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http://dx.doi.org/10.5352/JLS.2011.21.12.1761

Inhibitory Effects of a New Herbal Composition (HemoHIM) on UVB-Induced Suppression of Langerhans Cell's Accessory Cell Function  

Kim, Jong-Jin (Department of Biology, College of Life Science and Natural Resources, Sunchon National University)
Jo, Sung-Kee (Radiation Research Division for Bio-Technology, Advanced Radiation Technology Institute, Jeongeup campus of Korea Atomic Energy Research Institute)
Jung, U-Hee (Radiation Research Division for Bio-Technology, Advanced Radiation Technology Institute, Jeongeup campus of Korea Atomic Energy Research Institute)
Park, Hae-Ran (Radiation Research Division for Bio-Technology, Advanced Radiation Technology Institute, Jeongeup campus of Korea Atomic Energy Research Institute)
Yee, Sung-Tae (Department of Biology, College of Life Science and Natural Resources, Sunchon National University)
Publication Information
Journal of Life Science / v.21, no.12, 2011 , pp. 1761-1771 More about this Journal
Abstract
In the previous results, we developed an effective products to apply as functional foods for overcome of radiation damage and reduction of side effects in radiotherapy. To verify the prevention of UVB-induced immunosuppression of immune cell function by HemoHIM, we studied on the mechanism of the skin immune function for the protection in UVB irradiation. In studies presented here, we showed that HemoHIM can prevent UVB-induced impairment of skin immune cell function by in vitro and in vivo assay. Exposure of freshly cultured murine dendritic cells (DCs) with IL-4/GM-CSF to UVB irradiation resulted in impairment of accessory function. This suppression could be prevented by addition of HemoHIM before or after to the cultures of UVB-irradiated DCs. We also tested the effects of HemoHIM on the suppression of contact hypersensitivity (CHS) treated oral or intraperitoneal administration. This UVB-suppressed CHS was prevented by administration of HemoHIM to UVB-irradiated mice. These results suggest that HemoHIM may prevent UVB-induced immune suppression in the skin.
Keywords
HemoHIM; dendritic cells; contact hypersenstivity (CHS); ultraviolet B; T cells;
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Times Cited By KSCI : 8  (Citation Analysis)
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