نتایج جستجو برای: hydroxyl radical

تعداد نتایج: 99444  

Journal: :The Journal of biological chemistry 1989
K Yamamoto S Kawanishi

Site-specific DNA damage by Cu(II) plus H2O2 was investigated by a DNA-sequencing technique. Cu(II) plus H2O2 induced strong DNA cleavage even without piperidine treatment. Piperidine-labile sites were induced frequently at thymine and guanine residues and rarely at adenine residue. A Cu(I)-specific chelating agent, bathocuproine, inhibited the DNA damage. Neither ethanol nor mannitol inhibited...

2013
Béla Fiser Balázs Jójárt Imre G. Csizmadia Béla Viskolcz

Non-reactive, comparative (2 × 1.2 μs) molecular dynamics simulations were carried out to characterize the interactions between glutathione (GSH, host molecule) and hydroxyl radical (OH(•), guest molecule). From this analysis, two distinct steps were identified in the recognition process of hydroxyl radical by glutathione: catching and steering, based on the interactions between the host-guest ...

Journal: :The Biochemical journal 1996
M J Burkitt L Milne P Nicotera S Orrenius

Isolated rat-liver nuclei were incubated with a series of membrane-permeable metal-ion-complexing agents and examined for DNA damage. Of the reagents tested, only 1,10-phenanthroline (OP) and neocuproine (NC) were found to induce DNA fragmentation. Agarose-gel electrophoresis of the DNA fragments generated in the presence of OP revealed internucleosomal cleavage, which is widely considered to b...

Journal: :Chemical & pharmaceutical bulletin 2000
T Akimoto

N,N'-Propylenedinicotinamide (Nicaraven) is presently being developed for the treatment of cerebral stroke including subarachnoid hemorrhage. This drug is promising because some data suggest it to have an ability to scavenge the hydroxyl radical under physiological conditions in vivo, while it also has a high permeability through the blood brain barrier. Using the kinetic constant of the reacti...

Journal: :The international journal of biochemistry & cell biology 2005
Shunichi Shimizu Masakazu Ishii Yoshiyuki Miyasaka Teruaki Wajima Takaharu Negoro Tamio Hagiwara Yuji Kiuchi

We recently described that hydrogen peroxide (H2O2) stimulates the synthesis of tetrahydrobiopterin (BH4) through the induction of the rate-limiting enzyme GTP-cyclohydrolase I (GTPCH), and increases tetrahydrobiopterin content in vascular endothelial cells. Tetrahydrobiopterin is easily oxidized by peroxynitrite (ONOO-), but not by hydrogen peroxide. The aim of this study was to determine the ...

2004
Klára Szentmihályi Anna Blázovics Péter Vinkler

Since metals are cable of catalysing the free radical reactions, different metal (Mg, Mn, Zn) compounds were studied to determine their hydroxyl radical generating and/or scavenging abilities depending on ligand in a H2O2/OH -luminol system with or without microperoxidase. Magnesium oxide, magnesium gluconate and manganese gluconate increase the free radical reactions in the H2O2/OH -luminol sy...

2004
Richard Rokyta Pavel Stopka Václav Holecek Karel Krikava Ivana Pekárková

The concentrations of ROS were measured in samples of the sensorimotor brain cortex and in the rat blood. We measured the following parameters: The six lines spectra, nitroxide radical, free hydroxyl radical and singleton oxygen. Their concentration was measured under physiological conditions, after the nociceptive stimulation and after the application of melatonin, both in normal and stimulate...

2010
Do Young Kwon Sun Ju Kim Ju Won Lee Young Chul Kim

The ability of 80% ethanol extracts from five medicinal plants, Aralia continentalis, Paeonia suffruticosa, Magnolia denudata, Anemarrhena asphodeloides, and Schizonepeta tenuifolia, to neutralize hydroxyl radical, peroxyl radical and peroxynitrite was examined using the total oxyradical scavenging capacity (TOSC) assay. Peroxyl radical was generated from thermal homolysis of 2,2'-azobis (2-met...

Journal: :Blood 1979
S J Weiss J Turk P Needleman

Hydroxyl radical generation was demonstrated during heme-catalyzed decomposition of 15-hydroperoxy arachidonic acid. The hydroperoxide-mediated inactivation of prostacyclin synthetase seems to be related to the generation of this highly reactive species. A relationship between hydroperoxides and the hydroxyl radical may be important in the modulation of prostacyclin synthesis in diseased states.

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