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Hydrogen peroxide and cell signaling. Part A /

This new volume of Methods in Enzymology continues the legacy of this premier serial with quality chapters authored by leaders in the field. This is the first of three volumes on hydrogen peroxide and cell signaling, and includes chapters on such topics as photooxidation of amplex red to resorufin,...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Packer, Lester, Cadenas, Enrique
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Amsterdam : Academic Press, 2013.
Edición:First ed.
Colección:Methods in enzymology ; v. 526.
Temas:
Acceso en línea:Texto completo
Texto completo

MARC

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245 0 0 |a Hydrogen peroxide and cell signaling.  |n Part A /  |c edited by Enrique Cadenas and Lester Packer. 
250 |a First ed. 
264 1 |a Amsterdam :  |b Academic Press,  |c 2013. 
300 |a 1 online resource (lii, 271 pages, 12 pages of plates) :  |b illustrations (some color). 
336 |a text  |b txt  |2 rdacontent 
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490 1 |a Methods in enzymology ;  |v volume 526 
504 |a Includes bibliographical references and index. 
505 0 0 |g Section 1. Hydrogeen peroxide detection methods.  |t Photooxidation of amplex red to resorufin : implications of exposing the amplex red assay to light /  |r Fiona A. Summers, Baozhong Zhao, Douglas Ganini, and Ronald P. Mason --  |t Boronate-based fluorescent probes : imaging hydrogen peroxide in living systems /  |r Vivian S. Lin, Bryan C. Dickinson, and Christopher J. Chang --  |t Visualization of intracellular hydrogen peroxide with HyPer, a genetically encoded fluorescent probe /  |r Nataliya M. Mishina, Kseniya N. Markvicheva, Dmitry S. Bilan, Mikhail E. Matlashov, Marina V. Shirmanova, David Liebl, Carsten Schultz, Sergey Lukyanov, and Vsevolod V. Belousov --  |t In vivo imaging of H₂O₂ production in Drosophila /  |r Ana G. Barata and Tobias P. Dick --  |t Single fluorescent distinguishes hydrogen peroxide and nitric oxide in cell imaging /  |r Lin Yuan, Weiying Lin, Sasa Zhu, Kaibo Zheng, and Longwei He --  |t Electrochemical biosensors for on-chip detection of oxidative stress from cells /  |r James Enomoto, Zimple Matharu, and Alexander Revzin --  |t Electrochemical detection of H₂O₂ formation in isolated mitochondria /  |r Stefania Rapino, Raluca Marcu, Francesco Paolucci, and Marco Giorgio --  |t Detection of H₂O₂ by fluorescence correlation spectroscopy /  |r Etsuro Ito, Satoshi Watabe, Mika Morikawa, Hiromi Kodama, Ryuichi Okada, and Toshiaki Miura --  |t Real-time monitoring of reactive oxygen and nitrogen species in a multiwell plate using the diagnostic marker products of specific probes /  |r Jacek Zielonka, Joy Joseph, Adam Sikora, and Balaraman Kalyanaraman --  |g Section 2. Temporal and spacial H₂O₂ distribution.  |t H₂O₂ delivery to cells : steady-state versus bolus addition /  |r H. Susana Marinho, Lu�isa Cyrne, Enrique Cadenas, and Fernando Antunes --  |t Imaging H₂O₂ microdomains in receptor tyrosine kinases signaling /  |r Nataliya M. Mishina, Kseniya N. Markvicheva, Arkady F. Fradkov, Elena V. Zagaynova, Carsten Schultz, Sergey Lukyanov, and Vsevolod V. Belousov --  |g Section 3. Cellular sources of H₂O₂.  |t The determination and analysis of site-specific rates of mitochondrial reactive oxygen species production /  |r Casey L. Quinlan, Irina V. Perevoschikova, Renata L.S. Goncalves, Martin Hey-Mogensen, and Martin D. Brand --  |t A microfluidic systems biology approach for live single-cell mitochondrial ROS imaging /  |r Ariel Kniss, Hang Lu, Dean P. Jones, and Melissa L. Kemp --  |t Detection of oxidative damage in response to protein misfolding in the endoplasmic reticulum /  |r Guy Landau, Vamsi K. Kodali, Jyoti D. Malhotra, and Randal J. Kaufman. 
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650 0 |a Hydrogen peroxide. 
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