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1.
New photochemical studies of the reactivity of biopterin (BPT) and neopterin (NPT) in acidic (pH = 5.5) and alkaline (pH = 10.5) aqueous solutions at 350 nm and room temperature were performed. The photochemical properties of BPT are of particular interest because the photolysis of this compound takes place in the white skin patches of patients affected by vitiligo. The photochemical reactions were followed by UV/VIS spectrophotometry, HPLC, electrochemical measurement of dissolved O2 and enzymatic methods for hydrogen peroxide (H2O2) and superoxide anion (O2•−) determinations. When BPT or NPT are exposed to UVA radiation, a red intermediate, very likely 6-formyl-5,8-dihydropterin, is generated in an O2-independent process. That product is rapidly oxidized on admission of O2 to yield 6-formylpterin and H2O2. When the photolysis takes place in aerobic conditions, no additional pathways exist. On the other hand, in the absence of O2, the intermediate generated is not stable and leads to the formation of many products. O2•− is also generated during photo-oxidation of BPT and NPT. The quantum yields of reactant consumption depends on the O2 concentration: the higher the O2 concentration, the lower the quantum yields. This behavior is discussed in connection with the excited state of the pterins.  相似文献   

2.
Kinetic and mechanistic aspects of the vitamin B2 (riboflavin [Rf])-sensitized photo-oxidation of the imidazoline derivates (IDs) naphazoline (NPZ) and tetrahydrozoline (THZ) were investigated in aqueous solution. The process appears as important on biomedical grounds, considering that the vitamin is endogenously present in humans, and IDs are active components of ocular medicaments of topical application. Under aerobic visible light irradiation, a complex picture of competitive interactions between sensitizer, substrates and dissolved oxygen takes place: the singlet and triplet (3Rf*) excited states of Rf are quenched by the IDs: with IDs concentrations ca.  5.0 m m and 0.02 m m Rf, 3Rf* is quenched by IDs, in a competitive fashion with dissolved ground state oxygen. Additionally, the reactive oxygen species: O2(1Δg), O2•−, HO and H2O2, generated from 3Rf* and Rf •−, were detected with the employment of time-resolved methods or specific scavengers. Oxygen uptake experiments indicate that, for NPZ, only H2O2 was involved in the photo-oxidation. In the case of THZ, O2•−, HO and H2O2 were detected, whereas only HO was unambiguously identified as THZ oxidative agents. Upon direct UV light irradiation NPZ and THZ generate O2(1Δg.), with quantum yields of 0.2 (literature value, employed as a reference) and 0.08, respectively, in acetonitrile.  相似文献   

3.
Abstract— The photolysis of aqueous solutions of cis -[Cr(C2O4)2(H2O)2]- at 254 nm and pH 4 produced CO2 and H2 in nearly equal yields. The quantum yield of hydrogen, φ2, increased by 9% and the yield of carbon dioxide, φ, by 65% as the pH was lowered from 4 to I. The total gas yield, φgas, decreased in the presence of added oxalate or chromium (II) ions and when the light intensity was lowered. The gas yield in D2O was appreciably higher than in H2O. The variation of φgas with pH (D) and with added oxalate ion was roughly parallel in the two liquid media. The gas yield increased in the series:
A tentative mechanism is suggested to explain the results.  相似文献   

4.
Abstract— During the reaction HO2+ HO2 (or O2-) = H2O2+ O2 in aqueous solution, no luminescence in the region 620–720 nm, expected if the product O2 were formed in a singlet state, could be detected. If any singlet O2 is formed, its yield must be less than 10%. Faint luminescence, sometimes found at shorter wavelengths, was shown to arise from reaction of HO2 with impurities in the reagents present.  相似文献   

5.
Abstract— Strains of Escherichia coli carrying the four possible combinations of the alleles nur, nur+, uvrAb, and uvrA + were either untreated or pretreated with a sublethal dose of H202 prior to inactivation with NUV radiation. Pretreated cells exhibited a greater resistance to NUV than did untreated cells. Pretreatment with H2O2 did not induce resistance to FUV radiation. The induction of resistance to NUV inactivation by H2O2 pretreatment apparently leads to protection against the damage caused by NUV radiation. Although pretreatment of cells with H202 leads to resistance of such cells to inactivation by H2O2 and NUV, survival of H2O2 treated bacteriophage PI cml clr100 is not enhanced when assayed on H2O2 pretreated E. coli host cells.  相似文献   

