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Anti-inflammatory effects of Rubus coreanus Miquel through inhibition of NF-${kappa}B$ and MAP Kinase
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  • Anti-inflammatory effects of Rubus coreanus Miquel through inhibition of NF-${kappa}B$ and MAP Kinase
  • Anti-inflammatory effects of Rubus coreanus Miquel through inhibition of NF-${kappa}B$ and MAP Kinase
저자명
Lee. Jung Eun,Cho. Soo-Muk,Park. Eunkyo,Lee. Seung Min,Kim. Yuri,Auh. Joong Hyuck,Choi. Hyung-Kyoon,Lim. Sohee,Lee. Sung Chul,Ki
간행물명
Nutrition research and practice
권/호정보
2014년|8권 5호|pp.501-508 (8 pages)
발행정보
한국영양학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

BACKGROUND/OBJECTIVES: Rubus Coreanus Miquel (RCM), used as a traditional Korean medicine, reduces chronic inflammatory diseases such as cancer and rheumatoid arthritis. However, its mechanism has not been elucidated. In this study, we examine the anti-inflammatory effects of RCM and their possible mechanisms using RAW 264.7 cells. MATERIALS/METHODS: Unripe RCM ethanol extract (UE), unripe RCM water extract (UH), ripe RCM ethanol extract (RE), and ripe RCM water extract (RH) were prepared. Inflammatory response was induced with LPS treatment, and expression of pro-inflammatory mediators (iNOS, COX-2, TNF-${alpha}$, IL-$1{eta}$, and IL-6) and NO and $PGE_2$ productions were assessed. To determine the anti-inflammatory mechanism of RCM, we measured NF-${kappa}B$ and MAPK activities. RESULTS: UE and UH treatment significantly reduced NF-${kappa}B$ activation and JNK and p38 phosphorylation and reduced transcriptional activities decreased iNOS, COX-2, and pro-inflammatory cytokines expressions, and NO and $PGE_2$ productions. RE and RH treatments reduced IL-$1{eta}$ and IL-6 expressions through suppressions of JNK and p38 phosphorylation. CONCLUSIONS: In this study, we showed that RCM had anti-inflammatory effects by suppression of pro-inflammatory mediator expressions. Especially, unripe RCM showed strong anti-inflammatory effects through suppression of NF-${kappa}B$ and MAPK activation. These findings suggest that unripe RCM might be used as a potential functional material to reduce chronic inflammatory responses.