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1.
Abstract-Fluorescence photobleaching of a carboxyfiuorescein-labeled protein (erythrocyte cytoskel-etal protein 4.1) immobilized on bare glass is found to be spontaneously reversible, provided that the sample is deoxygenated. After a short (hundredths of seconds) photobleaching laser flash, the subsequent fluorescence excited by a dim probe beam partly recovers on a long (tenths of second) time scale, even in the absence of chemical exchange or diffusion processes. Neither the fraction of the fluorescence that bleaches reversibly nor its recovery rate is a strong function of fluorophore surface concentration. At a fixed surface concentration, the reversibly photobleached fraction and its recovery rate decreases with increasing duration or intensity of the bleaching flash. On the other hand, nondeoxygenated air-equilibrated samples exhibit almost total irreversible bleaching on this time scale. Quantitative fluorescence microscopy experiments occasionally require deoxygenation to avoid photochemical crosslinking or photobleaching or to enhance the triplet state population. The observations presented here indicate that fluorescence recovery after photobleaching (FRAP) experiments performed under deoxygenated conditions for measuring diffusion or chemical kinetics should be interpreted with caution: fluorescence recoveries may be due to intrinsic photochemical processes rather than fluorophore mobility. The recovery effect appears too slow to be ascribed simply to a relaxation of a triplet state; other possible explanations are offered.  相似文献   

2.
Abstract— The interpretation of the viscosity dependence of anthracene triplet decay is shown to be complexed by the effects of the macroscopic and the microscopic viscosity of the system on the translational diffusion coefficient. The second order rate constant for the decay of the anthracene triplet as measured by flash photolysis is equal to 2.45plusmn;.30×1091. mole-1sec-1 for nearly a one hundredfold change in the viscosity of cyclohexane-polyisobutylene solutions. The translational diffusion coefficient is unaffected by the presence of the polymer, and the local viscosity of the polymer solutions is identical to that of the pure solvent.  相似文献   

3.
Abstract— Flash photolysis at 450 nm has been used to study the quenching of the excited triplet state of lumiflavin and the transient species formed in subsequent reactions in deaerated phosphate buffer (pH 6.9).
The effect of the presence of ferricyanide on the life time of triplet lumiflavin has been studied. The results suggest an energy transfer reaction without concurrent electron transfer reactions. The rate constant for the process was 2.8 times 109 M -1 s-1. The analogous reaction with ferrocyanide could not be observed because of the efficient electron transfer reaction (δG = -20.6 kcal mol-1) leading to the formation of the semireduced lumiflavin and ferricyanide. The rate constant for this reaction was 3.3 times 109 M -1 s-1. The semireduced lumiflavin radical was found to disappear in a second order reaction with a rate constant of 1.7 times 109 M -1 s-1. It was found to react with ferricyanide with a rate constant of 0.7 times 109 M -1 s-1.
A model for the various photochemical and photophysical processes involved in the decay and quenching of the lumiflavin triplet state is suggested and discussed.  相似文献   

4.
Room-temperature hydrogen-bonding of all- trans retinal (ATR) with 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP) in cyclohexane results in fluorescence enhancement and triplet yield quenching; these effects, as well as the associated absorption spectral changes in both ground and triplet states and the kinetics of H-bonding in the triplet state, have been studied by steady-state absorption-emission and laser flash-photolytic transient measurements. The fluorescence enhancement is predominantly controlled by the H-bonding in the ground state (static interaction) and gives a value of 440 M -1 for the corresponding equilibrium constant which is very similar to the value (420 M -1) obtained from the analysis of absorption spectral data as a function of [HFIP˜. The quantum yield of triplet occupation (øT) of the H-bonded complex, ATR-HFIP, in cyclohexane is non-negligible and is about one-third of øT of free ATR. The kinetic data of H-bonding equilibration in the triplet state, observable on a nanosecond time scale, indicate that the triplet ATR is a stronger base than the ground state as far as H-bonding with HFIP is concerned.  相似文献   

5.
6.
Abstract— The kinetics of photooxidation of triplets of metalloporphyrin compounds to their corresponding radical cations was investigated. Zn-tetraphenyl porphyrin (ZnTPP) and Mg-tetraphenylpor-phyrin (MgTPP) triplets were oxidized by europium salt with rate constants of 4.8 × 105M-1s-1 and 2.1 × 106M-1s-1, respectively. The high rate constant of oxidation of MgTPP triplet might be related to the ground state oxidation potential, being 0.54 V (SCE) for the Mg complex and 0.71 (SCE) for the Zn complex.
The rate constant of oxidation of ZnTPP excited singlet is in the order of diffusion control, i.e. ˜ 1010M -1 s-1. Excitation of ferric, cupric, cobaltic, and vanadyl tetraphenylporphyrin did not result in a long-lived triplet state that would allow oxidation studies using flash photolysis.  相似文献   

