Author: Kim, Kangâ€Hoon; Park, Yeâ€Ji; Jang, Hyunâ€Jae; Lee, Seungâ€Jae; Lee, Soyoung; Yun, Bongâ€Sik; Lee, Seung Woong; Rho, Munâ€Chual
Title: Rugosic acid A, derived from Rosa rugosa Thunb., is novel inhibitory agent for NFâ€ÎºB and ILâ€6/STAT3 axis in acute lung injury model Cord-id: blbt8wci Document date: 2020_7_21
ID: blbt8wci
Snippet: Rosa rugosa Thunb., is as a medicinal plant known for antiâ€diabetic, and antiâ€inflammatory activities. However, the specific active compounds responsible for the individual pharmacological effects of in R. rugosa extract (95% EtOH) remain unknown. Here, we hypothesized that terpenoid structure, the most abundant constituents in R. rugosa extract, are responsible for its antiâ€inflammatory activity. We investigated the phytochemical substituents (compounds 1–13) and newly purified 11â€met
Document: Rosa rugosa Thunb., is as a medicinal plant known for antiâ€diabetic, and antiâ€inflammatory activities. However, the specific active compounds responsible for the individual pharmacological effects of in R. rugosa extract (95% EtOH) remain unknown. Here, we hypothesized that terpenoid structure, the most abundant constituents in R. rugosa extract, are responsible for its antiâ€inflammatory activity. We investigated the phytochemical substituents (compounds 1–13) and newly purified 11â€methoxy polisin A, and 13â€methoxy bisaborosaol F using NMR and ESIâ€MS and to screened their effects on NO production in LPSâ€induced macrophages. Rugosic acid A (RA) induced to ameliorate NO production, iNOS, and proâ€inflammatory cytokines associated with the NFâ€ÎºB. And, RA suppressed ILâ€6 secretion and ILâ€6â€mediated STAT3 activation in LPSâ€mediated inflammation. In addition, RA was evaluated in LPSâ€mediated acute lung injury (ALI) model similar to acute pneumonia. Our results suggested that RA was suppressed to translocate nuclear NFâ€ÎºB and ILâ€6â€mediated STAT3 activation. Finally, RA led to amelioration of ALI by decreasing myeloperoxidase (MPO) and inhibiting phosphorylation of NFâ€ÎºB and STAT3. Our group originally found that R. rugosa extract had new methoxy compounds and RA may be alternative natural agent for acute pneumonia similar to severe acute respiratory syndrome by coronavirus.
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