Matches in SemOpenAlex for { <https://semopenalex.org/work/W2016292169> ?p ?o ?g. }
- W2016292169 endingPage "7548" @default.
- W2016292169 startingPage "7536" @default.
- W2016292169 abstract "Two transformed murine macrophage cell lines (RAW 264.7 ATCC TIB-71 and CRL-2278) were examined for oxidant production at various times following activation by using a set of fluorescence and ESR-active probes. Stimulation with a soluble agonist or activation with bacterial lipopolysaccharide plus gamma-interferon caused only very small initial increases in O2 consumption above basal rates; however, at 2-4 h post-activation, respiration increased to 2-3-fold and remained at these elevated levels over the subsequent lifetime of the cell (20-30 h). Oxidation reactions were confined primarily within the cell, as was demonstrated by using phagocytosable dichlorodihydrofluorescein-conjugated latex beads and cyclic hydroxylamines with differing membrane permeabilities. From the intrinsic reactivities of these probes and the time course of their oxidations, one infers the induction of apparent peroxidase activity beginning at approximately 2 h post-activation coinciding with the increase in overall respiratory rate; this acquired capability was accompanied by accumulation of a stable horseradish peroxidase-reactive oxidant, presumably H2O2, in the extracellular medium. Nitrite ion rapidly accumulated in the extracellular medium over a period of 5-8 h post-activation in both cell lines, indicating the presence of active nitric oxide synthase (iNOS) during that period. Prostaglandin endoperoxide H synthase (COX-2) activity was detected at 15-20 h post-activation by the use of a sensitive peroxide assay in conjunction with a COX-2 specific inhibitor (DuP-697). Superoxide formation was detected by reaction with hydroethidine within the first hour following activation, but not thereafter. Consistent with the absence of significant respiratory stimulation, the amount of O2*- formed was very small; comparative reactions of cyclic hydroxylamine probes indicated that virtually none of the O2*- was discharged into the external medium. Myeloperoxidase (MPO) activity was probed at various times post-activation by using fluorescein-conjugated polyacrylamide beads, which efficiently trap MPO-generated HOCl in neutrophils to give stable chlorofluorescein products. However, chlorination of the dye was not detected under any conditions in RAW cells, virtually precluding MPO involvement in their intracellular reactions. This same probe was used to determine changes in intraphagosomal pH, which increased slowly from approximately 6.5 to approximately 8.2 over a 20 h post-phagocytosis period. The cumulative data suggest that activation is followed by sequential induction of an endogenous peroxidase, iNOS, and COX-2, with NADPH oxidase-derived O2*- playing a minimal role in the direct generation of intracellular oxidants. To account for reported observations of intracellular tyrosine nitration late in the life cycles of macrophages, we propose a novel mechanism wherein iNOS-generated NO2- is used by COX-2 to produce NO2* as a terminal microbicidal oxidant and nitrating agent." @default.
- W2016292169 created "2016-06-24" @default.
- W2016292169 creator A5021030425 @default.
- W2016292169 creator A5054375658 @default.
- W2016292169 creator A5067188506 @default.
- W2016292169 date "2007-05-27" @default.
- W2016292169 modified "2023-09-27" @default.
- W2016292169 title "Pathways for Intracellular Generation of Oxidants and Tyrosine Nitration by a Macrophage Cell Line" @default.
- W2016292169 cites W1536654439 @default.
- W2016292169 cites W1551561822 @default.
- W2016292169 cites W1553073688 @default.
- W2016292169 cites W1577479878 @default.
- W2016292169 cites W1579134710 @default.
- W2016292169 cites W1587123510 @default.
- W2016292169 cites W1602276313 @default.
- W2016292169 cites W1606357879 @default.
- W2016292169 cites W1837630174 @default.
- W2016292169 cites W1874751834 @default.
- W2016292169 cites W1898112139 @default.
- W2016292169 cites W1901924975 @default.
- W2016292169 cites W1969545692 @default.
