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cis-Aconitic Acid, a Constituent of Echinodorus grandiflorus Leaves, Inhibits Antigen-Induced Arthritis and Gout in Mice

关节炎 药理学 医学 炎症 抗原 脂多糖 痛风 化学 趋化因子 免疫学 内科学
作者
Diego Pinto de Oliveira,Eliana de Faria Garcia,Mariana Assíria de Oliveira,Luíza Castro Menezes Cândido,Fernanda M. Coelho,Vivian Vasconcelos Costa,Nathália Vieira Batista,Celso Martins Queiroz‐Junior,Larissa Froede Brito,Lirlândia P. Sousa,Danielle G. Souza,Flávio A. Amaral,Rodrigo Maia de Pádua,Mauro Martins Teixeira,Fernão Castro Braga
出处
期刊:Planta Medica [Thieme Medical Publishers (Germany)]
卷期号:88 (13): 1123-1131 被引量:13
标识
DOI:10.1055/a-1676-4371
摘要

cis-Aconitic acid is a constituent from the leaves of Echinodorus grandiflorus, a medicinal plant traditionally used in Brazil to treat inflammatory conditions, including arthritic diseases. The present study aimed to investigate the anti-arthritic effect of cis-aconitic acid in murine models of antigen-induced arthritis and monosodium urate-induced gout. The possible underlying mechanisms of action was evaluated in THP-1 macrophages. Oral treatment with cis-aconitic acid (10, 30, and 90 mg/kg) reduced leukocyte accumulation in the joint cavity and C-X-C motif chemokine ligand 1 and IL-1β levels in periarticular tissue. cis-Aconitic acid treatment reduced joint inflammation in tissue sections of antigen-induced arthritis mice and these effects were associated with decreased mechanical hypernociception. Administration of cis-aconitic acid (30 mg/kg p. o.) also reduced leukocyte accumulation in the joint cavity after the injection of monosodium urate crystals. cis-Aconitic acid reduced in vitro the release of TNF-α and phosphorylation of IκBα in lipopolysaccharide-stimulated THP-1 macrophages, suggesting that inhibition of nuclear factor kappa B activation was an underlying mechanism of cis-aconitic acid-induced anti-inflammatory effects. In conclusion, cis-aconitic acid has significant anti-inflammatory effects in antigen-induced arthritis and monosodium urate-induced arthritis in mice, suggesting its potential for the treatment of inflammatory diseases of the joint in humans. Additionally, our findings suggest that this compound may contribute to the anti-inflammatory effect previously reported for E. grandiflorus extracts.
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