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Biomedical subjects

M Bergh

Publications and source records attributed to M Bergh.

17 recordsLinked to original sources

Observation of structural anisotropy and the onset of liquidlike motion during the nonthermal melting of InSb.

The melting dynamics of laser excited InSb have been studied with femtosecond x-ray diffraction. These measurements observe the delayed onset of diffusive atomic motion, signaling the appearance of liquidlike dynamics. They also demonstrate that the root-mean-squared displacement in the [111] direction increases faster than in the [110] direction after the first 500 fs. This structural anisotropy indicates that the initially generated fluid differs significantly from the equilibrium liquid.

Journal Article↗

Atomic-scale visualization of inertial dynamics.

The motion of atoms on interatomic potential energy surfaces is fundamental to the dynamics of liquids and solids. An accelerator-based source of femtosecond x-ray pulses allowed us to follow directly atomic displacements on an optically modified energy landscape, leading eventually to the transition from crystalline solid to disordered liquid. We show that, to first order in time, the dynamics are inertial, and we place constraints on the shape and curvature of the transition-state potential energy surface. Our measurements point toward analogies between this nonequilibrium phase transition and the short-time dynamics intrinsic to equilibrium liquids.

Journal Article↗

Clocking femtosecond X rays.

Linear-accelerator-based sources will revolutionize ultrafast x-ray science due to their unprecedented brightness and short pulse duration. However, time-resolved studies at the resolution of the x-ray pulse duration are hampered by the inability to precisely synchronize an external laser to the accelerator. At the Sub-Picosecond Pulse Source at the Stanford Linear-Accelerator Center we solved this problem by measuring the arrival time of each high energy electron bunch with electro-optic sampling. This measurement indirectly determined the arrival time of each x-ray pulse relative to an external pump laser pulse with a time resolution of better than 60 fs rms.

Journal Article↗

Skin irritation from air-oxidized ethoxylated surfactants.

Surfactants are known to be skin irritants, but change in their irritant potential due to change in composition during handling and storage has not previously been investigated. The aim of this study was to investigate the influence of oxidation products on the irritant potential of a non-ionic ethoxylated alcohol, C12E5. Pure and oxidized C12E5 were tested, using 2 different patch test procedures; 1 with a single 24 h exposure and 1 with repeated exposures. 18 healthy volunteers participated in each of these studies. Evaluations were made by visual scoring and by measurement of transepidermal water loss and skin blood flow. In the single exposure study, no significant difference in skin irritation was observed between pure C12E5 and a sample of oxidized C12E5 at the concentrations tested (1, 3, 9 and 27%). After repeated exposures, however, the oxidized C12E5 was significantly more irritant than pure C12E5 at the concentrations 9% and 27% (p<0.05). Non-ionic ethoxylated surfactants are known for their weak skin irritant effect and are, due to this, often included in products with prolonged contact with the skin, i.e., skin care products. An increased irritant potential after oxidation might be of importance due to the conditions of use.

Adult↗

Atmospheric oxidation of poly(oxyethylene) alcohols. Identification of ethoxylated formates as oxidation products and study of their contact allergenic activity.

Ethoxylated alcohols are widely used as surfactants. In the present study we have continued our investigations on the degradation with time upon air exposure of the ethoxylated alcohols at normal storage and handling. As a result, a new group of ethoxylated formates with the general formula C12H25(OCH2CH2)nOCHO (n = 0-4) was identified in C12H25(OCH2CH2)5OH stored and handled at room temperature. To facilitate the identification work, reference compounds were synthesized. The formates showed no allergenic activity in the sensitization studies performed. In previous investigations on the same ethoxylated alcohol, we have identified formaldehyde and ethoxylated aldehydes among the oxidation products formed. Formaldehyde is a common contact allergen, and the ethoxylated aldehydes were shown to have a sensitizing capacity of the same magnitude as formaldehyde. The instability of the ethoxylated alcohols and formation of oxidation products may give an allergenic contribution to hand eczema caused by work with water and surfactants. To investigate the clinical significance in man an appropriate diagnostic patch testing in exposed humans is required.

