National Center for Natural Products Research, Research Institute of Pharmaceutical Sciences, University of Mississippi , University, Mississippi 38677, United States.
J Nat Prod. 2014 Mar 28;77(3):509-15. doi: 10.1021/np400780n. Epub 2014 Jan 28.
Six new octulosonic acid derivatives (1-6) were isolated from the flower heads of Roman chamomile (Chamaemelum nobile). Their structures were elucidated by means of spectroscopic interpretation. The biological activity of the isolated compounds was evaluated toward multiple targets related to inflammation and metabolic disorder such as NAG-1, NF-κB, iNOS, ROS, PPARα, PPARγ, and LXR. Similar to the action of NSAIDs, all the six compounds (1-6) increased NAG-1 activity 2-3-fold. They also decreased cellular oxidative stress by inhibiting ROS generation. Compounds 3, 5, and 6 activated PPARγ 1.6-2.1-fold, while PPARα was activated 1.4-fold by compounds 5 and 6 only. None of the compounds showed significant activity against iNOS or NF-κB. This is the first report of biological activity of octulosonic acid derivatives toward multiple pathways related to inflammation and metabolic disorder. The reported anti-inflammatory, hypoglycemic, antiedemic, and antioxidant activities of Roman chamomile could be partly explained as due to the presence of these constituents.
从罗马洋甘菊(Chamaemelum nobile)的头状花序中分离得到了 6 种新的八聚酮酸衍生物(1-6)。通过光谱解析阐明了它们的结构。对分离得到的化合物进行了针对与炎症和代谢紊乱相关的多个靶点的生物活性评价,如 NAG-1、NF-κB、iNOS、ROS、PPARα、PPARγ 和 LXR。与 NSAIDs 的作用相似,所有 6 种化合物(1-6)均使 NAG-1 活性增加 2-3 倍。它们还通过抑制 ROS 的产生来降低细胞氧化应激。化合物 3、5 和 6 使 PPARγ 激活 1.6-2.1 倍,而化合物 5 和 6 仅使 PPARα 激活 1.4 倍。没有一种化合物对 iNOS 或 NF-κB 表现出显著的活性。这是首次报道八聚酮酸衍生物对与炎症和代谢紊乱相关的多个途径具有生物活性。罗马洋甘菊的抗炎、降血糖、抗水肿和抗氧化活性可以部分解释为由于存在这些成分。