{"title":"Six pairs of α-pyrone meroterpenoid dimers from Hypericum monogynum with anti-neuroinflammatory activity","authors":"Jun Jin, Yan-Ling Li, Li-Hua Chen, Feng Zhang, Xin-Yu Zuo, Yan-Rong Zeng, Jue Yang, Xiao-Jiang Hao, Chun-Mao Yuan","doi":"10.1039/d4qo02179g","DOIUrl":null,"url":null,"abstract":"Hypericumonates A–F (<strong>1–6</strong>), six pairs of new α-pyrone meroterpenoid dimers, along with four possible precursors (<strong>7–10</strong>) were isolated from the leaves and twigs of <em>Hypericum monogynum</em>. Hypericumonates A–C, the first α-pyrone meroterpenoid dimers with two motifs (a 6/6/4-6/6 ring system) connected <em>via</em> C-8–C-9, were proposed <em>via</em> [2 + 2] cycloaddition of α-pyrone meroterpenoid. Their structures were determined by spectroscopic analysis, quantum chemical calculations, and single-crystal X-ray diffraction analysis. From biosynthesis analysis, five pairs of new α-pyrone meroterpenoid dimers (<strong>1–5</strong>) are derived from a new isopentenyl-α-pyrone (<strong>7</strong>). Compounds <strong>2</strong> is an unusual homodimer, whereas compounds <strong>1</strong> and <strong>3–6</strong> represent rare heterodimers. Inspired by the traditional anti-inflammatory usages of <em>H. monogynum</em>, all dimers except for <strong>6</strong> were discovered to show good NO inhibitory effect with IC<small><sub>50</sub></small> values of 2.41 ± 0.31 μM to 14.25 ± 1.93 μM, better than the positive control, minocycline (IC<small><sub>50</sub></small>: 19.09 ± 1.34 μM). Further mechanistic study implied that (+)-<strong>1</strong> could prohibit the expression of iNOS and COX-2 in BV-2 cells, and the molecular docking study implied the possible interaction between (+)-<strong>1</strong>/(−)-<strong>1</strong> and these two proteins.","PeriodicalId":97,"journal":{"name":"Organic Chemistry Frontiers","volume":"83 1","pages":""},"PeriodicalIF":4.6000,"publicationDate":"2025-01-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Organic Chemistry Frontiers","FirstCategoryId":"92","ListUrlMain":"https://doi.org/10.1039/d4qo02179g","RegionNum":1,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"CHEMISTRY, ORGANIC","Score":null,"Total":0}
引用次数: 0
Abstract
Hypericumonates A–F (1–6), six pairs of new α-pyrone meroterpenoid dimers, along with four possible precursors (7–10) were isolated from the leaves and twigs of Hypericum monogynum. Hypericumonates A–C, the first α-pyrone meroterpenoid dimers with two motifs (a 6/6/4-6/6 ring system) connected via C-8–C-9, were proposed via [2 + 2] cycloaddition of α-pyrone meroterpenoid. Their structures were determined by spectroscopic analysis, quantum chemical calculations, and single-crystal X-ray diffraction analysis. From biosynthesis analysis, five pairs of new α-pyrone meroterpenoid dimers (1–5) are derived from a new isopentenyl-α-pyrone (7). Compounds 2 is an unusual homodimer, whereas compounds 1 and 3–6 represent rare heterodimers. Inspired by the traditional anti-inflammatory usages of H. monogynum, all dimers except for 6 were discovered to show good NO inhibitory effect with IC50 values of 2.41 ± 0.31 μM to 14.25 ± 1.93 μM, better than the positive control, minocycline (IC50: 19.09 ± 1.34 μM). Further mechanistic study implied that (+)-1 could prohibit the expression of iNOS and COX-2 in BV-2 cells, and the molecular docking study implied the possible interaction between (+)-1/(−)-1 and these two proteins.
期刊介绍:
Organic Chemistry Frontiers is an esteemed journal that publishes high-quality research across the field of organic chemistry. It places a significant emphasis on studies that contribute substantially to the field by introducing new or significantly improved protocols and methodologies. The journal covers a wide array of topics which include, but are not limited to, organic synthesis, the development of synthetic methodologies, catalysis, natural products, functional organic materials, supramolecular and macromolecular chemistry, as well as physical and computational organic chemistry.