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Stabilization of retinol through incorporation into liposomes.

Chemical and photochemical processes during storage and preparation rapidly degrade retinol, the most active form of vitamin A. Therefore, the efficacy of incorporation into liposomes in order to modulate the kinetics of retinol degradation was investigated. Retinol was readily incorporated into multilamellar liposomes that were prepared from soybean phosphatidylcholine; the extent of the incorporation was 98.14 +/- 0.93% at pH 9.0 at a ratio of 0.01 : 1 (wt : wt) retinol : phospholipid. It was only marginally lower at higher retinol concentrations. The pH of the hydration buffer had a small effect. The incorporation efficiency ranged from 99.25 +/- 0.47% at pH 3 to 97.45 +/- 1.13% at pH 11. The time course of the retinol degradation in the aqueous solution in liposomes was compared to that of free retinol and free retinol with alpha-tocopherol under a variety of conditions of pH (3, 7, and 11), temperature (4, 25, 37, and 50 degrees ), and light exposure (dark, visible, and UV). The retinol that was incorporated into the liposomes degraded significantly slower than the free retinol or retinol with alpha-tocopherol at pH 7 and 11. At pH 3, where the free retinol degrades rapidly, the degradation kinetics were similar in liposomes and the presence of alpha-tocopherol. At pH 7.0 and 4 degrees in the light, for example, free aqueous retinol was completely degraded within 2 days, while only 20% of the retinol in the liposomes were degraded after 8 days. In general, the protective effect of the liposome incorporation was greater at low temperatures, at neutral and high pH, and in the dark. The results suggest that protection is greater in the solid, gel phase than in the fluid liquid crystalline phase lipids. These results indicate that the incorporation into liposomes can extend the shelf-life of retinol under a variety of conditions of temperature, pH, and ambient light conditions.

Drug Stability↗

Effect of serotonergic antagonism on local responses to an acute and selective endothelial trauma in vivo.

Serotonin is liberated during platelet release reaction. It is concluded from in vitro experiments that serotonin influences both platelet activation and thrombus-induced vasoconstriction. The subject of the present study was to assess the impact of the serotonin2 antagonist naftidrofuryl on both thrombogenesis and thrombus-induced vasoconstriction in vivo. In a hamster cheek pouch, vessels form a rich meshwork, allowing repetitive experiments to obtain intraindividual control measurements. With a contactless photochemical process, endothelial cells can be damaged in vivo. Regularly platelets and the coagulation system are activated and thrombi are formed. In larger arterial vessels local vasoconstriction occurs. Thrombogenesis was induced in arterioles with an inner diameter between 17 and 20 microns. It was monitored by the continuous measurement of blood cell velocity to assess initial hemodynamics and the interval elapsing until perfusion stops. Solvent alone had no effect. Naftidrofuryl was given in clinically relevant dosages of 1, 5, and 20 mg/kg intra-arterially. Even 1 mg/kg showed a significant antithrombotic effect. Efficacy increased in a dose-related manner as well as during the time interval of observation (i.e., 2 h after application). As an established antithrombotic standard, acetylsalicylic acid was applied in dosages of 10 and 100 mg/kg. Both dosages were found to be antithrombotic, but not more effective than comparable dosages of naftidrofuryl. Larger arterioles with an inner diameter of about 50 microns have smooth muscle cells. They constrict during thrombogenesis as a local response to substances released by the thrombus. Topical application of papaverine abolished vasoconstriction. A thromboxane antagonist (EP092) was also effective. Naftidrofuryl reduced the vasoconstriction whereas its solvent was without effect.

Acute Disease↗

[Cuprum sulfate and vitix in the treatment of vitiligo in children].

