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[Preliminary and postradiation effect of long-wave ultraviolet rays on cells of different species of Candida irradiated with short-wave ultraviolet rays].

Certain characteristics of photoprotection induced by near-UV were studied in Candida guilliermondii. Candida tropicalis was also capable of photoprotection from the lethal effect of far-UV. The spectrum of action of photoprotection was recorded. The photoprotective effect was not found in Candida utilis. The postradiation effect of near-UV was studied. The lethal action of far-UV was intensified in C. guilliermondii and C. tropicalis incapable of photoreactivation in contrast to C. utilis capable of photoreactivation.

Candida

Insusceptibility of Cockayne syndrome-derived lymphocytes to plasminogen activator-like protease induction by ultraviolet rays and its abolition by interferon.

Protease induced by ultraviolet rays (UV) has been extensively investigated in human cells. Plasminogen activator-like protease (PA) activity was induced soon after UV irradiation in peripheral lymphocytes derived from healthy donors. In contrast, UV-irradiated lymphocytes derived from Cockayne syndrome (CS) cases did not show marked protease inducibility. Epstein-Barr (EB) virus-transformed CS lymphoblastoid cells were also characterized by insusceptibility to UV-induction of PA. However, when CS-derived cells were treated with a human interferon (HuIFN) preparation prior to irradiation, induction of PA activity was detected, irrespective of the kind of HuIFN (alpha or gamma). The results indicate the possibility of abnormal PA metabolism in CS-derived cells.

Cell Survival

Differences in effects of oncogenes on resistance of gamma rays, ultraviolet light, and heat shock.

The effects of viral or activated cellular oncogenes on sensitivity to gamma rays, ultraviolet light, and heat shock were examined in SHOK (Syrian hamster Osaka-Kanazawa) cells and their transfectants. Resistance to gamma rays was conferred by the introduction of v-mos or c-cot genes, which coded serine/threonine kinase. Cells transfected with v-mos and c-cot genes increased their resistance to ultraviolet light and heat shock compared to their parent cells (SHOK cells). Of the activated ras genes, the N-ras gene developed a SHOK cell phenotype resistant to gamma rays and ultraviolet light. The Ha-ras gene produced SHOK cells resistant to ultraviolet light and heat shock, while introduction of the Ki-ras gene did not affect sensitivity. The v-erbB gene was found to be involved in the development of resistance to heat shock. Transfection with neo, c-myc, and v-fgr genes had little or no effect on cell survival. The karyotypes of SHOK cells and oncogene-containing cells were compared. No alterations were seen after the introduction of a foreign gene. Using cell cycle analysis, we found no apparent difference between SHOK cells and their transfectants. These results suggest that activation of serine/threonine kinase may be involved in common processes occurring after gamma-ray, ultraviolet-light, and heat-shock treatment, and that each oncogene may have a different effect on the development of a resistant phenotype.

Animals

[Experimental study on dose effect relationships between ultraviolet rays and its early impairment].

An experimental study on dose time effect relationships was carried out on mice by using epidermic cell DNA damage, skin immune suppression and histological change as indicators. The results showed that when animal exposed to a daily dose of 0.12 MED of Ultraviolet rays for 12 weeks, no obvious change was found. It suggested that this dose level would be safe. But at 0.5 MED dose level, increase in UDS repair, decrease in number of skin Langerhans cells and the presence of skin-aging occurred, showing that 0.5 MED dosage had a slow damaging effect. With regard to the effect of time, the longer the exposure the stronger the effects, but the early impairment was mainly related to the daily dose, rather than to the total dose.

Animals

[Ultraviolet rays and the skin. Modulation of immune functions].

Ultraviolet radiations (UV) are one of the most common environmental stimuli. In the skin, UVs induce selective biological alterations whose effects include suppression of the normal immune response. This immune suppression may play an important part in the development of skin cancers, infectious diseases, and autoimmune responses. The review presented here focuses on UV-induced biological disorders and on the role of UV-exposed epidermal cells in the mechanisms of immunosuppression.

Adjuvants, Immunologic

[Modification of wound healing with ultraviolet rays. Review of the literature].

This article describes the physical aspects and biological effects of UV radiation. The clinical effects of UV waves on wound healing are discussed separately. Indications for treatment using UV waves are presented, as well as suggestions as to the best way in which treatment can be effected, and the risks which must be considered.

Animals

[Functional and structural changes in the surface of human erythrocytes following irradiation with ultraviolet rays of various wave lengths. V. Modification of the glycocalyx in autotransfusions of UV-irradiated blood].

A study was made of the structural and functional state of the erythrocyte surface components of patients with ischemic heart disease, and of patients with ulcer disease during the treatment with UV-irradiated blood autotransfusions. The cytochemical and isoserological methods employed showed some structural disturbances in the state of erythrocyte, glycocalyx and its modification in the course of treatment. The clinical results of treatment correlated with these changes.

ABO Blood-Group System

[Changes in the total protein and protein fractions in cow's milk irradiated with ultraviolet rays].

Comparative experimental electrophoretic studies were carried out to establish the effect of ultraviolet treatment on cow's milk at various rates of irradiation (5, 10 and 15 min) with a view to raising and regulating the content of the total protein and the protein fractions in milk intended for the feeding of calves. Results showed that there were no substantial changes in the level of the total protein, the albumins having a rising trend that was manifested best at a 15-minute treatment. Most characteristic were the changes taking place in the immunoglobulin fraction which rose by 4.7 per cent. The beta-lactoglobulin fraction dropped by 4.5 per cent, on an average, at all rates of treatment, and the level of alfa-lactoglobulin at 5- and 10-minute irradiation underwent almost no changes, it rising by about 2.09 per cent, on an average, at 15-min treatment. Similar was the trend manifested by the proteoso-pepton fraction showing a rise as early as the first ten minutes of treatment.

Albumins

[Effect of ultraviolet rays on peroxidation and its regulation in the rat liver].

The indirect effect of rat skin ultraviolet (UV) irradiation on lipid peroxidation and enzymatic systems of the liver has been studied. The processes of lipid peroxidation have been intensified after 72 hours of UV-irradiation, which is evidently due both to the activation of enzymatic system of initiation and propagation of lipid peroxidation and to the parallel decrease of the activity of enzymatic system regulation of given process in liver.

Animals