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Clinical Applications of Mass Spectrometry in Biomolecular Analysis

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Cover of 'Clinical Applications of Mass Spectrometry in Biomolecular Analysis'

Table of Contents

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    Book Overview
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    Chapter 1 Introduction to Mass Spectrometry for Bimolecular Analysis in a Clinical Laboratory
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    Chapter 2 System Performance Monitoring in Clinical Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS)
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    Chapter 3 Tandem Mass Spectrometry for the Analysis of Plasma/Serum Acylcarnitines for the Diagnosis of Certain Organic Acidurias and Fatty Acid Oxidation Disorders
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    Chapter 4 Quantification of Plasma S-adenosylmethionine and S-adenosylhomocysteine Using Liquid Chromatography-Electrospray-Tandem Mass Spectrometry
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    Chapter 5 Quantitation of Aldosterone in Serum or Plasma Using Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS)
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    Chapter 6 Comprehensive Determination of Amino Acids for Diagnosis of Inborn Errors of Metabolism
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    Chapter 7 Quantification of Branched-Chain Amino Acids in Plasma by High-Performance Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS)
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    Chapter 8 Quantitation of Butyrylcarnitine, Isobutyrylcarnitine, and Glutarylcarnitine in Urine Using Ultra-Performance Liquid Chromatography-Tandem Mass Spectrometry (UPLC-MS/MS)
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    Chapter 9 Quantification of Free and Total Carnitine in Serum Using Liquid Chromatography Tandem Mass Spectrometry
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    Chapter 10 Sensitive and Robust LC-MS/MS Analysis of Salivary Cortisol in Negative Mode
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    Chapter 11 Measurement of Urinary Free Cortisol and Cortisone by LC-MS/MS
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    Chapter 12 Laboratory Diagnosis of Cerebral Creatine Deficiency Syndromes by Determining Creatine and Guanidinoacetate in Plasma and Urine
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    Chapter 13 Quantitation of Estradiol and Testosterone in Serum Using LC-MS/MS
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    Chapter 14 Quantitation of Fatty Acids in Serum/Plasma and Red Blood Cells by Gas Chromatography-Negative Chemical Ionization-Mass Spectrometry
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    Chapter 15 Quantitation of γ-Aminobutyric Acid in Cerebrospinal Fluid Using Liquid Chromatography-Electrospray-Tandem Mass Spectrometry
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    Chapter 16 A Simple, Fast, and Reliable LC-MS/MS Method for the Measurement of Homovanillic Acid and Vanillylmandelic Acid in Urine Specimens
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    Chapter 17 Quantitation of Neuroblastoma Markers Homovanillic Acid (HVA) and Vanillylmandelic Acid (VMA) in Urine by Gas Chromatography–Mass Spectrometry (GC/MS)
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    Chapter 18 Quantification of 5-Hydroxyindoleacetic Acid in Urine by Ultra-performance Liquid Chromatography Tandem Mass Spectrometry
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    Chapter 19 Quantitation of IgG Subclasses in Serum Using Liquid Chromatography–Tandem Mass Spectrometry (LC–MS/MS)
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    Chapter 20 Quantification of Insulin Analogs by Liquid Chromatography–High-Resolution Mass Spectrometry
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    Chapter 21 Differentiation of Common IGF-1 Variants Using HRMS COM Determination with Follow-Up MS/MS Verification
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    Chapter 22 Monitoring and Identifying Insulin-Like Growth Factor 1 Variants by Liquid Chromatography–High-Resolution Mass Spectrometry in a Clinical Laboratory
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    Chapter 23 Quantitation of Lactate in Cerebrospinal Fluid Using Liquid Chromatography–Electrospray-Tandem Mass Spectrometry
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    Chapter 24 Multiplex Lysosomal Enzyme Activity Assay on Dried Blood Spots Using Tandem Mass Spectrometry
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    Chapter 25 Plasma Lysosphingolipid Biomarker Measurement by Liquid Chromatography Tandem Mass Spectrometry
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    Chapter 26 Detection of 13C-Mannitol and Other Saccharides Using Tandem Mass Spectrometry for Evaluation of Intestinal Permeability or Leaky Gut
