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Titlebook: Redox-Active Therapeutics; Ines Batinić-Haberle,Júlio S. Rebouças,Ivan Spasoj Book 2016 Springer International Publishing Switzerland 2016

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书目名称Redox-Active Therapeutics
编辑Ines Batinić-Haberle,Júlio S. Rebouças,Ivan Spasoj
视频video
概述Reviews the latest literature and developments in this area.Explains redox activity in cells that is key to understanding processes like metastasis and mechanisms of actions for therapeutics.Written b
丛书名称Oxidative Stress in Applied Basic Research and Clinical Practice
图书封面Titlebook: Redox-Active Therapeutics;  Ines Batinić-Haberle,Júlio S. Rebouças,Ivan Spasoj Book 2016 Springer International Publishing Switzerland 2016
描述.This essentialvolume comprehensively discusses redox-active therapeutics, focusingparticularly on their molecular design, mechanistic, pharmacological andmedicinal aspects.  The first section of the book describes the basicaspects of the chemistry and biology of redox-active drugs and includes a briefoverview of the redox-based pathways involved in cancer and the medical aspectsof redox-active drugs, assuming little in the way of prior knowledge.Subsequent sections and chapters describe more specialized aspects of central nervous system injuries, neurodegenerativediseases, pain, radiation injury and radioprotection (such as of brain, lungs, headand neck and erectile function) and neglected diseases (e.g., leishmaniasis).It encompasses several major classes of redox-active experimental therapeutics, whichinclude porphyrins, salens, nitrones, and most notably metal-containing (e.g.,Mn, Fe, Cu, Zn, Sb) drugs as either single compounds or formulations withnanomaterials and quantum dots. Numerous illustrations, tablesand figures enhance and complement the text; extensive references to relevantliterature are also included.. .Redox-Active Therapeutics .is an invaluable addition to Spring
出版日期Book 2016
关键词cancer mitochondria; diabetes; lung disease; metalloporphyrins; photodynamic therapy; redox-active drugs
版次1
doihttps://doi.org/10.1007/978-3-319-30705-3
isbn_softcover978-3-319-80870-3
isbn_ebook978-3-319-30705-3Series ISSN 2197-7224 Series E-ISSN 2197-7232
issn_series 2197-7224
copyrightSpringer International Publishing Switzerland 2016
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Superoxide Dismutase Family of Enzymes in Brain Neurogenesis and Radioprotection,ineage, while EC-SOD deficient mice exhibited a significant reduction in the production of newborn neurons. Similarly, ionizing radiation, even at low doses, led to persistent perturbation of the tissue redox environment and suppression of hippocampal neurogenesis. The defects in hippocampal neuroge
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Mn Porphyrin-Based Redox-Active Therapeutics, ischemia/reperfusion injuries of liver and kidney. Based on their ability to mimic kinetics and thermodynamics of the catalysis of superoxide (O..) dismutation, the cationic . Mn(III) .-substituted pyridylporphyrins (MnPs) were identified as the most powerful mimics. Over years the general knowledg
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Nitrones as Potent Anticancer Therapeutics,mor growth in a transgenic mouse model for colorectal polyps. Others have also shown that PBN and the PBN-analogue, CQPN (C-(2-chloroquinoline-3-yl)-.-phenyl nitrone) are effective in inhibiting tumor growth in a rat mammary tumor model, and breast carcinoma cell growth, respectively. The mechanism-
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Salen Manganese Complexes Mitigate Radiation Injury in Normal Tissues Through Modulation of Tissue tors of oxidative stress are increased in lung and skin radiation injury models, and suppressed by salen Mn complexes. Furthermore, histological, gene expression, and other assessments suggest that salen Mn complex treatment promotes a more normalized tissue environment in irradiated animals, includ
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Molecular Basis for Anticancer and Antiparasite Activities of Copper-Based Drugs,cell, and efficiently induce apoptosis in different tumor cells, having DNA and mitochondria as main targets. Additionally, this kind of metal-based compounds can inhibit specific proteins, implicated in topological changes of DNA, such as topoisomerases, or in the control of cell cycle, such as kin
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