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Potentiating effects of laser radiation on some immunological traits.

In vitro laser irradiation of peripheral blood lymphocytes increased the activity of T and B lymphocytes, determined by active rosette-forming cells and by immunofluorescence. Time and dose-dependent of irradiation was studied. The increase of lymphocyte activity was found, both in normal controls and in cancer patients.

Humans↗

[The immune homeostasis of patients with prostatic cancer on hormonal chemotherapy, radiation treatment and immunological action].

The trial covered 58 patients with prostatic cancer aged 50-79. Before treatment these patients exhibited weak proliferative response of T-cells to PHA, increased number of T-suppressors/killers, enhanced suppressive influence of regulatory cells. Hormone chemotherapy produced immunodepressive and immunomodulating effects (normalization of the count of T-suppressors/killers and their function). Subsequent radiotherapy on the prostatic region (total dose 60 Gy) worsened immunodepression. Efficacy of placental suspension and levamisol depends on the treatment stage at which the latter were used: during hormone chemotherapy the addition of the suspension and levamisol corrects its immunodepressive effects, in subsequent radiotherapy immunodeficiency greatly increased.

Adjuvants, Immunologic↗

Immunological responses to ultraviolet light B radiation in Black individuals.

Immunological factors are important participants in the pathogenesis of experimental skin tumors. We therefore studied cutaneous immune responses in subjects with either low natural incidence (Black individuals), or a high frequency rate (White individuals) of skin cancer. We performed whole body irradiation with a low dose of ultraviolet light B (UV-B) and evaluated peripheral lymphocytes. UV-B irradiation was associated with small but significant changes in lymphocyte phenotype frequency. In White subjects this consisted of an increased number of CD19 (B cells) and CD 4/29 (inducer of helper T cells); Black subjects had a slight decrease in CD3 (T cells). Natural killer activity, not affected by UV-B in White subjects, increased significantly in Black subjects. UV-B was devoid of immunological effects in vitro for any of the parameters tested. As expected, the low UV-B dose used in this study induced increases of serum vitamin D3 concentrations in White subjects, with lack of response in the Black subjects. We conclude that Black individuals selectively exhibit an increase in Natural Killer activity in response to irradiation with low dose UV-B. This race group-specific immune response to ultraviolet radiation appears to require mediation by the skin. Enhanced Natural Killer activity could underlie at least partly the resistance in Black individuals to the development of photodependent skin cancer.

Adult↗

Clinical and immunological evaluation of intraoperative radiation therapy for patients with unresectable pancreatic cancer.

The clinical efficacy of intraoperative radiation therapy (IORT) and the changes of immunological parameters were investigated. Nine patients with unresectable pancreatic cancer were treated with IORT (2,500-3,500 cGy) and the changes of various immunological parameters were compared with those in 11 patients with advanced cancer who received external beam irradiation therapy (XRT), 2,500-3,500 cGy. After IORT, 71% of patients obtained pain relief, two of the nine patients showed a partial response, and the serum CA 19-9 level decreased in six patients. However, the median survival was only 210 days. Natural killer activity, lymphokine-activated killer activity, and interferon gamma-activated killer activity were not inhibited by IORT, and phytohemagglutinin-induced blastogenesis was actually augmented after IORT, whereas all these parameters were inhibited by XRT. Thus, it is suggested that IORT may augment or at least stabilize systemic antitumor immunity.

Aged↗

[The cytoimmunological effect of concomitant use of sizofiran (SPG) on advanced uterine cervical cancer treated with radiation].

The immunological effect has been studied of the non-specific immunopotentiator sizofiran (SPG) on patients with advanced uterine cervical cancer treated with radiation. Ten cases (study group: SPG group) were administered weekly 40 mg of SPG throughout the course of radiation and two weekly 40 mg during 12 months after radiotherapy. Nineteen cases (control group) were treated with irradiation alone. The lymphocyte count, the PHA index and the ratio of CD4 cells/CD8 cells were significantly reduced by radiotherapy, being observed the most remarkable decrease at post-radiotherapy. But in SPG group, these decreasing values were significantly smaller than in control group and the values showed a more progressive rise during the 12 month respectively. There was no significant difference in peripheral T lymphocyte; CD3, CD4, CD8. The NK cytotoxic activity showed a progressive rise during the 12 month period following a minimal change after radiotherapy. These results suggest that the SPG have some enhancing effect on the function of the lymphocytes.

Adult↗

Radiation effects on the immunological functions and membranes of alveolar macrophages of rats.

