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[Molecular oxygen quenching of the singlet and triplet states of poryphyrins].

Rate constants of molecular oxygen quenching in solutions of singlet and triplet states of chlorophyll porphyrines molecules and their complexes with metals were measured with the help of the methods of laser photolysis, impulse fluorometry and luminescence. It has been shown that the quenching of fluorescence results from the intensification of intercombinational transition into the triplet state. The mechanism of quenching of the triplet state is discussed.

Chlorophyll↗

[Quenching of the luminescence of singlet molecular oxygen by complexes of porphyrins and highly-charged metal ions].

Quenching of singlet oxygen luminescence by the complexes of tetraphenylporphin with Fe3+, Mn3+, Sn4+, and Al3+, synthetic dimer of TTP (mu-oxo-bis-FeTPP) and by Fe3+-meso-porphyrin-IX-dimethylester has been investigated. Quenching obeys the Stern - Folmer equation. The rate constants of 1O2 quenching (Kq) by monomeric Fe-Porphyrins correspond to 1-1.5 X 10(9) M-1.s-1 and do not depend on axial ligands bound to the metal (Cl-, CH3COO-, CNS-, pyridine). Dimerization decreases Kq down to 4 X 10(7) M-1.s-1.Kq of the complexes with Mn, Sn, and Al are equal to 2.5X10(8), 2X10(6), 10(7) M-1.s-1 respectively. The data suggest that quenching by the monomeric Fe- and, probably, Mn-porphyrins is due to energy transfer from 1O2 to the eta-d levels of the quenchers.

Aluminum↗

Extracellular production of singlet oxygen by stimulated macrophages quantified using 9,10-diphenylanthracene and perylene in a polystyrene film.

The extracellular production of singlet oxygen (O2(1 delta g)) by stimulated macrophages was measured using a modification of our quantitative method initially developed to measure the intracellular production of O2(1 delta g) by neutrophils (Steinbeck, M. J., Khan, A. U., and Karnovsky, M. J. (1992) J. Biol. Chem. 267, 13425-13433). Glass coverslips were coated with the specific chemical trap for O2(1 delta g), 9,10-diphenylanthracene (DPA) and perylene, which is an internal standard, in a methylene chloride solution containing 0.3 mg/ml polystyrene. On evaporation, the polystyrene formed an even coating of DPA and perylene over the surface of a glass coverslip (PDP film). Unstimulated macrophages or macrophages stimulated with 4 beta-phorbol 12-myristate 13-acetate (PMA) or formyl-methionyl-leucyl-phenylalanine (fMLP) were then added to the PDP film in a darkened room and incubated at 37 degrees C for 30 min in a humidified 5% CO2 atmosphere. Both unstimulated and stimulated cells adhered to the PDP film in approximately equivalent numbers. Only stimulated cells produced measurable amounts of O2(1 delta g) in a dose-dependent response to either PMA or fMLP. The production of O2(1 delta g) by macrophages stimulated with PMA was maximal in response to 25 ng, 17.8 +/- 1.3 nmol of O2(1 delta g)/approximately 1.00 x 10(6) cells. The maximal response for fMLP was at a concentration of 1 microM, 18.4 +/- 1.0 nmol of O2(1 delta g)/approximately 1.00 x 10(6) cells. The specific detection of O2(1 delta g) by this method was confirmed by thermally releasing O2(1 delta g) from the DPA-O2(1 delta g) reaction product, DPA-endoperoxide, regenerating the original DPA compound. Production of O2(1 delta g) by the stimulated cells was inhibited 80-89% by the addition of 60-120 micrograms of superoxide dismutase, an enzyme that converts superoxide to hydrogen peroxide and ground state molecular oxygen or 79-84% with the addition of 2 mM histidine, an avid quencher of O2(1 delta g). Neither of these additions interfered with adhesion of the cells to the PDP film. The ability of superoxide dismutase to inhibit the production of O2(1 delta g) suggested that O2(1 delta g) was produced via a superoxide-dependent route. The ability of an oxidase to produce O2(1 delta g) secondary to superoxide production was substantiated further using a xanthine oxidase-acetaldehyde system. Purified xanthine oxidase produced both superoxide and O2(1 delta g), and their production was inhibited by the addition of superoxide dismutase.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

[Photoluminescence of singlet oxygen in solutions of chlorophylls and pheophytins].

