• Title/Summary/Keyword: Neolignans

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Dihydrobenzofuran Neolignans Isolated from Euonymus alatus Leaves and Twigs Attenuated Inflammatory Responses in the Activated RAW264.7 Macrophage Cells

  • Kim, Na-Hyun;Yang, Min Hye;Heo, Jeong-Doo;Sung, Sang Hyun;Jeong, Eun Ju
    • Natural Product Sciences
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    • v.22 no.1
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    • pp.53-59
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    • 2016
  • Anti-inflammatory effects of dihydrobenzofuran neolignans isolated from Euonymus alatus leaves and twigs were evaluated in lipopolysaccharide (LPS)-stimulated RAW264.7 macrophage cells. Six neolignans, (+)-simulanol (1), (+)-dehydrodiconiferyl alcohol (2), (-)-simulanol (3), (-)-dehydrodiconiferyl alcohol (4), (+)-dihydrodehyrodiconiferyl alcohol (5), threo-buddlenol B (6) effectively inhibited the production of nitric oxide (NO) induced by LPS, and the activity of iNOS. (-)-dehydrodiconiferyl alcohol (4), which showed the most potent inhibitory activity, attenuated the activity of iNOS enzyme and also the expression of iNOS and COX-2 proteins. The subsequent production of pro-inflammatory cytokines, interleukin-$1{\beta}$, interleukin-6, tumor necrosis factor-${\alpha}$ and prostaglandin E2 were also inhibited by the pretreatment of RAW264.7 cells with (-)-dehydrodiconiferyl alcohol (4). These neolignans are thought to contribute to anti-inflammatory effects of E. alatus, and expected to be potential candidates to prevent/treat inflammation-related diseases.

A Short Review on the Chemistry, Pharmacological Properties and Patents of Obovatol and Obovatal (Neolignans) from Magnolia obovata

  • Chan, Eric Wei Chiang;Wong, Siu Kuin;Chan, Hung Tuck
    • Natural Product Sciences
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    • v.27 no.3
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    • pp.141-150
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    • 2021
  • This short review on the chemistry, pharmacological properties and patents of obovatol and obovatal from Magnolia obovata is the first publication. Pharmacological properties are focused on anti-cancer, anti-inflammatory, anti-platelet and neuroprotective activities. Obovatol and obovatal were first isolated from the leaves of M. obovata. Also reported in the bark and fruits of M. obovata, obovatol and obovatal are neolignans i.e., biphenolic compounds bearing a C-O coupling. Other classes of compounds isolated and identified from M. obovata include sesquiterpene-neolignans, dineolignans, trineolignan, lignans, dilignans, phenylpropanoids, phenylethanoid glycosides, flavonoids, phenolic acids, alkaloids, sesquiterpenes, ketone and sterols. The anti-cancer properties of obovatol and obovatal involve apoptosis, inhibition of the growth, migration and invasion of cancer cell lines. However, obovatol displays cytotoxicity against cancer cells but not obovatal. Similarly, anti-inflammatory, anti-platelet, neuroprotective, anxiolytic and other pharmacological activities were only observed in obovatol. The disparity in pharmacological properties of obovatol and obovatal may be attributed to the -CHO group present in obovatal but absent in obovatol. From 2007 to 2013, eight patents were published on obovatol with one mentioning obovatal. They were all published at the U.S. Patent and Trademark Office by scientists of the Korea Research Institute of Bioscience and Biotechnology (KRIBB) as inventors and assignee, respectively. Some future research and prospects are suggested.

Enzymatic Formation of Guaiacylglycerol 8-O-4'-(Coniferyl Alcohol) Ether from Coniferyl Alcohol with Enzyme Preparations of Eucommia ulmoides