Incidence rate of vitiligo among children, its adverse effect on psycho-emotional state of children, uncertainty in the etiology and pathogenesis and relative ineffectiveness of existing treatment approaches stimulates attempts to elaborate new methods of management of this disease. It is well known, that melanin is formed from tyrosine by enzyme tyrosinase. Cuprum is a cofactor of this photochemical process. In a number of experiments it was shown that keratinocytes derived from vitiligo lesions produce increased number of superoxide anions (hyperactive oxygen and nitric oxide). In patients with generalized vitiligo misbalance of oxidant and antioxidant systems are observed. Taking into account above-mentioned the aim of this study was the analysis of effectiveness of complex treatment with cuprum sulfate and Vitix in infants with vitiligo. Under medical supervision there were 27 children 7-17 years old with vitiligo (15 boys and 12 girls). Duration of illness varied from 1 month to 11 years, area of lesion - from 1 to 40%. Foci of vitiligo had different shapes and dimensions of depigmentation. Preparation Vitix was applied directly to the lesions and surrounded affected area. Duration of the treatment was 6 months. Restoration of pigmentation was observed by the following patterns: diffuse in 9, follicular in 5 and peripheral in 3 cases. Improvement of clinical condition was observed in 56% of patients. Erythema with mild itching and erythema with peeling were observed as the side effects. Due to the ability to re-establish the free radicals physiological equilibrium in epidermal cells (melanocytes and keratinocytes) vitix shows principally new impact on skin with depigmentation. The effect of this preparation is based on melon's extract rich in antioxidants (catalases and superoxide dismutase).

Adolescent↗

[Effects of UV-radiation on metabolism and structural-functional status of the rat's erythrocyte membranes].

In-vitro analysis of venous blood taken from rats irradiated by 300 and 5,000 J/m2 of UV showed no effect on metabolism and, therefore, energy and recovery systems of erythrocytes. Concentrations of 2,3-diphosphoglycerate and reduced glutathione were increased after irradiation by 5,000 J/m2. UV-irradiation at 10,000 J/m2 decreased adenosine triphosphate and phospholipids in blood and impaired the functional stability of erythrocyte membranes. Recovery of the membrane structure in 24 hrs. after irradiation suggests extended photochemical processes in cells and is consistent with the literary data about indirect effects of plasma proteins on the red cell function.

Adaptation, Physiological↗

[Photoreduction of Se (VI) by marine algae-transitional metals-light system].

Seven marine phytoplankton, including five green algae (Tetraselmis levis, Chlorella autotrophica, Dunaliella salina, Nannochloropsis sp. and Tetraselmis subcordiformis), one diatom (Phaeodactylum tricornutum), one red alga (Porphyridium purpureum), and three usual transitional metals (Fe(III), Cu(II), Mn(II)) were used to make up marine phytoplankton-light or transitional metals-light or marine phytoplankton-transitional metals-light system. In such system, Se(VI) could be transformed into Se(IV) by photoreduction. The species transformation of selenium could be photo-induced by redox reaction of transitional metals. The photochemical activity of marine phytoplankton was confirmed for the first time, because marine phytoplankton could adsorb and concentrated of selenium, transitional metals and organic substances (including the exudation of algae, as reducing agent) which redox potentials were changed. The ratios of Se(VI) to Se(IV) were dominated by the species, the concentration of marine phytoplankton and transitional metals, and it could be enhanced through increasing the concentration of marine algae or the combined effect from marine algae and transitional metals. After photoreduction by ternary system, the ratio of Se(VI) to Se(IV) ranges from 1.17 to 2.85, which is close to the actual value in euphotic layer of seawater. The photochemical process that is induced by marine algae and transitional metals dominative the leading effects on the distribution of oxidation states of selenium.

Chlorophyta↗

[The current concepts of functional role of carotenoids in the eukaryotic chloroplasts].

