Bio-Organic Chemistry Laboratory, Chemical Oceanography Division, CSIR-National Institute of Oceanography, Donapaula, 403004, Goa, India.
Government College of Arts, Science and Commerce, Sankhali, 403505, Goa, India.
Chem Biodivers. 2021 Feb;18(2):e2000956. doi: 10.1002/cbdv.202000956. Epub 2021 Feb 2.
The marine fungus, Aspergillus flavipes (MTCC 5220), was isolated from the pneumatophore of a mangrove plant Acanthus ilicifolius found in Goa, India. The crude extract of A. flavipes was found to show anti-inflammatory activity. It blocked interleukin-6 (IL-6) and tumor necrosis factor-α (TNF-α) production in lipopolysaccharide (LPS)-activated THP-1 cells with IC of 2.69±0.5 μM and 6.64±0.4 μM, respectively. The chemical investigation led to the isolation of optically inactive 4β-[(1E)-propen-1-yl]cyclopentane-1β,2β-diol (1) along with a new optically active diastereoisomeric compound, 4β-[(1E)-propen-1-yl]cyclopentane-1β,2α-diol (2). In addition, the fungus also produced known compounds (+)-terrein (3), butyrolactone I (4) and butyrolactone II (5) in high yields. Among these, (+)-terrein (3) exhibited IL-6 and TNF-α inhibition activity with IC of 8.5±0.68 μM and 15.76±0.18 μM, respectively, while butyrolactone I (4) exhibited IC of 12.03±0.85 μM (IL-6) and 43.29±0.76 μM (TNF-α) inhibition activity with low toxicity to host cells in LPS stimulated THP-1 cells. This is the first report of the isolation and characterization of 4β-[(1E)-propen-1-yl]cyclopentane-1β,2α-diol (2). The structures of all the isolated compounds were elucidated on the basis of extensive detailed NMR spectroscopic data. Anti-inflammatory activity of the fungi A. flavipes is presented here for the first time, which was due to (+)-terrein and butyrolactone I, as the major constituents and they can be further explored in the therapeutic area.
从印度果阿发现的一种红树林植物 Acanthus ilicifolius 的气生根中分离到海洋真菌 Aspergillus flavipes(MTCC 5220)。发现 A. flavipes 的粗提取物具有抗炎活性。它可以阻断脂多糖(LPS)激活的 THP-1 细胞中白细胞介素-6(IL-6)和肿瘤坏死因子-α(TNF-α)的产生,IC 分别为 2.69±0.5 μM 和 6.64±0.4 μM。化学研究导致分离出非对映异构体 4β-[(1E)-丙烯-1-基]环戊烷-1β,2β-二醇(1)以及一种新的光学活性非对映异构体 4β-[(1E)-丙烯-1-基]环戊烷-1β,2α-二醇(2)。此外,该真菌还产生了已知化合物(+)-terrein(3)、丁内酯 I(4)和丁内酯 II(5),产量很高。其中,(+)-terrein(3)对 IL-6 和 TNF-α 的抑制活性 IC 分别为 8.5±0.68 μM 和 15.76±0.18 μM,而丁内酯 I(4)对 LPS 刺激的 THP-1 细胞中的 IL-6 和 TNF-α 的抑制活性 IC 分别为 12.03±0.85 μM 和 43.29±0.76 μM,对宿主细胞的毒性较低。这是首次报道分离和鉴定 4β-[(1E)-丙烯-1-基]环戊烷-1β,2α-二醇(2)。所有分离化合物的结构均根据详细的 NMR 光谱数据进行了阐明。本文首次报道了真菌 Aspergillus flavipes 的抗炎活性,这归因于主要成分(+)-terrein 和丁内酯 I,它们可以在治疗领域进一步探索。