6.
Abstract— Studies have been made of the inactivation of potato virus X (PVX), free PVX-RNA, and a phenotypically mixed virus particle composed of PVX-RNA and tobacco mosiac virus (U-1 strain) protein (PVXRNA: TMVPRO) by ultraviolet radiation of 254, 280 and 302 nm wavelengths. Rate constants and quantum yields of inactivation have been determined under conditions of photoreactivation and non-photoreactivation in H2O and D2O. The ratios of the rate constants in H2O to those in D2O obtained for PVX-RNA were greater than unity at the above three wavelengths, as was the case for PVX at 254 and 302 nm. The ratios of the rate constants were, within experimental error, equal to unity for PVXRNA:TMVPRO at all three wavelengths and for PVX at 280 nm. It is concluded that, in contrast to the situation observed with TMV and PVXRNA:TMVPRO, the behavior of the intact PVX viron upon irradiation closely approximates the behavior of free RNA in solution, on the basis of quantum yields of inactivation, photoreactivated sector, and the ratio of kinetic isotope effects in H2O and D2O.  相似文献   

7.
Abstract— The dose response for tumor induction in albino rat skin by single exposures of UV radiation has been characterized. The shaved dorsal skin of 202 animals was exposed to either of two sources: one emitting a broad spectrum of wavelengths from 275 to 375 nm, and the other emitting at 254 nm. Skin tumors began to appear within 10 weeks of exposure and continued to appear for 70 weeks. The highest tumor yield was 5.5 tumors per rat and occurred when the rats were exposed to 13.0 times 104 J/m2 of the 275–375 nm UV. The 275–375 nm UV was about eight times as effective as the 254 nm UV for the induction of tumors throughout the exposure range from 0.8 times 104 to 26.0 times 104J/m2. Tissue destruction and hair follicle damage was found at the highest exposure to 275–375 nm UV but at none of the exposures to 254 nm UV. Repeated weekly exposures to 275–375 nm UV proved less effective than an equivalent single exposure for inducing tumors, even though the multiple exposures caused more severe skin damage. The transmission of the UV through excised samples of rat epidermis indicated that the exposure to the basal cell layer was about 3% of the surface exposure at 254 nm and about 15% of the surface exposure between 275 and 320 nm. The dependence of tumor yield on UV exposure was linear for 254 nm UV but was more complex for the 275–375 nm UV. For the latter more tumors were produced per unit exposure at lower exposures than at higher exposures.  相似文献   

8.
Abstract—A single 3- to 20-hr exposure of line NCTC 9266 mouse cells to cool-white fluorescent light (4.6 W/m2) produces chromatid breaks and exchanges. The effective wavelength is in the visible range and coincides with the mercury emission peak at 405 nm. Increasing light intensity from 4.6 W to 15.3 W/m2 for 20 h causes a concomitant increase both in production of chromosome damage and formation of hydrogen peroxide (H2O2) in the serum-free medium. Cells washed free of medium and illuminated in saline for 3 h show chromosome damage to the same extent as cells illuminated in culture medium. Addition of catalase during the exposure period of 3 h eliminates the light-induced damage. We conclude that the light-induced chromatid breaks and exchanges result from H2O2 production within the cell and that exogenous catalase can enter the cell and prevent the damage.  相似文献   

9.
Although the first reactive oxygen species (ROS) formed during irradiation of photosensitized cells is almost invariably singlet molecular oxygen (1O2), other ROS have been implicated in the phototoxic effects of photodynamic therapy (PDT). Among these are superoxide anion radical (O2), hydrogen peroxide (H2O2) and hydroxyl radical (OH). In this study, we investigated the role of H2O2 in the pro-apoptotic response to PDT in murine leukemia P388 cells. A primary route for detoxification of cellular H2O2 involves the peroxisomal enzyme catalase. Inhibition of catalase activity by 3-amino-1,2,4-triazole led to an increased apoptotic response. PDT-induced apoptosis was impaired by addition of an exogenous recombinant catalase analog (CAT- skl) that was specifically designed to enter cells and more efficiently localize in peroxisomes. A similar effect was observed upon addition of 2,2'-bipyridine, a reagent that can chelate Fe+2, a co-factor in the Fenton reaction that results in the conversion of H2O2 to OH. These results provide evidence that formation of H2O2 during irradiation of photosensitized cells contributes to PDT efficacy.  相似文献   

10.
Abstract— The Haber-Weiss cycle:
was investigated at low pH by radiolysis of oxygen or nitrogen saturated solutions of hydrogen peroxide. It was found that reaction 2 has a low rate constant: k 2= 3.0 ± 0.6 M -1 s-1 (pH 2.3, 22°C). The rate determining step of reaction 2 is most probably the transfer of an electron from a π8* orbital of HO2 to the empty u* orbital of H2O2. Overlap between these two orbitals is hindered by the filled π8* orbitals of H2O2. Fe(HI)EDTA catalyses reaction 2.  相似文献   