With the use of mechanical phosphoroscopes the photoinduced luminescence of singlet oxygen (1270 nm) have been found in air saturated solutions of chlorophyll a, bacteriochlorophyll a, protochlorophyll and pheophytins in CCl4, CS2, and freon 112. The excitation spectra of the luminescence coincide with the absorption spectra of the pigments. The relative quantum yields of the luminescence are determined, the data are used for calculation the probablities of intersystem crossing in pigment molecules. All the pigments are shown to quench 1O2, the rate constants of the quenching are measured. The quenching efficiency of the chlorophylls increases with reduction of the semiisolated double bonds, reduction of these bonds in molecules of the pheophytins decreases the constants of the quenching.

Bacteriochlorophylls↗

[Protective effect of L-histidine (singlet oxygen scavenger) on transient forebrain ischemia in the rat].

Histidine is an efficient scavenger of highly active singlet oxygen and somewhat weaker scavenger of hydroxyl radicals. And it has been shown to protect against reperfusion injury in the heart. The effects of L-histidine were examined in the forebrain ischemia reperfusion injury of the rat hippocampus (CA-1). Male Wistar rats were treated with the free radical scavenger L-histidine for 30 minutes before transient forebrain ischemia produced by 4-vessel occlusion. The extracellular concentrations of glutamate were measured by cerebral microdialysis. The intravenous (i.v.) administration of 50 mg/kg and 100 mg/kg L-histidine protected the elevation of extracellular glutamate concentrations after transient cerebral ischemia (p < 0.01). And the administration of L-histidine prevented ischemia-reperfusion induced delayed neuronal death in the rats. Morphological changes in the CA-1 sector of the hippocampus were evaluated 7 days after 10 minutes occlusion. The average neuronal density of treated groups showed a statistically significant (p < 0.01) persistence compared with that of control groups. These results indicate that L-histidine can reduce neuronal damage after reperfusion of cerebral ischemia and further suggest that excitatory amino acid and oxygen free radicals may damage the brain by a common pathway.

Animals↗

Measurement of rate constants for quenching singlet oxygen with a Cypridina luciferin analog (2-methyl-6-[p-methoxyphenyl]-3,7-dihydroimidazo [1,2-a]pyrazin-3-one) and sodium azide.

The rate constants for [1O2] [MCLA] and [1O2] [NaN3] were measured by quenching the near-infrared emission (1 delta g----3 sigma g) in steady state with MCLA and NaN3, respectively. 1O2 was constantly generated by energy transfer to O2 from Ar laser-excited Rose Bengal. The Stern-Volmer plots yielded the second-order rate constants of 2.94 x 10(9) M-1 S-1 and 3.83 x 10(8) M-1 S-1 for quenching 1O2 with MCLA and NaN3 in water at pH 5.4, respectively. The 1O2 + MCLA reaction emitted light with maximum at 465 nm at pD 4.5 identical to the O(2-) + MCLA reaction.

Azides↗

MCLA-dependent chemiluminescence suggests that singlet oxygen plays a pivotal role in myeloperoxidase-catalysed bactericidal action in neutrophil phagosomes.

Bacteria ingested by a neutrophil are located in phagosomes in which H(2)O(2) is produced through the NADPH oxidase-dependent respiratory burst. Myeloperoxidase (MPO) plays important role in the bactericidal action of phagosomes. MPO catalyses the reaction of H(2)O(2) and Cl(-) to produce HClO. The chemical mechanism behind the bactericidal action of the MPO-H(2)O(2)-Cl(-) system is unclear. Bactericidal action may result from (a) the direct reactions of HOCl with biological components (through amine chlorination) or (b) (1)O(2), formed non-enzymatically from HOCl and H(2)O(2), that mainly works to kill microorganisms through bacterial respiratory chain injury. To answer this question, we developed a Cypridina luciferin analogue (MCLA)-dependent chemiluminescence method to determine the rate of formation of (1)O(2) from a (1)O(2) source at pH 4.5-9.0. Using the MCLA-dependent chemiluminescence method, we found that the rate of formation of (1)O(2) from the MPO-H(2)O(2)-Cl(-) system peaked at pH 7.0. Segal et al. (28) reported that almost all Staphylococcus aureus is killed 2 min after phagocytosis by neutrophils where the phagosomal pH is 7.4-7.75. However, amine chlorination by HOCl did not proceed at pH > 7.0. Moreover, the bactericidal activities of the MPO-H(2)O(2)-Cl(-) system with Escherichia coli at pH 4.5 and 8.0 were paralleled by the rate of formation of (1)O(2). Combining these observations and the results reported by Segal et al., we concluded that (1)O(2) is a major chemical species in the killing of bacteria in neutrophil phagosomes.