Alveolar macrophages (AM) from BCG activated Wistar rat were irradiated with different doses of Gamma rays in vitro. The effects of radiation on their immunological functions and membrane damage were studied. The non-specific cytotoxicity and specific phagocytosis of AM irradiated with dose of 0, 100, 300 and 500 Gy decreased with the increase in dose. The relative fractions of Lactate Dehydrogenase and Beta-glucuronidase (beta-glu) activity in supernatant increased with the increase in dose. There was a correlation between the suppression of immunological functions and the degree of damage of cytoplasmic and lysosomal membranes of AM after irradiation. Na2SeO3, a protective agent of cell membranes, alleviated this effect on the suppressive cytotoxicity indices of irradiated AM.

Animals↗

[Immunological reactivity in a radiation microclimate].

Bearing in mind the complexity of the radiation factor in industrial conditions the aim of work was to investigate the immunological reactivity in the conditions of glass production. The following methods were used: bactericide properties of skin, quantity of deep microflora of the skin, lysosome activity of the saliva, phagocytic activity of neutrophils in blood, bactericide properties of serum and serum complement. A decrease in the immunological reactivity of the organism was established which was most strongly expressed in relation to the bactericide properties of the skin, lysosome activity of the saliva and the phagocyte activity of the neutrophils in blood.

Adult↗

[The individual prognosis of the gravity and of the outcome of acute radiation disease based on immunological indexes].

The information significance of the immunological indexes for the prognosis of gravity of course and of outcome of an acute radiation disease for the people after the exposure of ionizing radiation in clinically significant doses is studied. The value of indexes of the C-reactive protein contents, of the complement contents and of the titer of haemagglutinins in serum of a blood of 147 patients damaged at Chernobyl NPP accident as a result of external radiation gamma-exposure in combination with internal irradiation from the incorporation in an organism predominantly beta-emitting radionuclides were compared to the weight of acute radiation disease and its outcome (survival or loss). Was determined, that indexes of the contents of C-reactive protein in a peripheral blood during primary reactions on the irradiation (1-2 day after irradiation) and in latent period of disease (3-9 day after irradiation), and also titer of a complement on 3-9 day after irradiation can serve a source of information for the prognosis of probable gravity of a radiation injury and its outcome at irradiation of the man in clinically significant doses.

Acute Disease↗

Immunological consequences of ultraviolet radiation exposure.

Depending on the dose and conditions of administration, ultraviolet radiation (UVR) can function as either a complete carcinogen, a co-carcinogenic agent, or an immunologic modulator. Although much is known about its carcinogenic properties, only recently have investigations been aimed at defining the mechanisms by which UVR mediates its effect on the immune system. The objective of this article is to present the necessary background and results of recent studies that provide the basis for defining some of the local and systemic effects that UVR has on an individual's immunologic potential. This discussion focuses on: the histologic alterations in the skin and draining lymph nodes, the changes in lymphocyte localization, the increased release of the immunologic (and physiologic) mediator ETAF/IL-1, and the induction of antigen-specific immunoregulatory circuits that occur subsequent to UVR exposure. It is our hypothesis that the detrimental effects that UVR has on the host's immunologic competence may represent a normal defense mechanism to protect the individual against the adverse consequences of chronic inflammatory stimuli. In this regard, a better understanding of photoimmunology may lead to the development of more effective means of immunologic modulation for altering the clinical course of various human diseases that are either immunologically mediated, photoinduced, or responsive to phototherapy.

Cell Transformation, Neoplastic↗

An animal model of pulmonary radiation fibrosis with biochemical, physiologic, immunologic, and morphologic observations.

An animal model of pulmonary radiation fibrosis was established, using male CBA/j mice. Both lungs of each mouse in one group (DL) were irradiated with two doses of 8.5 Gy each, separated by 30 days. A control group (CG) was sham-irradiated. There was a small but significant difference (P less than 0.03) in average breathing rate between DL and CG 27 weeks after the second irradiation which increased until the 34th week followed by a plateau. The accumulated hydroxyproline content of the irradiated mouse lung was 40% greater (P less than 0.02) than that of the sham-irradiated lung at 42 weeks and thereafter. Anticollagen antibodies assayed 52 weeks after irradiation by enzyme-linked immunosorbent assay were elevated by 49% in sera from the irradiated mice compared to sera from sham-irradiated mice. Mortality during the 52-week period following the second irradiation was low (13%) for both groups. Histological comparison of irradiated and control mouse lungs fixed under uniform inflation pressure indicated no significant differences. The model has unique features including an increase in collagen deposition, no acute changes attributable to radiation, a small but statistically significant abnormality in pulmonary function, an immunologic response to collagen, and low mortality.

Animals↗