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Anti-inflammatory Lindenane Sesquiterpene Dimers from the Roots of Chloranthus fortunei.


ABSTRACT: In this study, eight lindenane-type sesquiterpene dimers, including five previously undescribed sesquiterpene dimers (1-5), were isolated from the roots of Chloranthus fortunei, and their structures were elucidated using 1D/2D NMR, HRESIMS, and ECD calculations. Compound 1 presents the second example of a type of novel 8,9-seco lindenane-type sesquiterpene dimer, considered a product of 8/9-diketone oxidation. Compounds 2 and 3 represent the third and fourth examples, respectively, of this kind of C-11 methine dimer. Furthermore, compound 4 was considered as an artifact generated from the radical reaction of a known compound chlojaponilide F (6), which was explained by the density functional theory quantum calculation. All isolates were evaluated for their protective activity against the LPS-induced pulmonary epithelial cell line with compound 7 exhibiting the most potent bioactivity. Further in vitro biological evaluation demonstrated that 7 reduced the production of reactive oxygen species and interleukin-1β, further regulated by the expression of the NLRP3. These results show that compound 7 exhibits therapeutic potential for lung inflammatory diseases.

SUBMITTER: Yin XW 

PROVIDER: S-EPMC11325489 | biostudies-literature | 2024 Aug

REPOSITORIES: biostudies-literature

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Anti-inflammatory Lindenane Sesquiterpene Dimers from the Roots of <i>Chloranthus fortunei</i>.

Yin Xiu-Wen XW   Hu Jun-Jie JJ   Ren Fu-Cai FC   Pu Xiang-Dong XD   Yang Meng-Yu MY   Yang Bing-Yuan BY   Wang Peng P   Shen Chuan-Pu CP  

ACS omega 20240802 32


In this study, eight lindenane-type sesquiterpene dimers, including five previously undescribed sesquiterpene dimers (<b>1</b>-<b>5</b>), were isolated from the roots of <i>Chloranthus fortunei</i>, and their structures were elucidated using 1D/2D NMR, HRESIMS, and ECD calculations. Compound <b>1</b> presents the second example of a type of novel 8,9-<i>seco</i> lindenane-type sesquiterpene dimer, considered a product of 8/9-diketone oxidation. Compounds <b>2</b> and <b>3</b> represent the third  ...[more]

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2022-05-03 | MSV000089360 | MassIVE