7.
Abstract— The long-lived (> 1 μsec) transients formed in the flash excitation of the representative photosensitizers methylene blue, eosin Y and pyrene have been investigated and various criteria have been used to distinguish between triplet state intermediates and chemical intermediates. Previous assignments of the triplet transients of methylene blue appeared less secure in view of the photochemical reactivity of this dye and its lack of phosphorescence. Earlier assignments of monomeric and dimeric triplet transients of methylene blue are substantiated, however, by the observations that the rate constant for quenching by oxygen is approximately 1/9th diffusion controlled and the formation rates are commensurate with singlet decay rates and by the observation of triplet-triplet annihilation. Additional evidence in support of monomer triplet assignments for methylene blue and eosin Y is provided by the effect of heavy atom quenchers Cs+, Hg2+ and T1+ on decay rates. Due to chemical reactivity, quenching by Iappears less suitable as a diagnostic test for triplet state intermediates. The effect of N3, which is known to quench singlet oxygen molecules and to alter the course of photosensitized oxidations, on the triplet decay of methylene blue, eosin Y and pyrene is also investigated.  相似文献   

8.
Abstract— We have characterized the spectra, acidity constants and decay kinetics of the triplet and semireduced radical species of Safranin-O. Between pH 3.0 and 10.6, there are three triplet species denoted 3DH2 +2, 3DH+ and 3D, the p K as being 7.5 and 9.2. All three triplet species exhibit first order decay, the rate constant for 3DH+ being ca. 5-fold lower than the rate constants of 3DH+ and 3D. Ascorbic acid and ethylenediaminetetraacetic acid (EDTA) quench the triplet state under appropriate pH conditions and the pH dependencies of the yield of semireduced dye indicate that 3DH+ is more reactive than 3DH+ or 3D. With EDTA as the reducing agent, there is the additional requirement that at least one of the amino nitrogens be deprotonated to obtain a significant yield of semireduced dye. In these reactions, ascorbic acid is oxidized reversibly, but EDTA is oxidized irreversibly, so that with the latter reducing agent photolysis causes buildup of the leucodye, which on subsequent photolysis can reduce triplet state dye. With ascorbic acid as the reducing agent, the regeneration of the ground state dye is reversible, the decay of the semireduced radical being second order. In general, the transient photochemistry of Safranin-O resembles that of Thionine, the major difference being that the lifetimes of 3DH2 +2 and 3DH+ are much longer for Safranin-O than for Thionine.  相似文献   

9.
Abstract— The triplet state of orotic acid has been studied by flash photolysis. The rate for dimerization has been observed to vary from 2 × 109 M -1 sec-1 at pH 1 where both the triplet and ground state molecules are neutral, to under 108 M-1 sec-1 above pH 9 where both the triplet and ground state molecules are doubly ionized. The p K of the triplet state has been measured as 4.6. The rate of oxygen quenching for the triplet is 2–3 × 109 M-1 sec-1 while the rate of radiationless decay in solution is 0.73 × 104 sec-1. The triplet absorption spectra have been measured for the two ionic forms of the triplet.  相似文献   

10.
Abstract— The photophysical characteristics of two second-generation PDT photosensitizers, tin ethyl etiopurpurin I (SnET2) and tin octaethylbenzochlorin (SnOEBC), have been measured in homogeneous solution and when bound to bovine serum albumin (BSA). The ground state and triplet state absorption spectra have been characterized, as have triplet lifetimes and quantum yields for intersys-tem crossing, singlet oxygen formation and photobleaching. In total, these parameters provide a complete set of data that can be used to quantitatively compare the photosensitizing efficiencies of these molecules. The photo-bleaching quantum yield of SnET2 is increased dramatically when it is bound to BSA, thus limiting the production of singlet oxygen at incident fluences above 1 J/cm2. In contrast, the quantum yield of photobleaching of SnOEBC is at least an order of magnitude lower than that of SnET2 under these conditions and does not significantly limit the photosensitization process for typical in vivo or in vitro fluences. This difference is expected to play a significant role in determining the relative photosensitizing ability of these compounds in vivo.  相似文献   

