNIVERSITY MASS SPECTROMETRY 333 CAMPUS DR., MUDD
Quantitative analysis of anabolic steroids in control samples from food-producing animals using a column-switching LC-HESI-MS/MS assay
PO-CON1484E Quantitative analysis of anabolic steroids in control samples from food-producing animals using a column-switching ASMS 014 TP85 David R. Baker 1, John Warrander 1, Neil Loftus 1, Simon Hird
Analysis of Pesticides in Vegetables Using the Agilent 1260 Infinity Analytical SFC System with Triple Quadrupole MS Detection
Analysis of Pesticides in Vegetables Using the Agilent 1260 Infinity Analytical SFC System with Triple Quadrupole MS Detection Application Note Food Testing & Agriculture Authors Edgar Naegele and Thomas
MultiQuant Software 2.0 for Targeted Protein / Peptide Quantification
MultiQuant Software 2.0 for Targeted Protein / Peptide Quantification Gold Standard for Quantitative Data Processing Because of the sensitivity, selectivity, speed and throughput at which MRM assays can
Mass Spectrometry Based Proteomics
Mass Spectrometry Based Proteomics Proteomics Shared Research Oregon Health & Science University Portland, Oregon This document is designed to give a brief overview of Mass Spectrometry Based Proteomics
WATERS QUANTITATIVE ANALYSIS solutions
More sensitivity. More speed. What more can you ask for in a complete quantitative analysis solution? WATERS QUANTITATIVE ANALYSIS solutions THE CHALLENGE OF QUANTITATIVE ANALYSIS Tandem mass spectrometry,
MEPS - Micro Extraction by Packed Sorbent Online SPE for GC and LC sample preparation - Extraction to injection in a single process
- Micro Extraction by Packed Sorbent Online SPE for GC and LC sample preparation - Extraction to injection in a single process Save Hours in Sample Preparation Reduce the time to prepare and inject samples
Thermo Scientific PepFinder Software A New Paradigm for Peptide Mapping
Thermo Scientific PepFinder Software A New Paradigm for Peptide Mapping For Conclusive Characterization of Biologics Deep Protein Characterization Is Crucial Pharmaceuticals have historically been small
High sensitivity assays using online SPE-LC-MS/MS -How low can you go? Mohammed Abrar Unilabs York Bioanalytical solutions, York, UK
High sensitivity assays using online SPE-LC-MS/MS -How low can you go? Mohammed Abrar Unilabs York Bioanalytical solutions, York, UK Background Unilabs YBS are a bioanalytical CRO based in York (Uk) Copenhagen
Therapeutic Drug Monitoring of Antiretroviral Drugs with HPLC-MS
Therapeutic Drug Monitoring of Antiretroviral Drugs with PLC-M Ursula Gutteck-Amsler, Katharina M. Rentsch Abstract Prospective and retrospective studies have provided some evidence of the clinical and
A new concept for isotope ratio monitoring LC/MS. A Wide Range of Applications
A new concept for isotope ratio monitoring LC/MS A Wide Range of Applications Andreas Hilkert, Dieter Juchelka, Michael Krummen Thermo Electron (Bremen) GmbH Overview Introduction in Isotope Ratio Monitoring-LC/MS
High Resolution LC-MS Data Output and Analysis
High Resolution LC-MS Data Output and Analysis Your Sample LC/MS Result Sample Sample Efficient Separation Preparation Introduction Gradient (column) Today Data (computer) LC- MS Ions Detection Ions Separation
PosterREPRINT AN LC/MS ORTHOGONAL TOF (TIME OF FLIGHT) MASS SPECTROMETER WITH INCREASED TRANSMISSION, RESOLUTION, AND DYNAMIC RANGE OVERVIEW