  • Alam, Md. Shameul;Katayama, Takeshi;Suzuki, Toshisada;Sultana, Deeder;Sultana, Saima;Hossain, Md. Daud
    • Journal of Crop Science and Biotechnology
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    • v.11 no.1
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    • pp.45-50
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    • 2008
  • Lignans and neolignans are optically active plant secondary metabolites. Research on biosynthesis of lignans has already been advanced especially for the formation of (+) pinoresinol but information on the biosynthesis of 8-O-4'- neolignans is still limited. Moreover, the chemical structure(position of substituents on aromatic rings) and stereochemistry of 8-O-4' neolignans is not clear. Katayama and Kado discovered that incubation of cell-free extracts from E. ulmoides with coniferyl alcohol in the presence of hydrogen peroxide gave (+)-erythro- and (-)-threo- guaiacylglycerol 8-O-4'-(coniferyl alcohol) ether (GGCE)(diastereomeric ratio, 3:2) which is the first report on enzymatic formation of optically active -8-O-4' neolignans from an achiral monolignol. In this aspect, enzymatic formation of guaiacyl 8-O-4' neolignan is noteworthy to clarify its stereochemistry from incubation of coniferyl alcohol with enzyme prepared from Eucommia ulmoides. In this experiment, soluble and insoluble enzymes prepared from E. ulmoides were incubated with 30 mM coniferyl alcohol(CA) for 60 min. The enzyme catalyzed GGCE, dehydrodiconiferyl alcohol(DHCA), and pinoresinol identified by reversed phase HPLC. Consequently, diastereomeric compositions of GGCE were determined as erythro and threo isomer. Enantiomeric composition was determined by the chiral column HPLC. Both enzyme preparations enantioselectively formed (-)-erythro, (+)-erythro and (+)-threo, (-)-threo-GGCEs respectively.

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Tyrosinase Inhibitory Activities of Safrole from Myristica fragrans Houtt.

  • Cho, Soo Jeong;Kwon, Hyun Sook
    • Journal of Applied Biological Chemistry
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    • v.58 no.4
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    • pp.295-301
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    • 2015
  • Five phenylpropanoids (1-5), a benzofuran neolignan (6), two 8-O-4'-neolignans (7-8), and five tetrahydrofuran lignans (9-13) were isolated from a methanol extract of Myristica fragrans seeds. The structures of 1-13 were determined by $^1H$- and $^{13}C$-NMR spectroscopic data analyses and a comparison with the literature data. Compound 3 was isolated for the first time from this plant. All the isolated compounds were evaluated for their inhibitory activity against tyrosinase. Among them, safrole (1) showed significant inhibitions against both the monophenolase ($IC_{50}=32.11{\mu}M$) and diphenolase ($IC_{50}=27.32{\mu}M$) activities of tyrosinase. The kinetic analysis shows that safrole (1) is competitive inhibitors for both monophenolase and diphenolase. The apparent inhibition constant ($K_i$) for safrole (1) binding with free enzyme was determined to be 16.05 and $13.66{\mu}M$ for monophenolase and diphenolase, respectively.

Meliasendanins E-J, Nor-neolignan Constituents from Melia toosendan and their Anti-inflammatory Activity

  • Jin Woo Lee
    • Natural Product Sciences
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    • v.29 no.1
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    • pp.17-23
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    • 2023
  • A phytochemical investigation of the fruits extract of Melia toosendan afforded the isolation of two new nor-neolignans, meliasendanins E (1) and F (2), as well as twelve known compounds (3 - 14) using various separation technique such as Diaion HP20, silica, RP-18 gel column chromatography and semi-preparative HPLC. Their chemical structures were elucidated by extensive NMR spectroscopic data including 2D-NMR, and HR-ESI-MS as well as ECD data. Among the twelve known compounds, the absolute structures of 3 - 6 were determined first, and given the trivial names as meliasendanins G-J (3 - 6). Based on the evaluation of anti-inflammatory activity, compounds 7 - 8 exhibited inhibitory effects on LPS-induced nitric oxide production in RAW 264.7 macrophages with IC50 values of 34.6 and 39.5 µM, respectively.

Diallyl Biphenyl-Type Neolignans Have a Pharmacophore of PPARα/γ Dual Modulators

  • Han, Yujia;Liu, Jingjing;Ahn, Sungjin;An, Seungchan;Ko, Hyejin;Shin, Jeayoung C.;Jin, Sun Hee;Ki, Min Won;Lee, So Hun;Lee, Kang Hyuk;Shin, Song Seok;Choi, Won Jun;Noh, Minsoo
    • Biomolecules & Therapeutics
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    • v.28 no.5
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    • pp.397-404
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    • 2020
  • Adiponectin secretion-promoting compounds have therapeutic potentials in human metabolic diseases. Diallyl biphenyl-type neolignan compounds, magnolol, honokiol, and 4-O-methylhonokiol, from a Magnolia officinalis extract were screened as adiponectin-secretion promoting compounds in the adipogenic differentiation model of human bone marrow mesenchymal stem cells (hBM-MSCs). In a target identification study, magnolol, honokiol, and 4-O-methylhonokiol were elucidated as PPARα and PPARγ dual modulators. Diallyl biphenyl-type neolignans affected the transcription of lipid metabolism-associated genes in a different way compared to those of specific PPAR ligands. The diallyl biphenyl-type neolignan structure provides a novel pharmacophore of PPARα/γ dual modulators, which may have unique therapeutic potentials in diverse metabolic diseases.