11.
New fluorinated biarsenical derivatives with improved optical properties based on highly photostable analogs of fluorescein were recently introduced. The photophysical parameters of the triplet excited states as well as photosensitized oxidation reactions of these dyes were determined in order to investigate the influence of molecular structure on the exceptional photostability of these fluorophores. The lack of correspondence between triplet quantum yields and lifetimes with the photobleaching rates of some of the fluorophores of the series suggests that differential reactivities of the excited states with ground state oxygen accounts for the different photodegradation resistances. The UV–visible absorption and emission spectra of the fluorinated fluoresceins and their biarsenical derivatives were evaluated using a TD-DFT/BP86/6-31G** approach, taking bulk solvent effects into account by means of the polarizable continuum model. The calculated properties are in good agreement with experimental data. The S0→S1 vertical excitation energies in the gas phase and in water were obtained with the optimized geometries of the excited states. This type of calculation could be used in the rational design of new dyes.  相似文献   

12.
Abstract— The transient absorption spectra of the intermediates produced by the 355 nm laser excitation of gilvocarcin derivatives have been investigated in various solvents. The spectra consist of a triplet-triplet absorption in the visible region and a residual absorption observed between 340 and 700 nm due to a long-lived species, assigned to the radical cation. A broad-fast decaying band with a maximum at around 700 nm attributed to the solvated electron is also seen in solutions containing a low DMSO/water volume ratio and at 266 nm irradiation of a 50% methanol/water solvent mixture. The molar absorption coefficient of the triplet state of gilvocarcin V (GV) and gilvocarcin M (GM), determined by the energy transfer method, is independent of the solvent properties and has a value of 3.0 × 104/ M cm. The triplet decay rate constants for both drugs are between 1 and 5 × 104/s. A similar initial yield and triplet decay rate constant of GV were observed in the presence of 3.4 m M thymine. Thus, a quenching rate constant of the GV's triplet state by thymine is estimated to be lower than 106/Ms. The triplet quantum yields of both antibiotics determined by using the comparative method are higher in dimethylsulfoxide (DMSO) (0.18) than are those corresponding to 25% DMSO/water (0.06). The decrease in φT in the presence of water could be attributed to an enhanced internal conversion rate constant from the S1 state or to an increase in the photoionization yield. The similarity of the transient intermediates and their yields for GV and GM suggest that their photobiological differences are due to other factors such as DNA binding constants, preferential localization of the drugs in the cell or the enhanced reactivity of the vinyl group toward cellular components.  相似文献   

13.
The singlet oxygen quantum yield (φ1o2) of 11 purified fluorescein derivatives was determined by reaction with singlet oxygen acceptors in aqueous and ethanolic solutions; in both solvents φ1o2 was enhanced with increasing halogenation. Tryptophan and 2,2,6,6-tetramethylpiperidone were found to be unadapted for the determination of φ1o2, in our systems; however, the use of 9.10-dipropionic anthracene acid andp-nitrosodimethylaniline in conjunction with imidazole derivatives was suitable for 1O2 detection in water. Both methods lead to results in excellent agreement. As in ethanol. φ1o2, was equal to the triplet state quantum yield (φT), the comparison between the two solvents showed that φT in water was greater than in ethanol. The comparison between our values obtained with polychromatic light with published data obtained with monochromatic light suggests that the triplet quantum yield of fluorescein derivatives is wavelength independent.  相似文献   

14.
Abstract— The photoreduction of methylene blue in the presence of arylaminomethanesulfonates (RAMS = RC6H4NHCH2SO3Na) was studied by laser and conventional flash photolysis. These compounds quenched the methylene blue triplet deviating from a normal Stern-Volmer behaviour. For low quencher concentrations, a Rehm-Weller relationship was found between the k q's and the DL G 's obtained for the electron transfer reactions. The lack of further quenching at higher [RAMS] is ascribed to the formation of a ground state ion pair between the dye and the anionic quencher which, on excitation, forms a triplet state unable to under go electron transfer for steric reasons. A second order decay rate constant was found for the semireduced species (MB') ( ca. 5 × 109 M -1 s-1, independent of the RAMS used) and is attributed to a proton transfer from the radical zwitterion (RC6H4NH CH2SO3) to MB. The overall dependence on the substituent of the bleaching observed by continuous irradiation follows the triplet behaviour.  相似文献   

15.
Abstract— The temperature dependencies of the primary donor triplet state spectra are presented for the phorosynthetic bacteria Rhodopseudomonas sphaeroides wild type. GIC and R26. The data suggest that energy transfer from the primary donor triplet state to the reaction center carotenoid is dependent on the type of carotenoid present, reversible in the case of strain GIC, and best understood by a model depicting the kinetic processes that can occur between two potential energy surfaces; one representing the state 3BChl2*Car and the other representing BChl23Car*. Furthermore, it is shown that the onset of spin lattice relaxation in the primary donor triplet is most likely coupled to the same energy vibrational mode as that which promotes triplet state energy transfer from the primary donor to the reaction center carotenoid  相似文献   