Current state of knowledge of functional role of carotenoids in algal and higher plant chloroplasts is reviewed. Basic functions of carotenoids are shown to be light-protective, light-absorbing, and structural, as well as participating in photochemical processes of photosystems I and II. Such xanthophylls as neoxanthin, fucoxanthin, peridinin and alloxanthin, which have allenic or acetylenic bond, mostly function as light-absorbers. They transmit absorbed energy to chlorophyll b. Other xanthophylls occupying certain strictly specified loci in light-absorbing chlorophyll-a/b-protein complexes of photosystems have either structural function (lutein) or light-protective function (zeaxanthin, antheraxanthin, violaxanthin). Carotenoids of xanthophyll cycles preserve chlorophylls and lipids of photosynthetic membranes from photodestruction at overlighting in the presence of oxygen. In eukaryotic chloroplasts, three types of xanthophyll cycles were found: violaxanthin, lutein-5,6-epoxide, and diadinoxanthin. The similarities and dissimilarities between epoxidation and de-epoxidation reactions of these cycles are discussed in detail in the present work. The pattern of occurrence of xanthophyll cycles among higher plants and freshwater and marine algae is outlined.

Carotenoids↗

[Characteristics of the development of cataract models against a background of poisoning].

Biomicroscopic studies of lenses of 300 rabbits subjected to the action of various cataractogenic factors have shown that a combined action of cataractogenic factors (3-aminotriazole and light) as well as of cataractogenic and syncataractogenic factors (carbon tetrachloride) possess a much stronger action, that the isolated effect of such factors, as light of high intensity and 3-aminotriazole. It is shown that under combined action of 3-aminotriazole and carbon tetrachloride ripe cataract develops by the 42nd week and under combined action of light, aminotriazole and carbon tetrachloride--by the 30th week. The isolated action of aminotriazole and light doesn't induce ripe cataract. Aminotriazole produces pronounced cataractous changes 50-60 weeks after administration, the light--80 weeks after the action. A conclusion is made that opacification of the lens is a result of complex causes with many factors and is conditioned not only by photochemical processes in the lens itself and disturbances in the processes of detoxification of free radicals in the tissues of the eye as a whole and in the lens, in particular, but also by changes in the antiradical status of the body as a whole.

Amitrole↗

[Interaction between chemical substances contaminating a gaseous medium of hermetically sealed compartments].

We have analyzed pertinent literature data and hypothesized that chemicals in an enclosed environment may interact (products of polymer outgassing, volatile metabolites of man). We have demonstrated that photochemical processes, thermochemical degradation and oxidation of chemicals in an enclosed atmosphere may lead to the formation of new highly toxic substances. The chemical composition of an enclosed atmosphere may be influenced by the technological processes of air purification. We have carried out experiments in a small enclosure to study ammonia and carbon dioxide interaction. When the concentration of ammonia is about 100 mg/m3, that of carbon dioxide is 2.5 vol. % and relative humidity of the atmosphere is 40-50%, the formation reaction of ammonia carbonate compounds proceeds very slowly, producing no significant changes in the environmental toxicological characteristics. It is recommended to continue the study of the interaction of chemicals at low concentrations in an enclosed environment.

Air Pollutants↗

Photodestruction of endogenous porphyrins in relation to cellular inactivation of Propionibacterium acnes.

During growth of Propionibacterium acnes on Eagles medium protoporphyrin was accumulated inside the cells and coproporphyrin, both as a free base as metalcontaining, outside the cells. The photochemical processes in the endogenous porphyrins were studied by fluorescence spectroscopy during continuous irradiation of Propionibacterium acnes in suspension. The irradiation caused initially an increase in the content of protoporphyrin in the cells in comparison to that which had been accumulated during growth. Maximum light induced protoporphyrin production was achieved in 5 days old cultures. In old cultures where there was practically no initial protoporphyrin release, the fluorescence intensities from all the porphyrins present in the culture vanished exponentially with the irradiation time. The metal containing form of fluorescent coproporphyrin, with a maximum emission at 580 nm, was photobleached about ten times faster than the free base forms of coproporphyrin and protoporphyrin. Among these three fluorescent substances in the cell culture only the free base forms of the porphyrins have longer lifetimes than the cells themselves irradiated at the same conditions.

Kinetics↗

Photochemical degradation of barbituric acid derivatives. Part 8: Photolysis of sodium salts of barbiturates in solid state.

