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植物提取物及纯化合物通过调节信号通路,特别是巨噬细胞中的 PI3K/AKT,发挥抗炎活性。

Anti-Inflammatory Activity of Extracts and Pure Compounds Derived from Plants via Modulation of Signaling Pathways, Especially PI3K/AKT in Macrophages.

机构信息

Department of Computer Science in Economics, University of Lodz, 90-214 Lodz, Poland.

Department of Biology and Pharmaceutical Botany, Medical University of Lodz, 90-151 Lodz, Poland.

出版信息

Int J Mol Sci. 2020 Dec 16;21(24):9605. doi: 10.3390/ijms21249605.

Abstract

The plant kingdom is a source of important therapeutic agents. Therefore, in this review, we focus on natural compounds that exhibit efficient anti-inflammatory activity via modulation signaling transduction pathways in macrophage cells. Both extracts and pure chemicals from different species and parts of plants such as leaves, roots, flowers, barks, rhizomes, and seeds rich in secondary metabolites from various groups such as terpenes or polyphenols were included. Selected extracts and phytochemicals control macrophages biology via modulation signaling molecules including NF-κB, MAPKs, AP-1, STAT1, STAT6, IRF-4, IRF-5, PPARγ, KLF4 and especially PI3K/AKT. Macrophages are important immune effector cells that take part in antigen presentation, phagocytosis, and immunomodulation. The M1 and M2 phenotypes are related to the production of pro- and anti-inflammatory agents, respectively. The successful resolution of inflammation mediated by M2, or failed resolution mediated by M1, may lead to tissue repair or chronic inflammation. Chronic inflammation is strictly related to several disorders. Thus, compounds of plant origin targeting inflammatory response may constitute promising therapeutic strategies.

摘要

植物界是重要治疗剂的来源。因此,在这篇综述中,我们重点关注通过调节巨噬细胞细胞中信号转导通路表现出有效抗炎活性的天然化合物。包括不同物种和植物部分(如叶子、根、花、树皮、根茎和种子)的提取物和纯化学物质,这些植物富含各种组的次生代谢产物,如萜类化合物或多酚类化合物。选定的提取物和植物化学物质通过调节包括 NF-κB、MAPKs、AP-1、STAT1、STAT6、IRF-4、IRF-5、PPARγ、KLF4 在内的信号分子来控制巨噬细胞生物学,特别是 PI3K/AKT。巨噬细胞是参与抗原呈递、吞噬作用和免疫调节的重要免疫效应细胞。M1 和 M2 表型分别与促炎和抗炎剂的产生有关。由 M2 介导的炎症的成功解决,或由 M1 介导的失败解决,可能导致组织修复或慢性炎症。慢性炎症与几种疾病密切相关。因此,靶向炎症反应的植物源性化合物可能构成有前途的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a87/7766727/bae4d9d3111e/ijms-21-09605-g001.jpg

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