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Cell-Based Assays Using iPSCs for Drug Development and Testing / edited by Carl-Fredrik Mandenius, James A. Ross.

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Holman Biotech Commons QH506 .M45 v.1 (1984)-v.20 (1993),v.22 (1994),v.24 (1994)-v.53 (1996), v.42 (1995) and v.51 (1995) reported missing 3-13-2000 v.55 (1995),v.58 (1996)-v.63 (1997), v.65 (1996)-v.154 (2001), v.156 (2001)-190 (2002), v.192 (2002)-v.407 (2007) v.409 (2007)-v.416 (2008),v.418 (2008)-v.466 v.468-v.490,v.492,v.494,v.496-499 501-506,508,510-512,514,516-517,519-536 538,540-569,571 573-589,591-608,610-615,617,620-627,630-633,636,638,642
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Format:
Book
Contributor:
Mandenius, Carl-Fredrik, 1954- editor.
Ross, James A. (Professor of liver cell biology), editor.
SpringerLink (Online service)
Series:
Springer Protocols (Springer-12345)
Methods in molecular biology 1064-3745 ; 1994.
Methods in Molecular Biology, 1064-3745 ; 1994
Language:
English
Subjects (All):
Toxicology.
Stem cells.
Pharmacology/Toxicology.
Stem Cells.
Local Subjects:
Pharmacology/Toxicology.
Stem Cells.
Physical Description:
1 online resource (XIV, 266 pages) : 69 illustrations, 55 illustrations in color.
Edition:
First edition 2019.
Contained In:
Springer eBooks
Place of Publication:
New York, NY : Springer New York : Imprint: Humana, 2019.
System Details:
text file PDF
Summary:
The volume presents a variety of protocols that will be useful to researchers working in the field of disease modeling, drug discovery, and the cell biology of various tissues. Chapters in this book cover topics such as requirements and preconditions for using human induced pluripotent cell lines in assay development; the culture of iPSCs and iPSC-derived cardiomyocytes by bioreactor technologies; distinctions between hepatocytes, vascular endothelial cells, cardiomyocytes, renal podocytes, and neurons; and high content assays of mitochondrial function and autophagy. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Authoritative and cutting-edge, Cell-Based Assay using iPSCs for Drug Development and Testing: Methods and Protocols is a valuable resource for researchers working in this important and developing field of study.
Contents:
Cell-Based Assays using Differentiated Human Induced Pluripotent Cells
Monolayer Generation of Vascular Endothelial Cells from Human Pluripotent Stem Cells
Generating Human iPSC-Derived Astrocytes with Chemically Defined Medium for In Vitro Disease Modelling
Human Induced Pluripotent Stem Cell-Derived Definitive Endoderm Bulk Culture and Hepatic Differentiation
Production of Cardiomyocytes from Human Pluripotent Stem Cells by Bioreactor Technologies
Improved Protocol of Cardiac Differentiation and Maturation of Pluripotent Stem Cells
Human Pluripotent Stem Cell Expansion in Stirred Tank Bioreactors
A Protocol for the One-Step Differentiation of Human Induced Pluripotent Stem Cells into Mature Podocytes
Differentiation of hiPS Cells into Definitive Endoderm for High Throughput Screening
LC-MS/MS Based Metabolomics for Cell Cultures
Preparation of iPSCs for Targeted Proteomic Analysis
Measurement of Bile Acids as a Marker of the Functionality of iPSC-Derived Hepatocytes
Mass Spectrometry Measurement of Albumin/Alpha Fetoprotein Ratio as an Indicator of iPSC-Derived Hepatocyte Differentiation
Seeding Induced Pluripotent Stem Cell-Derived Neurons onto 384-Well Plates
High Content Autophagy Analysis in iPSC-Derived Neurons using Immuno-Fluorescence
High Content Analysis of Mitochondrial Function in iPSC-Derived Neurons
Evaluating the Effect of Drug Compounds on Cardiac Spheroids using the Cardiac Cell Outgrowth Assay
Assay Procedures for Compound Testing of hiPSC-Derived Cardiomyocytes using Multi-Well Microelectrode Arrays
Multielectrode Array (MEA) Based Detection of Spontaneous Network Activity in Human iPSC-Derived Cortical Neurons
Assessing Neuronal Excitability on a Fluorometric Imaging Plate Reader (FLIPR) Following a Defined Electrostimulation Paradigm
Fabrication of a Microfluidic Cell Culture Device using Photolithographic and Soft Lithographic Techniques
Using a Microfluidic Device for Culture and Drug Toxicity Testing of 3D Cells
hiPS Cell-Derived Neurons for High-Throughput Screening.
Other Format:
Printed edition:
ISBN:
978-1-4939-9477-9
9781493994779
Access Restriction:
Restricted for use by site license.

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