Allergens↗

Sensitizing potential of acetaldehyde and formaldehyde using a modified cumulative contact enhancement test (CCET).

The contact allergenic activity of acetaldehyde was investigated with a modified cumulative contact enhancement test (CCET) method in guinea pigs. Possible cross-reactivity between acetaldehyde and formaldehyde was also studied. In contrast to the original CCET protocol, we used sham-treated controls and the chemicals were tested with closed epicutaneous application at 1st challenge. The suitability of the method was verified with formaldehyde and the results were comparable with those previously found with the guinea pig maximization test (GPMT). For the 1st time, acetaldehyde was shown to be a contact allergen in predictive tests. No cross-reactivity was observed between acetaldehyde and formaldehyde. Acetaldehyde seems to be a rare sensitizer in man. However, its allergenic activity should be considered, since it might be present as an impurity in ethoxylated surfactants. As the CCET protocol involves topical induction and challenge, we regard the modified version as well suited to evaluation of the contact allergenic potential of chemicals.

Acetaldehyde↗

Contact allergens from surfactants. Atmospheric oxidation of polyoxyethylene alcohols, formation of ethoxylated aldehydes, and their allergenic activity.

Ethoxylated surfactants are susceptible to oxidation upon air exposure. We have previously studied the rate of peroxidation and formaldehyde formation in the chemically well-defined ethoxylated alcohol C12H25(OCH2CH2)5OH. Formaldehyde is a common cause of contact allergy. The aim of the present study was to identify other oxidation products that could be formed upon air exposure of the ethoxylated alcohol and to determine their allergenic activity. It was shown that air oxidation of C12H25(OCH2CH2)5OH gave all the theoretically possible aldehydes of the general formula C12H25(OCH2CH2)nOCH2CHO (n = 0-4) and that the major oxidation product was C12H25(OCH2CH2)4OCH2CHO, dodecyltetraoxyethyleneoxyacetaldehyde. The structure elucidation and synthesis of these aldehydes are here presented for the first time. The major aldehyde was shown to be a contact allergen with the same sensitizing capacity as that of formaldehyde. A dose-response relationship was observed in the sensitization studies. The allergens were formed from the surfactant itself and the skin reactions cannot be explained due to any impurities that may be present in a technical quality of the surfactant. Cases of allergic contact dermatits to ethoxylated surfactants have been reported. To avoid the formation of allergenic oxidation products it is important to control the conditions for storage, handling, and transportation of ethoxylated surfactants.

Alcohols↗

Formation of formaldehyde and peroxides by air oxidation of high purity polyoxyethylene surfactants.

Ethoxylated alcohols are non-ionic surfactants. The majority are used in household cleaners, laundry products, toiletries and in industrial and institutional cleaners. In previous studies, an ethoxylated non-ionic surfactant of technical quality showed allergenic activity in guinea pig experiments. Chemical analysis revealed a content of formaldehyde, a well-known contact allergen, and peroxides in the surfactant. Most cases of occupational contact dermatitis are considered to be of irritant origin, caused by contact with water and surfactants, but if allergenic autoxidation products can be formed, allergic contact dermatitis cannot be excluded. The sensitizing potential of a chemically defined high purity ethoxylated alcohol was investigated and oxidation under various storage and handling conditions was studied for this and a homologous product. The pure surfactant showed no significant allergenic activity on predictive testing in guinea pigs. When ethoxylated alcohols were stored in the refrigerator, their deterioration was limited. At room temperature, their content of peroxides and formaldehyde increased with time. Levels of formaldehyde above those capable of causing positive patch test reactions were found. Since such surfactants have wide applications, resulting exposure to formaldehyde could be more frequent than is generally realized, contributing to persistence of dermatitis in individuals allergic to formaldehyde.

Aerobiosis↗

Contact allergenic activity of Tween 80 before and after air exposure.

