Influence of Ultraviolet B Exposure on Immune Responses Following Hepatitis B Vaccination in Human Volunteers

Exposure to ultraviolet radiation can modulate immune responses in animal and humans. Remarkably, the ultraviolet-induced immunosuppression is not restricted to the exposed skin but is also found at other body sites, i.e., systemic immunosuppression. Effects of ultraviolet radiation on infections ca...

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Veröffentlicht in:Journal of investigative dermatology 2001-11, Vol.117 (5), p.1144-1150
Hauptverfasser: Sleijffers, Annemarie, Garssen, Johan, de Gruijl, Frank R., Boland, Greet J., van Hattum, Jan, van Vloten, Willem A., van Loveren, Henk
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container_end_page 1150
container_issue 5
container_start_page 1144
container_title Journal of investigative dermatology
container_volume 117
creator Sleijffers, Annemarie
Garssen, Johan
de Gruijl, Frank R.
Boland, Greet J.
van Hattum, Jan
van Vloten, Willem A.
van Loveren, Henk
description Exposure to ultraviolet radiation can modulate immune responses in animal and humans. Remarkably, the ultraviolet-induced immunosuppression is not restricted to the exposed skin but is also found at other body sites, i.e., systemic immunosuppression. Effects of ultraviolet radiation on infections cannot be determined by experimentation on humans, but the effects of ultraviolet on vaccination may serve as a model. Moreover, it is important in its own right to assess whether ultraviolet radiation affects vaccination responses. In this study the effect of ultraviolet B exposure on the development of immune responses after hepatitis B vaccination in human volunteers was investigated. To this end, 191 human volunteers were vaccinated against hepatitis B with the Engerix-B® vaccine. Ninety-seven of them were prior to the first vaccination exposed to ultraviolet B on 5 consecutive days with one personal minimal erythema dose per day. At several time-points before and after the ultraviolet B exposure regimen and the vaccination, blood samples were taken. Parameters for specific as well as nonspecific cellular and humoral immunity were analyzed. It was demonstrated that ultraviolet B exposure prior to hepatitis B vaccination did not alter the cellular (lymphocyte stimulation test) nor the humoral (antibody titers) immune response against hepatitis B surface antigen significantly. In contrast, contact hypersensitivity to diphenylcyclopropenone was significantly suppressed after ultraviolet B exposure, as was natural killer cell activity. These latter results confirm earlier findings and demonstrate immunosuppressive effectiveness of the ultraviolet regimen. In summary, although natural killer cell activity and contact hypersensitivity responses were suppressed, the ultraviolet B radiation protocol did not alter the humoral nor the cellular immune responses against hepatitis B surface antigen after vaccination.
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Remarkably, the ultraviolet-induced immunosuppression is not restricted to the exposed skin but is also found at other body sites, i.e., systemic immunosuppression. Effects of ultraviolet radiation on infections cannot be determined by experimentation on humans, but the effects of ultraviolet on vaccination may serve as a model. Moreover, it is important in its own right to assess whether ultraviolet radiation affects vaccination responses. In this study the effect of ultraviolet B exposure on the development of immune responses after hepatitis B vaccination in human volunteers was investigated. To this end, 191 human volunteers were vaccinated against hepatitis B with the Engerix-B® vaccine. Ninety-seven of them were prior to the first vaccination exposed to ultraviolet B on 5 consecutive days with one personal minimal erythema dose per day. At several time-points before and after the ultraviolet B exposure regimen and the vaccination, blood samples were taken. Parameters for specific as well as nonspecific cellular and humoral immunity were analyzed. It was demonstrated that ultraviolet B exposure prior to hepatitis B vaccination did not alter the cellular (lymphocyte stimulation test) nor the humoral (antibody titers) immune response against hepatitis B surface antigen significantly. In contrast, contact hypersensitivity to diphenylcyclopropenone was significantly suppressed after ultraviolet B exposure, as was natural killer cell activity. These latter results confirm earlier findings and demonstrate immunosuppressive effectiveness of the ultraviolet regimen. 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Parameters for specific as well as nonspecific cellular and humoral immunity were analyzed. It was demonstrated that ultraviolet B exposure prior to hepatitis B vaccination did not alter the cellular (lymphocyte stimulation test) nor the humoral (antibody titers) immune response against hepatitis B surface antigen significantly. In contrast, contact hypersensitivity to diphenylcyclopropenone was significantly suppressed after ultraviolet B exposure, as was natural killer cell activity. These latter results confirm earlier findings and demonstrate immunosuppressive effectiveness of the ultraviolet regimen. In summary, although natural killer cell activity and contact hypersensitivity responses were suppressed, the ultraviolet B radiation protocol did not alter the humoral nor the cellular immune responses against hepatitis B surface antigen after vaccination.</abstract><cop>Danvers, MA</cop><pub>Elsevier Inc</pub><pmid>11710925</pmid><doi>10.1046/j.0022-202x.2001.01542.x</doi><tpages>7</tpages><oa>free_for_read</oa></addata></record>
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subjects Adolescent
Adult
Antibody Formation - radiation effects
Biological and medical sciences
Cohort Studies
Epidemiology. Vaccinations
General aspects
Hepatitis Antibodies - analysis
Hepatitis B - prevention & control
Hepatitis B Surface Antigens - immunology
hepatitis B vaccination
human volunteers
Humans
Immune System - radiation effects
Immunosuppression - methods
Infectious diseases
Killer Cells, Natural - radiation effects
Lymphocyte Activation - radiation effects
Lymphocytes - physiology
Lymphocytes - radiation effects
Medical sciences
Prospective Studies
ultraviolet immunomodulation
Ultraviolet Rays
Vaccination
title Influence of Ultraviolet B Exposure on Immune Responses Following Hepatitis B Vaccination in Human Volunteers
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