Bacteria↗

Singlet oxygen scavenging by alpha-tocopherol and beta-carotene: kinetic studies in phospholipid membranes and ethanol solution.

The rate constants (ks) of 1O2 scavenging for alpha-tocopherol (alpha-Toc) and beta-carotene (beta-Car) were measured in liposome membranes, and compared with those in EtOH solution. 1O2 was site-specifically generated by photoirradiation using two photosensitizers, water-soluble Rose bengal (RB) and lipid-soluble 12-(1-pyrene)-dodecanoic acid (PDA). The ks value for beta-Car in EtOH solution was 1.3 x 10(10) M-1 s-1, which was 36 times that for alpha-Toc (3.6 x 10(8) M-1 s-1), but there was no difference between their ks values in liposomes (1.8 x 10(7) M-1 s-1 for beta-Car and 1.2 x 10(7) M-1 s-1 for alpha-Toc). In the liposomes, the ks value for alpha-Toc was affected by the membrane site where 1O2 was generated, which depended on the localization of the photosensitizer, being high at the membrane surface in the RB-system and low in the inner region of the membrane in the PDA-system. In contrast, the ks value for beta-Car was not affected by the 1O2-generating site. These differences were supposed to be caused by differences in the relative concentrations of 1O2 and active sites of alpha-Toc and beta-Car in the membranes. alpha-Toc and beta-Car inhibited 1O2-dependent peroxidation of egg yolk phosphatidylcholine (egg PC). The concentrations of alpha-Toc required for 50% inhibition of lipid peroxidation (IC50) were higher than those of beta-Car, being more than 6 times higher in EtOH solution and less than 2 times higher in liposomes. The ratio of the antioxidant activity of beta-Car to that of alpha-Toc was more in EtOH solution than in liposomes, and was well correlated with the ratio of their 1O2 scavenging rate constants.

Electrochemistry↗

Singlet oxygen ((1)Delta(g)O(2)) as the principal oxidant in myeloperoxidase-mediated bacterial killing in neutrophil phagosome.

Intraphagosomal viability of wild type E. coli and lycopene (a powerful (1)O(2) quencher)-producing transformant E. coli was investigated using human polymorphonuclear leukocytes as the cells for phagocytosis of opsonized viable bacteria. While the viability of both wild type and the transformant E. coli decreased very rapidly in the phagosome, but the viability of the lycopene-transformant in phagosomes was about 1.7 times higher than that of wild type E. coli after 5 min of incubation. The results were very similar to the results obtained when E. coli strains were exposed to (1)O(2) generated in myeloperoxidase-H(2)O(2)-Br(-) system (a pure (1)O(2) generating system) at pH 4.5. The reason for HOCl, which may be generated in the myeloperoxidase-H(2)O(2)-Cl(-) system under physiological conditions but does not become involved in bactericidal action, could be explained by the near neutral pH in phagosomes at which bacterial killing by chlorination is extensively attenuated. This is the first report which proved (1)O(2)-mediated bacterial killing in neutrophil-bacterial phagosomal system.

Carotenoids↗

Apolipoprotein E and apolipoprotein D expression in a murine model of singlet oxygen-induced cerebral stroke.

Apolipoprotein E (apoE)-deficient mice exhibit neuronal abnormalities similar to those in Alzheimer's disease and enhanced sensitivity to stroke-associated injuries. Here, we show that apoE deficiency results in impaired microglia/macrophage recruitment and accumulation after cerebral infarct. Astrogliosis and apolipoprotein D (apoD) expression are unaffected, suggesting that the neurological abnormalities of apoE-deficient mice could be due to impaired microglia/macrophage recruitment/accumulation, which is important for the clearance of neurodegenerative products via reverse cholesterol transport. To our knowledge, the results presented herein provide the first experimental evidence that brain microglia/macrophage recruitment/accumulation is affected by apoE deficiency. The insights gained from this study should facilitate the elucidation of the role of apoE in neurological disorders such as dementia with stroke and Alzheimer's disease.

Alzheimer Disease↗