Tween 80 is an ethoxylated hydrophilic non-ionic surfactant, which is used for the preparation of oil-in-water emulsions in pharmaceutical products, cosmetics, and industrial detergents. Ethoxylated surfactants are polyethers and are thus easily oxidized by atmospheric oxygen to a variety of hydroperoxides, peroxides and carbonyl compounds. The aim was to investigate the formation of oxidation products and the allergenic potential of Tween 80 before and after air exposure. The formation of peroxides and formaldehyde was followed with chemical analyses during air and pure oxygen exposure of water solutions of Tween 80 of technical quality. A complex mixture of compounds was formed when Tween 80 was oxidized. Formaldehyde was detected in amounts that may be eliciting in allergic individuals. Acetaldehyde was identified in Tween 80 before oxygen exposure, whereafter the amount gradually decreased. The contact allergenic activity was determined in experimental sensitization studies in guinea pigs. Non-oxidized as well as oxidized Tween 80 of technical quality showed allergenic activity. The results indicate that allergens are present in Tween 80 before oxidation and that new allergens are formed in the oxidation process. No obvious dose-response relationship was found in the sensitization studies. The possibility that allergenic compounds can be formed during storage and handling of products containing ethoxylated surfactants should be taken into consideration.

Acetaldehyde↗

Interferon treatment of HEp-2 cells alters the adhesive ability of Pseudomonas aeruginosa.

Previous studies have shown that interferons specifically interact with HEp-2 cells and reduce invasiveness by Salmonella and Shigella. In this study an effect of interferons on the adhesiveness of a strictly extracellular bacterium was demonstrated. HEp-2 cells were treated with human leukocyte interferon, recombinant interferon alpha-A or recombinant interferon gamma and the adhesiveness of Pseudomonas aeruginosa to the cells was examined using a light microscopy method. A recent isolate and a variant of the same strain subcultivated for 12 months were used. Treatment of cells with human leukocyte interferon or recombinant interferon alpha-A reduced the adhesiveness of both variants. When recombinant interferons were used a dose dependent effect was observed, whereas the effect after treatment with human leukocyte interferon was not dose dependent. Adhesiveness of the bacteria to HEp-2 cells was reduced after subcultivation of the bacteria but was reconstituted by adding an extracellular filtrate from the recent isolate. This extracellular filtrate inhibited the effect of human leukocyte interferon on the adhesiveness of bacteria in the cell cultures. The human leukocyte interferon effect on bacterial adhesiveness was neutralized by anti-interferon globulin. Treatment of HEp-2 cells with recombinant human gamma interferon caused an enhanced adhesiveness of the recent isolate, but reduced the adhesiveness of the subcultivated variant strain.

Bacterial Adhesion↗

Interferon-induced protein synthesis inhibits endocytosis of bacteria in epithelial cells.

Previous studies have shown that human leukocyte interferon (IFN), IFN-gamma, and recombinant (r) IFN-alpha-A protect cultured human cells against the invasiveness of salmonellae, shigellae, and enteroinvasive Escherichia coli. To differentiate between effect on endocytosis and adhesiveness, HEp-2 cells were pretreated with cytochalasin B to block endocytosis, and thereafter treated with IFN. Although a significant reduction of adhesion of bacteria to HEp-2 cells was observed, this reduction was far too small to explain the total reduction of bacterial invasiveness. Thus, the anti-invasive effect of IFN on HEp-2 cells is due mostly to inhibition of endocytosis. The IFN effect was not expressed at 4 degrees C, and the ribosomal 60S subunit inactivators, cycloheximide, abrin, and shigella toxin, completely blocked the expression of the IFN-induced anti-invasive state of the cell. Thus, the IFN effect is dependent on continuous ribosomal activity. Our results indicate that the major effect of IFN on bacterial invasiveness is on endocytosis, and that the action is mediated through the effect of IFN-induced protein synthesis.

Bacterial Adhesion↗

The effect of Rauscher and Moloney leukaemia virus on amyloid development in casein-treated CBA mice.

Infection of adult CBA mice with Rauscher or Moloney leukaemia virus concomitantly with caseination significantly accelerated spleen amyloid development in irradiated, bone-marrow protected mice, but had no effect on untreated, adult thymectomized or thymectomized irradiated mice. Spleen tissue of mice infected with Moloney virus had the highest titre in the mice with accelerated amyloid development.

Amyloidosis↗