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Drug Safety Evaluation

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Cover of 'Drug Safety Evaluation'

Table of Contents

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    Book Overview
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    Chapter 1 Nonclinical Development of Combination Drugs
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    Chapter 2 Juvenile Nonclinical Safety Studies in Support of Pediatric Drug Development
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    Chapter 3 Procedures of Necropsy and Tissue Sampling
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    Chapter 4 Tissue Sampling and Processing for Histopathology Evaluation
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    Chapter 5 Principles and Methods of Immunohistochemistry
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    Chapter 6 Applications of Mass Spectrometry Imaging for Safety Evaluation
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    Chapter 7 In Vivo Rat T-Lymphocyte Pig-a Assay: Detection and Expansion of Cells Deficient in the GPI-Anchored CD48 Surface Marker for Analysis of Mutation in the Endogenous Pig-a Gene
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    Chapter 8 Detection of In Vivo Mutation in the Pig-a Gene of Mouse Bone Marrow Erythroids
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    Chapter 9 The Use of Bacterial Repair Endonucleases in the Comet Assay
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    Chapter 10 Automated Patch-Clamp Methods for the hERG Cardiac Potassium Channel
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    Chapter 11 Impedance Measurement in Induced Pluripotent Stem Cell-Derived Cardiomyocytes
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    Chapter 12 Target Safety Assessment: Strategies and Resources
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    Chapter 13 NMR and MS Methods for Metabolomics
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    Chapter 14 Protocols and Applications of Cellular Metabolomics in Safety Studies Using Precision-Cut Tissue Slices and Carbon 13 NMR
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    Chapter 15 Statistical Analysis of Quantitative RT-PCR Results
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    Chapter 16 Evaluation of Mitochondrial Respiration in Cultured Rat Hepatocytes
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    Chapter 17 FETAX Assay for Evaluation of Developmental Toxicity
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    Chapter 18 Evaluation of Embryotoxicity Using the Zebrafish Model
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    Chapter 19 Absolute Quantification of Toxicological Biomarkers via Mass Spectrometry
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    Chapter 20 Next-Generation Sequencing to Investigate Urinary microRNAs from Macaca fascicularis (Cynomolgus Monkey)
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    Chapter 21 Quantitative RT-PCR for MicroRNAs in Biofluids
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    Chapter 22 Chromogenic In Situ Hybridization Methods for microRNA Biomarker Monitoring of Drug Safety and Efficacy
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    Chapter 23 Urine Exosome Isolation and Characterization
Attention for Chapter 6: Applications of Mass Spectrometry Imaging for Safety Evaluation
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Chapter title
Applications of Mass Spectrometry Imaging for Safety Evaluation
Chapter number 6
Book title
Drug Safety Evaluation
Published in
Methods in molecular biology, January 2017
DOI 10.1007/978-1-4939-7172-5_6
Pubmed ID
Book ISBNs
978-1-4939-7170-1, 978-1-4939-7172-5
Authors

David Bonnel, Jonathan Stauber

Abstract

Mass spectrometry imaging (MSI) was first derived from techniques used in physics, which were then incorporated into chemistry followed by application in biology. Developed over 50 years ago, and with different principles to detect and map compounds on a sample surface, MSI supports modern biology questions by detecting biological compounds within tissue sections. MALDI (matrix-assisted laser desorption/ionization) imaging trend analysis in this field shows an important increase in the number of publications since 2005, especially with the development of the MALDI imaging technique and its applications in biomarker discovery and drug distribution. With recent improvements of statistical tools, absolute and relative quantification protocols, as well as quality and reproducibility evaluations, MALDI imaging has become one of the most reliable MSI techniques to support drug discovery and development phases. MSI allows to potentially address important questions in drug development such as "What is the localization of the drug and its metabolites in the tissues?", "What is the pharmacological effect of the drug in this particular region of interest?", or "Is the drug and its metabolites related to an atypical finding?" However, prior to addressing these questions using MSI techniques, expertise needs to be developed to become proficient at histological procedures (tissue preparation with frozen of fixed tissues), analytical chemistry, matrix application, instrumentation, informatics, and mathematics for data analysis and interpretation.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 7 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 7 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 2 29%
Professor > Associate Professor 1 14%
Unknown 4 57%
Readers by discipline Count As %
Chemistry 2 29%
Pharmacology, Toxicology and Pharmaceutical Science 1 14%
Unknown 4 57%