11.
Abstract— The catalytic action of protohematin was studied during the H2O2-dependent chemiluminescent luminol reaction. In spite of the fact that the catalyst was ultimately inactivated, the average protohematin molecule catalyzed the consumption of about 103 molecules of luminol. The inactivation of catalyst and the initial consumption of luminol were studied during the luminescent reaction with different concentrations of reactants. A scheme accounting for the experimental observations is proposed. The formation of a primary protohematin-H2O2 complex is followed by binding of luminol, resulting in a ternary complex. A nucleophilic attack by a second molecule of H2O2 on the luminol molecule results in light emission from excited aminophthalate via a hypothetical peroxide adduct. The destruction of protohematin occurs via the attack of H2O2 on the porphyrin structure of the protohematin-H2O2 complex. Second order rate constants for the destruction of protohematin, the formation of the luminol complex and the nucleophilic attack of H2O2 are presented.  相似文献   

12.
Abstract— Irradiation (λmax 447 nm; 58.5 W m-2) of a microsomal membrane fraction of corn coleoptiles for 5 min in the presence of the in vivo concentration of riboflavin inactivates the tonoplast-type H+-ATPase. This inhibition is O2-dependent, is enhanced in D2O and suppressed by NaN3, indicating participation of singlet molecular oxygen in the inactivating mechanism. Besides singlet oxygen, the superoxide anion (O2-) is generated during irradiation, which obviously has no effect on the H+-pumping activity. However, in the presence of superoxide dismutase (SOD), O2- is transformed into H2O2 which causes an additional strong inhibition of H+. ATPase activity. This inhibition can be increased by ethylenediaminetetraacetic acid (EDTA), which is known to be an electron donor of the excited flavin molecule. In contrast, catalase prevents the H2O2-mediated photoinactivation of the H+ -ATPase. The light dependent inactivation of H+-transport does not occur if reduced glutathion (GSH) is added prior to or after irradiation. These results indicate that the blue light mediated inhibition of the H+-ATPase is mediated by singlet oxygen and H2O2 which oxidize essential SH-groups of the enzyme into disulfides. Reduction of the formed disulfides by GSH restores the activity of the enzyme.  相似文献   

13.
Abstract— We report the detection of a weak near-infrared light emission originating from 8 nM singlet molecular oxygen (1O2) produced in a mixture of 1 m M hypochlorite (OC1-) and 8 n M hydrogen peroxide (H2O2). The measurements were made with a highly sensitive detection system for ultraweak light emission in the 1.0-1.5 μm wavelength region. The emission intensity exhibited linear dependence for H2O2 concentrations in the range of 8-670 n M . The mixture containing a lower concentration (33 μ M ) of OCl- pseudocontinuously emitted near-infrared light for 5 s. The rate constant for 1O2 production obtained from the kinetic analysis agrees with that previously reported. Our results demonstrate the possibility of measuring very low concentrations of 1O2 in a OCi-/H2O2 mixture as well as 1O2 production in intact living systems.  相似文献   

14.
Exposure of Dulbecco's modified Eagle's tissue culture medium to visible fluorescent light generated photoproducts toxic to human cells in culture. Toxicity manifested at the chromosome level was increased chromosome aberrations and sister chromatid exchanges in cells exposed to the photoproducts. Hydrogen peroxide (H2O2), a major photoproduct, induced SCE but failed to increase chromosome aberrations. Pure H2O2, or the H2O2 generated in light-exposed medium, was necessary and sufficient for inducing all the increase in SCE. However, H2O2 was necessary but insufficient to cause most of the chromosome aberrations. Only when acting synergistically with other photoproducts did H2O, induce extensive chromosome aberrations. The relatively high cell densities at near confluence levels used in these experiments were less sensitive to light-induced effects, nevertheless the entire light exposure dosage range effected photoproduct production adequate for inducing SCE and chromosome aberrations. Thus, mammalian tissue and cell culture media can receive sufficient dosage from fluorescent lights illuminating rooms and culture hoods for generation of photoproducts causing gross and insidious SCE and chromosome alterations.  相似文献   

15.
Abstract— The oxidation of purpurogalline (PPG) by alkaline solution of H2O2 pH 9–11 at 298°K is accompanied by chemiluminescence (CL) in the spectral range 400–600 nm with the maximum at 500 nm and quantum yield about 10-6. The optimal concentrations of reactants with respect to maximal intensity are: 2 × 10-4 M PPG, 10-2 M NaOH, 1 M H2O2. Activation energy calculated from the maximum intensity of CL is 8.1×0.4 kcal/mole. Light emission occurs only when OH-groups of the phenolic ring of PPG undergo oxidation and the blue anion of o -PPG-quinone is formed. The rate that determines step in the reaction associated with luminescence is the nucleophilic attack of OOH- ion on the blue anion of o -PPG-quinone. In this exergonic step (-ΔH = 63 to 230kcal/mole) the o - and/or p -quinone ring is opened and carbonyl derivatives of α-tropolone are produced. They display fluorescence in the region 400–600 nm. The fluorescence spectrum of the reaction mixture after oxidation of PPG is very close to that of CL. It is likely that carbonyl derivatives of α-tropolone are emitters of CL.  相似文献   