16.
Abstract— The extinction coefficient εT, of triplet benzophenone in benzene has been directly determined by absolute measurements of absorbed energy and triplet absorbance, Δ D 0T, under demonstrably linear conditions where incident excitation energy, E 0, and ground state absorbance, A 0, are both extrapolated to zero. The result, 7220 ± 320 M -1 cm-1 at 530 nm, validates and slightly corrects many measurements relative to benzophenone of triplet extinction coefficients made by the energy transfer technique, and of triplet yields obtained by the comparative method.
As E 0 and A 0 both decrease, Δ D 0T becomes proportional to their product. In this situation, the ratio R = (1/ A 0)(dΔ D 0T/d E 0) = (εT - εGT. Measurements of R , referred to benzophenone, give (εT - εGT for any substance, without necessity for absolute energy calibration.
Both absolute and relative laser flash measurements on zinc tetraphenyl porphyrin (εT - εG at 470 nm = 7.3 × 104 M -1 cm-1) give φT= 0.83 ± 0.04.  相似文献   

17.
Abstract— Flash photolysis experiments on the hydroxylation of lumichrome (L) in aqueous 0.5 M H2SO4 solution in the presence of O2 or Ni2+ as triplet quenchers and quantum yield measurements confirm the assignment of the photoreactive species to the protonated form of the excited singlet state. A mechamism concerning the photochemical step is proposed, accounting for the formation of protonated 9-hydroxy-5,10-dihydrolumichrome (LOH3+). This primary stable photoproduct was characterized by spectral and kinetic data. The dark reactions originating from LOH3+ were investigated, and data regarding the successive steps are presented. The reaction LOH3+ L→ LO + LH3+ is demonstrated to be a two-electron reduction. The rate constant for the reaction of LH2+ with O2 is much larger than that for the oxidation of LH3+ by oxygen.  相似文献   

18.
CROCETIN, A WATER SOLUBLE CAROTENOID MONITOR FOR SINGLET MOLECULAR OXYGEN   总被引:1,自引:0,他引:1  
Abstract The water soluble carotenoid crocetin has been studied as a singlet molecular oxygen monitor in D2O solution, pD 8.4. Crocetin reacts chemically with singlet molecular oxygen with a rate constant of 4 x 108 M -1 s-1. The rate constant for total quenching, chemical and physical, is 2.5 x 109 M -1 s-1. Crocetin shows evidence for a reversible reaction with singlet molecular oxygen, as demonstrated by a fairly rapid absorption recovery after bleaching.  相似文献   

19.
Abstract— Energy transfer from chlorophyll A in its lowest triplet state to carotenoid pigments is demonstrated by rapid flash photolysis experiments.
Two systems are used; the first consists of chlorophyll A and p carotene in organic solvents: in diluted solutions, energy transfer is diffusion controlled. The second consists of chlorophyll A and lutein incorporated into digitonin micelles suspended in water; with this system a very rapid energy transfer is observed (< 0.4 × 10--6 sec).
Energy transfer results in a carotenoid metastable state, which is supposed to be a triplet state; for lutein its half-life is 8·9 × 10--6 sec, and it has an absorption peak at 518 nm. Depopulation of lutein ground state, around 450 nm, can be observed, as well as the reactivity of oxygen towards the metastable state.
Most of these results were obtained with a Q -switch ruby laser as exciting source (6943 Å). A 4350 Å flash can also be obtained by two successive non linear effects. Using this flash for exciting chlorophyll A alone, a strong signal is detected, due to its triplet state. By exciting directly B carotene or lutein, it is not possible to detect any metastable state with our technique.  相似文献   

20.
Abstract— Photooxidation, whether initiated by an endogenous or exogenous sensitizer, is an important mechanism in light induced damage to the lens. One of the substrates for this damage is lens protein. A porphyrin sensitizer which binds to lens proteins [ mesotetra ( p -sulfonatophenyl) porphyrin (TPPS)] was found to photooxidize Skh-2 pigmented mice lens protein in vivo. Uroporphyrin, a model for a non-binding photosensitizer, did not induce photooxidative damage to the mouse lens.
The radioprotector 3-amino-2-hydroxypropyl phosphorothioate (WR-77913) was investigated as an agent to retard or negate in vivo photooxidative damage to the lens. Intraperitoneal injections of WR-77913 prior to irradiation reduced the TPPS induced photodestruction of lens protein in Skh-2 pigmented mice.
The mechanism of protection was also investigated. Thiols were found to quench both the triplet state of porphyrins and the reactive intermediate singlet oxygen on the order of 105 and 106 M -1 s1 respectively. These are probably not fast enough to explain most of the protection afforded by thiols. An additional mechanism may be the accelerated photobleaching of porphyrins by thiols which protects tissue by reducing the absorptions due to the porphyrins.  相似文献   

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