Nanotoxicity : methods and protocols /

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Bibliographic Details
Group Author: Zhang, Qunwei (Editor)
Published: Humana Press,
Publisher Address: New York, NY :
Publication Dates: [2019]
Literature type: Book
Language: English
Series: Methods in molecular biology, 1894
Springer protocols
Subjects:
Carrier Form: xii, 371 pages : illustrations (some color), forms ; 26 cm.
Bibliography: Includes bibliographical references and index.
ISBN: 9781493989157 (hardback) :
1493989154 (hardback)
9781493989164 (ebook)
1493989162 (ebook)
Index Number: RA1270
CLC: TB383-05
Call Number: TB383-05/N186-25
Contents: In vitro methods for assessing nanoparticle toxicity /
Methods for assessing mast cell responses to engineered nanomaterial exposure /
Preparation and u tilization of a 3D human liver microtissue model for nanotoxicological assessment /
Deriving neural cells from pluripotent stem cells for nanotoxicity testing /
Methods for evaluation of ovarian granulosa cells with exposure to nanoparticles /
In vitro approaches for assessing the genotoxicity of nanomaterials /
Measurement of nanoparticle-induced mitochondrial membrane potential alterations /
Application of gelatin zymography in nanotoxicity research /
Determination of phosphorylated histone H2AX in nanoparticle-induced genotoxic studies /
Analysis of nanomaterial toxicity by western blot /
Quantification of mitochondrial genome transcription in male reproductive cells by real-time PCR /
DNA methylation analysis /
Evaluation of Nrf2 with exposure to nanoparticles /
Application of electron microscopes in nanotoxicity assessment / Junzhe Zhang, Xiao He, and Michael T. Tseng -- Metabolic fingerprinting of bacteria exposed to nanomaterials, using online databases, NMR, and high-resolution mass spectrometry /
Methods to quantify nanomaterial association with, and distribution across, the blood-brain barrier in vivo /
Evaluation of genotoxicity of nanoparticles in mouse models /
Evaluation of pulmonary toxicity of nanoparticles by bronchoalveolar lavage /
Pulmonary function testing in animals /
Nanotoxicity assessment using embryonic zebrafish /
Application of Daphnia magna for nanoecotoxicity study /
Overview of methods of nanoparticle exposure assessment /