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1 nced by the inhibition of these effects with diphenyliodonium.
2  vessels and could be inhibited with SOD and diphenyliodonium.
3  by nitroblue tetrazolium, ferricyanide, and diphenyliodonium.
4  of nitroblue tetrazolium, ferricyanide, and diphenyliodonium.
5 teine but not by the NADPH oxidase inhibitor diphenyliodonium.
6 seven thiophenes with benzyne generated from diphenyliodonium-2-carboxylate (DPIC) under a standard s
7 nic F127) and the photoacid generator (PAG), diphenyliodonium-2-carboxylate monohydrate.
8  peroxidase and was inhibited by catalase or diphenyliodonium (a flavoenzyme inhibitor), similar to t
9     ROS generation was markedly inhibited by diphenyliodonium, a flavoprotein inhibitor, and by the s
10                                    Moreover, diphenyliodonium, a specific Nox inhibitor, blocked prol
11             Inhibition of NADPH oxidase with diphenyliodonium abolished the inhibitory effect of AngI
12                                    Catalase, diphenyliodonium (an inhibitor of flavoenzymes), and sur
13 er ascorbate and the NADPH oxidase inhibitor diphenyliodonium and analysis of Ca(2+) wave propagation
14 aling, including NAD(P)H oxidase inhibitors (diphenyliodonium and apocynin) or enhancement of peroxid
15 ary artery NADH oxidoreductase (1 micromol/L diphenyliodonium) and electron acceptors for NADH oxidor
16 d for the rotation of the phenyl ring in the diphenyliodonium cation during ligation of the substrate
17                                      Whereas diphenyliodonium chloride inhibited O-2, blockers of hem
18                              The reaction of diphenyliodonium chloride with free reduced flavins has
19 ssed >90% by pan-flavoenzyme inhibition with diphenyliodonium chloride.
20 h readout by a photostimulated reaction with diphenyliodonium chloride.
21                                              Diphenyliodonium (DPI) is known to irreversibly inactiva
22                               In this study, diphenyliodonium (DPI) is used as an inhibitor of flavop
23 trast, inhibition of NADPH oxidase either by diphenyliodonium (DPI) or by genetically deleting gp91(p
24                                              Diphenyliodonium (DPI), an inhibitor of flavoprotein-con
25      Inactivation of flavoprotein enzymes by diphenyliodonium has also been studied, and several exam
26 ion can also be triggered in the presence of diphenyliodonium nitrate (DPIN) as a photoacid under UV
27 ns of three different nucleophiles employing diphenyliodonium tosylate.
28                           Dibenziodolium and diphenyliodonium triflates display high catalytic activi