- W2016292169 cites W1970544819 @default.
- W2016292169 cites W1978245407 @default.
- W2016292169 cites W1979802917 @default.
- W2016292169 cites W1983361372 @default.
- W2016292169 cites W1984997174 @default.
- W2016292169 cites W1986452585 @default.
- W2016292169 cites W1989224728 @default.
- W2016292169 cites W1989835627 @default.
- W2016292169 cites W1995678264 @default.
- W2016292169 cites W2001197606 @default.
- W2016292169 cites W2013557200 @default.
- W2016292169 cites W2020129304 @default.
- W2016292169 cites W2020600203 @default.
- W2016292169 cites W2020704694 @default.
- W2016292169 cites W2023772557 @default.
- W2016292169 cites W2027197622 @default.
- W2016292169 cites W2027400604 @default.
- W2016292169 cites W2036026964 @default.
- W2016292169 cites W2055688463 @default.
- W2016292169 cites W2055913217 @default.
- W2016292169 cites W2056952563 @default.
- W2016292169 cites W2057028848 @default.
- W2016292169 cites W2060061701 @default.
- W2016292169 cites W2060807115 @default.
- W2016292169 cites W2067755346 @default.
- W2016292169 cites W2071603269 @default.
- W2016292169 cites W2072320125 @default.
- W2016292169 cites W2073192310 @default.
- W2016292169 cites W2074203890 @default.
- W2016292169 cites W2075500813 @default.
- W2016292169 cites W2076669998 @default.
- W2016292169 cites W2084836819 @default.
- W2016292169 cites W2090003851 @default.
- W2016292169 cites W2092807797 @default.
- W2016292169 cites W2094238895 @default.
- W2016292169 cites W2094745968 @default.
- W2016292169 cites W2094831476 @default.
- W2016292169 cites W2099445613 @default.
- W2016292169 cites W2115659530 @default.
- W2016292169 cites W2117036786 @default.
- W2016292169 cites W2125762027 @default.
- W2016292169 cites W2134732424 @default.
- W2016292169 cites W2138177096 @default.
- W2016292169 cites W2141354142 @default.
- W2016292169 cites W2144596408 @default.
- W2016292169 cites W2149863399 @default.
- W2016292169 cites W2151840391 @default.
- W2016292169 cites W2159870607 @default.
- W2016292169 cites W2162455056 @default.
- W2016292169 cites W2327112576 @default.
- W2016292169 cites W2468858310 @default.
- W2016292169 cites W2952210817 @default.
- W2016292169 cites W4237866440 @default.
- W2016292169 cites W4240381454 @default.
- W2016292169 cites W4240619060 @default.
- W2016292169 doi "https://doi.org/10.1021/bi700123s" @default.
- W2016292169 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/2584613" @default.
- W2016292169 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/17530864" @default.
- W2016292169 hasPublicationYear "2007" @default.
- W2016292169 type Work @default.
- W2016292169 sameAs 2016292169 @default.
- W2016292169 citedByCount "46" @default.
- W2016292169 countsByYear W20162921692012 @default.
- W2016292169 countsByYear W20162921692013 @default.
- W2016292169 countsByYear W20162921692014 @default.
- W2016292169 countsByYear W20162921692015 @default.
- W2016292169 countsByYear W20162921692016 @default.
- W2016292169 countsByYear W20162921692017 @default.
- W2016292169 countsByYear W20162921692018 @default.
- W2016292169 countsByYear W20162921692020 @default.
- W2016292169 countsByYear W20162921692021 @default.
- W2016292169 countsByYear W20162921692022 @default.
- W2016292169 crossrefType "journal-article" @default.
- W2016292169 hasAuthorship W2016292169A5021030425 @default.
- W2016292169 hasAuthorship W2016292169A5054375658 @default.
- W2016292169 hasAuthorship W2016292169A5067188506 @default.
- W2016292169 hasBestOaLocation W20162921692 @default.