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    Chapter 27 LC–MS/MS Method for High-Throughput Analysis of Methylmalonic Acid in Serum, Plasma, and Urine: Method for Analyzing Isomers Without Chromatographic Separation
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    Chapter 28 Quantitation of 5-Methyltetrahydrofolate in Cerebrospinal Fluid Using Liquid Chromatography-Electrospray-Tandem Mass Spectrometry
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    Chapter 29 Screening of Organic Acidurias by Gas Chromatography–Mass Spectrometry (GC–MS)
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    Chapter 30 Identification of Urine Organic Acids for the Detection of Inborn Errors of Metabolism Using Urease and Gas Chromatography–Mass Spectrometry (GC/MS)
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    Chapter 31 Quantitative Organic Acids in Urine by Two-Dimensional Gas Chromatography-Time-of-Flight Mass Spectrometry (GCxGC-TOFMS)
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    Chapter 32 Quantification of Parathyroid Hormone and its Fragments in Serum by Liquid Chromatography–High-Resolution Mass Spectrometry
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    Chapter 33 High Sensitivity Measurement of Parathyroid Hormone–Related Protein (PTHrP) in Plasma by LC-MS/MS
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    Chapter 34 Quantitation of Phenylalanine in Dried Blood Spot Using Liquid Chromatography Tandem Mass Spectrometry for Monitoring of Patients with Phenylketonuria (PKU)
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    Chapter 35 An Optimized Procedure for Proteomic Analysis of Extracellular Vesicles Using In-Stage Tip Digestion and DIA LC-MS/MS: Application to Liquid Biopsy in Cancer
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    Chapter 36 High-Throughput Plasma Proteomic Profiling
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    Chapter 37 Quantitation of Purine in Urine by Ultra-Performance Liquid Chromatography-Tandem Mass Spectrometry
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    Chapter 38 Quantitation of Pyrimidine in Urine by Ultra-Performance Liquid Chromatography-Tandem Mass Spectrometry
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    Chapter 39 Quantitation of Renin Activity in Plasma Using Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS)
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    Chapter 40 Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS) Method for the Quantification of Steroids Androstenedione, Dehydroepiandrosterone, 11-Deoxycortisol, 17-Hydroxyprogesterone, and Testosterone
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    Chapter 41 A User-Friendly Sample Preparation Alternative for Manual and Automated LC-MS/MS Quantification of Testosterone
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    Chapter 42 Quantitation of Thyroglobulin in Serum Using SISCAPA and Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS)
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    Chapter 43 Quantitation of Free Thyroxine by Equilibrium Dialysis and Liquid Chromatography-Tandem Mass Spectrometry
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    Chapter 44 Quantification of Tryptophan, Indole, and Indoxyl Sulfate in Urine Using Liquid Chromatography-Tandem Mass Spectrometry
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    Chapter 45 Very-Long-Chain Fatty Acids Quantification by Gas-Chromatography Mass Spectrometry
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    Chapter 46 Quantification of Very-Long-Chain and Branched-Chain Fatty Acids in Plasma by Liquid Chromatography-Tandem Mass Spectrometry
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    Chapter 47 High-Throughput Analysis of 25-OH-Vitamin D2 and D3 Using Multichannel Liquid Chromatography-Tandem Mass Spectrometry
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    Chapter 48 Quantification of 25-Hydroxyvitamin D2 and D3 Using Liquid Chromatography-Tandem Mass Spectrometry
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    Chapter 49 Correction to: Quantification of Very-Long-Chain and Branched-Chain Fatty Acids in Plasma by Liquid Chromatography-Tandem Mass Spectrometry
Attention for Chapter 4: Quantification of Plasma S-adenosylmethionine and S-adenosylhomocysteine Using Liquid Chromatography-Electrospray-Tandem Mass Spectrometry
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Chapter title
Quantification of Plasma S-adenosylmethionine and S-adenosylhomocysteine Using Liquid Chromatography-Electrospray-Tandem Mass Spectrometry
Chapter number 4
Book title
Clinical Applications of Mass Spectrometry in Biomolecular Analysis
Published by
Humana, New York, NY, September 2022
DOI 10.1007/978-1-0716-2565-1_4
Pubmed ID
Book ISBNs
978-1-07-162564-4, 978-1-07-162565-1
Authors

Arning, Erland, Wasek, Brandi, Bottiglieri, Teodoro

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Austria 1 50%
Unknown 1 50%

Demographic breakdown

Readers by professional status Count As %
Professor > Associate Professor 1 50%
Lecturer 1 50%
Readers by discipline Count As %
Neuroscience 1 50%
Chemistry 1 50%