OVERVIEW Exact mass LC/MS analysis using an orthogonal acceleration time of flight (oa-tof) mass spectrometer is a well-established technique with a broad range of applications. These include elemental
Analyzing Small Molecules by EI and GC-MS. July 2014
Analyzing Small Molecules by EI and GC-MS July 2014 Samples Appropriate for GC-MS Volatile and semi-volatile organic compounds Rule of thumb,
Electrospray Ion Trap Mass Spectrometry. Introduction
Electrospray Ion Source Electrospray Ion Trap Mass Spectrometry Introduction The key to using MS for solutions is the ability to transfer your analytes into the vacuum of the mass spectrometer as ionic
AppNote 6/2003. Analysis of Flavors using a Mass Spectral Based Chemical Sensor KEYWORDS ABSTRACT
AppNote 6/2003 Analysis of Flavors using a Mass Spectral Based Chemical Sensor Vanessa R. Kinton Gerstel, Inc., 701 Digital Drive, Suite J, Linthicum, MD 21090, USA Kevin L. Goodner USDA, Citrus & Subtropical
Pesticide Analysis by Mass Spectrometry
Pesticide Analysis by Mass Spectrometry Purpose: The purpose of this assignment is to introduce concepts of mass spectrometry (MS) as they pertain to the qualitative and quantitative analysis of organochlorine
What Do We Learn about Hepatotoxicity Using Coumarin-Treated Rat Model?
What Do We Learn about Hepatotoxicity Using Coumarin-Treated Rat Model? authors M. David Ho 1, Bob Xiong 1, S. Stellar 2, J. Proctor 2, J. Silva 2, H.K. Lim 2, Patrick Bennett 1, and Lily Li 1 Tandem Labs,
for SolEx TM HRP Cartridges SolEx TM HRP RSLC Columns
for SolEx TM HRP Cartridges SolEx TM HRP RSLC Columns Product Manual for SolEx TM HRP Cartridges and SolEx TM HRP RSLC Columns Page 1 of 15 Product Manual for SolEx TM HRP Cartridges SolEx HRP (P/N 074400)
Simultaneous Qualitative and Quantitative Data Acquisition for Research of Diabetes Drugs
Liquid Chromatography Mass Spectrometry SSI-LCMS-068 Simultaneous Qualitative and Quantitative Data Acquisition for Research of Diabetes Drugs LCMS-8050 Summary By utilizing the LCMS-8050 s ultrafast scan
Thermo Scientific SIEVE Software for Differential Expression Analysis
m a s s s p e c t r o m e t r y Thermo Scientific SIEVE Software for Differential Expression Analysis Automated, label-free, semi-quantitative analysis of proteins, peptides, and metabolites based on comparisons
AGILENT S BIOINFORMATICS ANALYSIS SOFTWARE
ACCELERATING PROGRESS IS IN OUR GENES AGILENT S BIOINFORMATICS ANALYSIS SOFTWARE GENESPRING GENE EXPRESSION (GX) MASS PROFILER PROFESSIONAL (MPP) PATHWAY ARCHITECT (PA) See Deeper. Reach Further. BIOINFORMATICS
for mass spectrometry calibration tools Thermo Scientific Pierce Controls and Standards for Mass Spectrometry
Thermo Scientific Pierce Controls and Standards for Mass Spectrometry calibration tools for mass spectrometry Ensure confidence in instrument performance with Thermo Scientific Pierce Calibration Solutions
Introduction to Proteomics
Introduction to Proteomics Why Proteomics? Same Genome Different Proteome Black Swallowtail - larvae and butterfly Biological Complexity Yeast - a simple proteome 6,113 proteins = 344,855 tryptic peptides
Detection of Estrogens in Aqueous and Solid Environmental Matrices by Direct Injection LC-MS/MS
Detection of Estrogens in Aqueous and Solid Environmental Matrices by Direct Injection LC-MS/MS D. Loeffler 1, M. Ramil 1, T. Ternes 1, M. Suter 2, R. Schönenberger 2, H.-R. Aerni 2, S, König, A. Besa,
How To Develop A Recipe Card