16.
The light-emitting principle of the brittle star Ophiopsila californica has been isolated and purified. It was found to be a green-fluorescent photoprotein (molecular weight 45000) which emits green light (λmax 500 nm) when H2O2 is added, independently of the presence or absence of O2. The green fluorescence (emission maximum 500 nm, excitation maximum 440 nm) spectrally coincided with the H2O2-triggered luminescence, indicating that the green fluorescent chromophore is the light-emitter of the photoprotein luminescence.  相似文献   

17.
Abstract— In many biological systems, the role of O2- in hydroxylation and toxic processes was assumed to be due to the formation of OH radicals. The Haber-Weiss reaction (Haber and Weiss, 1934)—(H2O2+ O2-→ OH + OH-+ O2) was suggested as the origin of this activity.
In this study it is shown that this reaction pathway is too slow, and that OH is probably formed from the reaction of complexed superoxide with H2O2 or/and from the reduction of Fe(III), bound to biological compounds, by O2-; the reduced Fe(II) can then react with H2O2 as a Fenton reagent, to yield OH.
It is also shown that singlet oxygen cannot be formed in these biological systems neither from the dismutation of OJ nor from the reaction of O2- with OH. Singlet oxygen may be formed from the reduction of metal complexes by O2-.  相似文献   

18.
Abstract In the presence of the photosensitizer riboflavin at high fluence rates a photoproduct, most probably H2O2, is formed which causes negative phototaxis in the colorless flagellate Polytomella magna . The aim of this study was to find out whether H2O2 is produced in a type I or II reaction. As has been shown, 1O2 quenchers either do not influence the photodynamic action of riboflavin (furfuryl ethanol, DPBF, l -histidine, crocetin) or show slight quenching effects only at very high concentrations ≧ 10−2 M (DABCO, DMF, imidazole). D2O is toxic to P. magna even in 1:1 and 1:2 mixtures with H2O. On the other hand, the quenching effect of 1,4-benzoquinone, highly indicative for the type I pathway, is more than two orders of magnitude stronger than the one of the above mentioned 1O2 quenchers. The results suggest that H2O2 is produced in a type I reaction. Superoxide does not seem to be involved since superoxide dismutase does not diminish the photodynamic effect of riboflavin.  相似文献   

19.
Abstract— The bioluminescent oxidation of reduced flavin mononucleotide by bacterial luciferase involves a long-lived flavoenzyme intermediate whose chromophore has been postulated to be the 4a-sub-stituted peroxy anion of reduced flavin. Reaction of long chain aldehyde with this intermediate results in light emission and formation of the corresponding acid. These experiments show that the typical aldehyde-dependent, luciferase-catalyzed bioluminescence can also be obtained starting with FMN and H2O2 instead of FMNH2 and O2. We postulate that the 4a-peroxy anion intermediate is formed directly by attack of H2O2 on FMN. The latter may be bound to luciferase. An enzyme bound intermediate is formed which by kinetic analysis, flavin specificity for luminescence, aldehyde dependence, and bioluminescent emission spectrum appears to be identical with the species generated by reaction of FMNH, and O2 with luciferase. The quantum yield of the H2O2-- and FMN-initiated biolumlnescence is low but can be enhanced by certain metal ions, which also stimulate a chemiluminescent reaction of oxidized flavin with H2O2. The peak of this chemiluminescence. however, appears to be at a shorter wavelength than that (490 nm) of the bioluminescence.  相似文献   

20.
Abstract— –In the light, isolated spinach thylakoids consumed O2 in the presence of methylviologen, and ascorbate was found to interact with this reaction in various ways. Chelating-resin was used to remove metal impurities from the assay medium. Ascorbate diminished the H202 pool in resin-untreated solutions, while in resin-treated solutions ascorbate had no effect on H2O2 concentrations. A Fenton catalyst (Fe-EDTA) increased O2 uptake in the presence of ascorbate and decreased the amount of O2 recovered by catalase. Ascorbate tripled the rate of the methylviologen-mediated Mehler reaction, and the O2 consumed was liberated to 50% of its original concentration by catalase. Superoxide dismutase reversed the effects of ascorbate on the Mehler reaction rates. These results indicate that ascorbate can stimulate Mehler reactions indirectly by promoting a Fenton-type reaction as well as stimulating Mehler reactions directly by reducing 2O2- to 2H2O2. The promotion of a Fenton-type reaction by ascorbate appears to be the cause of H2O2 depletion in resin-untreated solutions.  相似文献   

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