After the UV irradiation of suspensions of barbiturate sodium salts in paraffin oil the IR spectra revealed two IR absorption bands at ca. 2170 and 2250 cm-1. The effects of different conditions of the photochemical process and the addition of nucleophilic reagents after irradiation on the intensity of these bands were studied. The origin of 2170 cm-1 band was interpreted in terms of the isocyanate intermediate which is formed after the pyrimidine ring opening.

Barbiturates↗

Solar retinopathy: a review of the literature and case report.

Accounts of solar retinopathy have existed for centuries, but only recently have researchers begun to investigate the mechanisms responsible for producing solar retinal injury. The vast majority of solar retinal injuries occur as a result of viewing a solar eclipse without adequate protection. The extent of structural retinal damage and associated visual impairment is dependent upon the intensity and duration of solar exposure. The exact mechanisms which operate to produce solar retinal compromise are not completely known, but is believed to involve a thermally enhanced photochemical process. Despite the lack of a standardized treatment protocol, most cases of solar retinopathy will improve significantly over time without treatment. Prevention remains the mainstay of therapy. Solar retinopathy must be differentiated from other subtle macular diseases in the absence of a confirmed history of solar exposure.

Adult↗

Retinal damage from long-term exposure to laser radiation.

The maculae of rhesus monkeys were exposed to an argon-ion lazer operated in the TEM00 continuous wave mode at a wavelength of 514.5 nm. Both ophthalmoscopic and histopathologic evaluations of exposure sites were obtained. Threshold (ED50) values were obtained for 0.5, 5, 30, 120, and 1,000 sec. exposure times. Presence of minimum visible lesions was assessed ophthalmoscopically at both 1 hour and 24 hours after exposure. With increasing exposure times, a 24 hr. lesion-appearance criterion resulted in ED50 values too low to be consistent with a thermal damage mechanism. In contrast, exposure to neodymium laser radiation at a 1,060 nm. wavelength for 120 sec. produced only ED50 values consistent with those associated with thermal injury. These results suggest that the damage mechanisms for long-duration exposures to visible light may involve photochemical processes initiated by the interaction of visible light with the retinal photopigments.

Animals↗

[Photochemical transformations of bacteriorhodopsin].

Results of experimental studies of bacteriorhodopsin photochemical transformations of purple membranes at low temperatures are presented. A scheme of reactions of light-adapted bacteriorhodopsin is proposed, some regularities of its phototransformations are considered. Relationships between quantum yields of direct and reverse photoreactions and absorption spectra of the states initiated during phototransformations of the pigment are determined. Proceeding from spectroscopic data the mechanisms of photochemical processes in bacteriorhodopsin are discussed. The author's and literature data point to the participation of retinal structural changes, of alterations in retinal interactions with opsin and of proton in bacteriorhodopsin photoreactions.

Bacteriorhodopsins↗

[Formation and photosensitizing activity of protein tryptophanile photochemical breakdown products in isolated erythrocyte membranes].

Modification of photochemical processes in protein tryptophaniles of isolated erythrocyte membranes by chloroform was shown. It is established that formed in the presence of chloroform photoproducts are able to act as "internal" sensitizers of oxidation of membrane proteins and lipids when illuminated by UV light of ecological range.

Chloroform↗

Possible effect of air pollutants (Mexico City) on superoxide dismutase activity and serum lipoperoxides in the human adult.

The action of air pollutants, through their constituents, (O3, NO2, tobacco smoke) are capable of causing damage due to their lipoperoxidative properties or, indirectly, by inducing production of free radicals. As a consequence of photochemical processes, the ozone levels in the atmosphere of Mexico City are generally higher (mean of 0.325 ppm; period between 1987-1992) and may be harmful to health. Sixty two volunteers (medical doctors), aged 27-32 years, were divided into three groups. Group A was composed of those persons (17) who had never lived in Mexico City; a second group (B) (21) had recently arrived in Mexico City (1-8 days); and a third group (C) (24) who had permanently resided in Mexico City. Serum was obtained from fresh whole blood. Superoxide dismutase (SOD) activity and thiobarbituric acid-reactive materials were higher in group B while chromolipids and the serum inhibitory capacity (for lipoperoxidation) was higher in group C. The acute exposure to pollutants in group B apparently may have induced SOD as an antioxidant defense and was responsible for the increased level of TBA reactive material. In group C, the significant finding is better antioxidative defenses and slightly higher chromolipids.