Cytotoxicity of Neolignans from Magnolia obovata Fruits

  • Seo, Kyeong-Hwa;Lee, Dae-Young;Jeong, Rak-Hun;Yoo, Ki-Hyun;Chung, In-Sik;Kim, Geum-Soog;Seo, Woo-Duck;Kang, Hee-Cheol;Ahn, Eun-Mi;Baek, Nam-In
    • Journal of Applied Biological Chemistry
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    • v.56 no.3
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    • pp.179-181
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    • 2013
  • Repeated $SiO_2$ and octadecyl silica gel (ODS) column chromatographies of the EtOAc fraction from Magnolia obovata fruits, 10 neolignans, named magnolol (1), honokiol (2), isoobovatol (3), isomagnolol (4), obovatol (5), obovatal (6), 9-methoxyobovatol (7), magnobovatol (8), obovaaldehyde (9), and 2-hydroxyobovaaldehyde (10) were isolated and identified. All isolated compounds were evaluated for in vitro cytotoxicity against seven human cancer cell lines.

Inhibition of Phospholipase $C{\Upsilon}1$ and Cancer Cell Proliferation by Lignans and Flavans from Machilus thunbergii

  • Lee, Ji-Suk;Kim, Jin-Woong;Yu, Young-Uck;Kim , Young-Choong
    • Archives of Pharmacal Research
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    • v.27 no.10
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    • pp.1043-1047
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    • 2004
  • Thirteen compounds were isolated from the $CH_2Cl_2$ fraction of Machilus thunbergii as phospholipase $C{\Upsilon}1\;(PLC{\Upsilon}1)$ inhibitors. These compounds were identified as nine lignans, two neolignans, and two flavans by spectroscopic analysis. Of these, 5,7-di-O-methyl-3',4'-methylenated (-)-epicatechin (12) and 5,7,3'-tri-O-methyl (-)-epicatechin (13) have not been reported previously in this plant. In addition, seven compounds, machilin A (1), (-)-sesamin (3), machilin G (5), (+)-galbacin (9), licarin A (10), (-)-acuminatin (11) and compound 12 showed dose-dependent potent inhibitory activities against $PLC{\Upsilon}1$ in vitro with $IC_{50}$ values ranging from 8.8 to 26.0 ${\mu}M$. These lignans, neolignans, and flavans are presented as a new class of $PLC{\Upsilon}1$ inhibitors. The brief study of the structure activity relationship of these compounds suggested that the benzene ring with the methylene dioxy group is responsible for the expression of inhibitory activities against $PLC{\Upsilon}1$. Moreover, it is suggested that inhibition of $PLC{\Upsilon}1$ may be an important mechanism for an antiproliferative effect on the human cancer cells. Therefore, these inhibitors may be utilized as cancer chemotherapeutic and chemopreventive agents.

Inhibitory Principles from Magnolia officinalis on Tumor Necrosis $Factor-{\alpha}$ Production in Lipopolysaccharide-Activated RAW264.7 cells

  • Cho, Jae-Youl;Park, Ji-Soo;Chae, Sook-Hee;Lee, June-Goo;Yoo, Eun-Sook;Baik, Kyong-Up;Lee, Jong-Soo;Park, Myung-Hwan
    • Natural Product Sciences
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    • v.5 no.2
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    • pp.70-74
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    • 1999
  • In the course of a search for tumor necrosis factor $(TNF)-{\alpha}$ inhibitory compounds from medicinal plants, we identified neolignans, honokiol and magnolol, from the alcoholic extract of Magnolia offcinalis as active inhibitory principles. These compounds dose-dependently inhibited $TNF-{\alpha}$ production without displaying cytotoxicity and their inhibitory activities measured by $IC_{50}$ values were 53.7 and $61.4\;{\mu}M$, respectively.

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