TSNA Method Development Dr Michael Intorp CORESTA Cooperation Center for Scientific Research Relative to Tobacco FDA Center for Tobacco Products Scientific Workshop Tobacco Product Analysis 30 31 July
ProteinScape. Innovation with Integrity. Proteomics Data Analysis & Management. Mass Spectrometry
ProteinScape Proteomics Data Analysis & Management Innovation with Integrity Mass Spectrometry ProteinScape a Virtual Environment for Successful Proteomics To overcome the growing complexity of proteomics
Hydrophilic-Interaction Chromatography (HILIC) for LC-MS/MS Analysis of Monoamine Neurotransmitters using XBridge BEH Amide XP Columns
Hydrophilic-Interaction Chromatography (HILIC) for LC-MS/MS Analysis of Monoamine Neurotransmitters using XBridge BEH Amide XP Columns Jonathan P. Danaceau, Kenneth J. Fountain, and Erin E. Chambers Waters
Simultaneous Quantitation of 43 Drugs in Human Urine with a Dilute-and-Shoot LC-MS/MS Method
Simultaneous Quantitation of 4 Drugs in Human Urine with a Dilute-and-Shoot LC-MS/MS Method Xiang He and Marta Kozak, Thermo Fisher Scientific, San Jose, CA Application Note 76 Key Words TSQ Quantum Access
Aiping Lu. Key Laboratory of System Biology Chinese Academic Society [email protected]
Aiping Lu Key Laboratory of System Biology Chinese Academic Society [email protected] Proteome and Proteomics PROTEin complement expressed by genome Marc Wilkins Electrophoresis. 1995. 16(7):1090-4. proteomics
Chapter 14. Modeling Experimental Design for Proteomics. Jan Eriksson and David Fenyö. Abstract. 1. Introduction
Chapter Modeling Experimental Design for Proteomics Jan Eriksson and David Fenyö Abstract The complexity of proteomes makes good experimental design essential for their successful investigation. Here,
Quick and Sensitive Analysis of Multiclass Veterinary Drug Residues in Meat, Plasma, and Milk on a Q Exactive Focus LC-MS System
Quick and Sensitive Analysis of Multiclass Veterinary Drug Residues in Meat, Plasma, and Milk on a Q Exactive Focus LC-MS System Olaf Scheibner, Maciej Bromirski, Thermo Fisher Scientific, Bremen, Germany
Thermo Scientific GC-MS Data Acquisition Instructions for Cerno Bioscience MassWorks Software
Thermo Scientific GC-MS Data Acquisition Instructions for Cerno Bioscience MassWorks Software Mark Belmont and Alexander N. Semyonov, Thermo Fisher Scientific, Austin, TX, USA Ming Gu, Cerno Bioscience,
Quantitative proteomics background
Proteomics data analysis seminar Quantitative proteomics and transcriptomics of anaerobic and aerobic yeast cultures reveals post transcriptional regulation of key cellular processes de Groot, M., Daran
Metabolomics Software Tools. Xiuxia Du, Paul Benton, Stephen Barnes
Metabolomics Software Tools Xiuxia Du, Paul Benton, Stephen Barnes Outline 2 Introduction Software Tools for LC-MS metabolomics Software Tools for GC-MS metabolomics Software Tools for Statistical Analysis
Increasing the Multiplexing of High Resolution Targeted Peptide Quantification Assays
Increasing the Multiplexing of High Resolution Targeted Peptide Quantification Assays Scheduled MRM HR Workflow on the TripleTOF Systems Jenny Albanese, Christie Hunter AB SCIEX, USA Targeted quantitative
Structural Analysis of Labeled N-Glycans from Proteins by LC-MS/MS Separated Using a Novel Mixed-Mode Stationary Phase
Structural Analysis of Labeled N-Glycans from Proteins by LC-MS/MS Separated Using a Novel Mixed-Mode Stationary Phase Udayanath Aich 1, Julian Saba 2, Xiaodong Liu 1, Srinivasa Rao 1, and Chris Pohl 1