Adult↗

Mutagenic activity of high-energy 532 nm ultra-short laser pulses.

The mutagenic activity of green (532 nm) and infrared (1064 nm) ultra-short laser light pulses was tested in cultured Syrian hamster fibroblasts by a hypoxanthine phosphoribosyl-transferase (HPRT) mutagenesis assay. In 18 irradiation trials, cells were exposed to eight consecutive 100-ps pulses of either 532 nm or 1064 nm light from a Nd:YAG laser at average irradiances of 3.0 GW/cm2. The 532 nm irradiations produced Hprt mutations at an average observed frequency of 5.3-5.6 x 10(-6), 10-fold higher than control trials (P < 0.01), while 1064 nm irradiations produced only background (spontaneous mutation) frequencies. A HAT (hypoxanthine, aminopterin, thymidine) sensitivity test allowed us to infer that Hprt- clones, selected as 6-thioguanine-resistant clones, possessed mutations at the Hprt locus after 532 nm Nd:YAG laser irradiation. The mutagenic effects of 532 nm high-energy laser pulses and not 1064 nm wavelengths are discussed in light of a two-photon absorption hypothesis. These preliminary findings suggest that 460-590 nm visible-light lasers may be mutagenic to mammalian cells either as a result of two-photon absorption or through some other photochemical process that damages DNA.

Animals↗

Combined photochemical and biological processes for the treatment of linear alkylbenzene sulfonate in water.

In this study, the effects of photochemical pre-treatment (pilot-plant UV/H2O2 process) of linear alkylbenzene sulfonate (LAS) on its subsequent biological treatment were examined. It was observed that the photochemical pre-treatment of the LAS solution did not increase its biodegradability. Moreover, the effects of acclimated microorganisms on the biodegradability of the LAS solution were also studied. It was observed that the acclimated activated sludge increased the biodegradation of the LAS solution. However, due to the presence of some intermediates in the effluent of the photoreactor, the biodegradability of this effluent was less than the biodegradability of the untreated LAS solution with the same concentration of the LAS in the effluent of the photoreactor.

Alkanesulfonic Acids↗

Polymerase chain reaction inhibition assay documenting the amotosalen-based photochemical pathogen inactivation process of platelet concentrates.

BACKGROUND: The INTERCEPT Blood System (Baxter Healthcare Corp.) for platelets (PLTs) uses amotosalen-HCl (S-59) in conjunction with ultraviolet A (UVA) light to inactivate contaminating pathogens by modifying the nucleic acids of pathogens. The success of this photochemical treatment (PCT) process can be documented indirectly with a high-performance liquid chromatography assay measuring the photodegradation of amotosalen and measurement of the UVA light dose delivered by the illumination system. STUDY DESIGN AND METHODS: To develop an assay that documents the success of PCT directly on the effector molecule DNA, the effect of PCT on PLT-derived mitochondrial DNA (mtDNA) was examined. mtDNA-specific polymerase chain reaction (PCR) assays were tested with regard to their susceptibility for PCT, their reliability in terms of PCR performance, and the absence of polymorphic sites in primer hybridization loci. RESULTS: Suitable PCR amplification targets were found in the regions of 16S rDNA, cytochrome c oxidase I, and cytochrome c oxidase III of mitochondria. Amplicon sizes between 868 and 1248 bp gave consistent signals before PCT and complete inhibition of the PCR signal after PCT. Amplicons of less than 300 bp were found to be transparent to PCT. CONCLUSION: Based on PCT-mediated mtDNA modifications in PLTs, a PCR inhibition assay was established with a large amplicon documenting the success of PCT and a small amplicon serving as an internal control.

Adenine↗