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The Efficiency of Deer Antler Herbal Acupuncture on Modulation and Prevention of IL-1 Mediated Activation in Rat Chondrocytes at a Receptor Level
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  • The Efficiency of Deer Antler Herbal Acupuncture on Modulation and Prevention of IL-1 Mediated Activation in Rat Chondrocytes at a Receptor Level
  • The Efficiency of Deer Antler Herbal Acupuncture on Modulation and Prevention of IL-1 Mediated Activation in Rat Chondrocytes at a Receptor Level
저자명
Kim. Woo-Young,Lee. Seung-Deok,Kim. Kyung-Ho,Baek. Seung-Tae,Kim. Kap-Sung
간행물명
大韓鍼灸學會誌= The journal of Korean Acupuncture & Moxibustion Society
권/호정보
2006년|23권 2호|pp.113-123 (11 pages)
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대한침구학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Objectives : Deer antler Herbal-Acupuncture (DHA) solution represents one of the most commonly used medicine to treat rheumatoid arthritis. But, mechanisms of its antiarthritic activities are still poorly understood. Identification of common DHA aqua-acupuncture capable of affording protection or modulating the onset and severity of arthritis may have important human health implications. Results : We determined if DHA could prevent the binding of $IL-1{eta}$ to its cellular receptors. DHA addition to rat chondrocytes treated with $IL-1{eta}$ or with reactive oxygen species(ROS) prevents the activation of proteoglycan synthesis. After treatment with $IL-1{eta}$, DHA increased the expression of mRNA encoding the type II $IL-1{eta}$ receptor. These results emphasize the potential role of two regulating proteins of the $IL-1{eta}$ signaling pathway that could account for the beneficial effect of DHA in osteRArthritis. The present study also identifies a novel mechanism of DHA-mediated anti-inflammatory activity. Conclusion : It is shown that DHA inhibits both $IL-1{eta}-$ and $TNF-{alpha}-induced$ NO production in normal human articular chondrocytes. The observed suppression of IL-1-induced NO production is associated with inhibition of inducible NO synthase(iNOS) mRNA and protein expression. In addition, DHA also suppresses the production of IL-1-induced cyclooxygenase-2 and IL-6. The constitutively expressed cyclooxygenase-1, however, was not affected by the sugar. These results demonstrate that DHA expresses a unique range of activities and identifies a novel mechanism for the inhibition of inflammatory processes.