• Title/Summary/Keyword: sesquiterpene lactone

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Hemistepsin A inhibits T0901317-induced lipogenesis in the liver

  • Kim, Jae Kwang;Cho, Il Je;Kim, Eun Ok;Lee, Dae Geon;Jung, Dae Hwa;Ki, Sung Hwan;Ku, Sae Kwang;Kim, Sang Chan
    • BMB Reports
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    • v.54 no.2
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    • pp.106-111
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    • 2021
  • Hemistepsin A (HsA) is a guaianolide sesquiterpene lactone that inhibits hepatitis and liver fibrosis. We evaluated the effects of HsA on liver X receptor (LXR)-mediated hepatic lipogenesis in vitro and in vivo. Up to 10 μM, HsA did not affect the viability of HepG2 and Huh7 cells. Pretreatment with 5-10 μM HsA significantly decreased the luciferase activity of the LXR response element, which was transactivated by T0901317, GW 3965, and LXRα/retinoid X receptor α overexpression. In addition, it significantly inhibited the mRNA expression of LXRα in HepG2 and Huh7 cells. It also suppressed the expression of sterol regulatory element-binding protein-1c and lipogenic genes and reduced the triglyceride accumulation triggered by T0901317. Intraperitoneal injection of HsA (5 and 10 mg/kg) in mice significantly alleviated the T0901317-mediated increases in hepatocyte diameter and the percentage of regions in hepatic parenchyma occupied by lipid droplets. Furthermore, HsA significantly attenuated hepatic triglyceride accumulation by restoring the impaired expression of LXRα-dependent lipogenic genes caused by T0901317. Therefore, based on its inhibition of the LXRα-dependent signaling pathway, HsA has prophylactic potential for steatosis.

Screening of Biologically Active Compound from Edible Plant Sources-IX. Isolation and Identification of Sesquiterpene Lactons Isolated from the Root of Ixeris dentata forma albiflora; Inhibition Effects on ACAT, DGAT and FPTase Activity (식용식물자원으로부터 활성물질의 탐색-IX. 흰씀바귀(Ixeris dentata forma albiflora)뿌리에서 Sesquiterpene Lactone 화합물의 분리 및 구조 동정; ACAT, DGAT 및 FPTase 효소 활성의 저해)

  • Bang, Myun-Ho;Jang, Tae-O;Song, Myoung-Chong;Kim, Dong-Hyun;Kwon, Byoung-Mog;Kim, Young-Kuk;Lee, Hyun-Sun;Chung, In-Sik;Kim, Dae-Keun;Kim, Sung-Hoon;Park, Mi-Hyun;Baek, Nam-In
    • Applied Biological Chemistry
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    • v.47 no.2
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    • pp.251-257
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    • 2004
  • The root of lxeris dentata forma albiflora was extracted with 80% aqueous MeOH and solvent fractionated with EtOAc, n-BuOH and water, successively. From the EtOAc and n-BuOH fractions, four sesquiterpene compounds were isolated through the repeated silica gel and ODS column chromatographies. The chemical structures were determined as zaluzanin C (1), $9{\alpha}-hydroxyguaian-4(l5),10(14),11(13)-triene-6,12-olide$ (2), $3{\beta}-O-{\beta}-D-glucopyranosyl-8{\alpha}-hydroxyguaian-4(15),10(14 )-diene-6,12-olide$ (3), and $3{\beta}-O-{\beta}- D-glucopyranosyl-8{\beta}hydroxyguaian-10(14)-ene-6,12-olide$ (4) through the interpretation of several spectral data including 2D-NMR. Some showed the inhibitory effects on DGAT (Diacylglycerol acyltransferase), ($IC_{50}$ values of 1, 2: 0.13, 0.10 mM), the catalyzing enzymes of the intracellular esterification of diacylglycerol and FPTase (Famesyl-protein transferase), ($IC_{50}$ values of 1, 2: 0.15, 0.18 mM), the farnesylation enzyme for Ras protein charge of cancer promotion.

Antibacterial Substances of the Flower of Chrysanthemum zawadskii Herbich var. latilobum Kitamura (구절초 꽃의 항균성 물질)

  • Jang, Dae-Sik;Park, Ki-Hun;Choi, Sang-Uk;Nam, Sang-Hae;Yang, Min-Suk
    • Applied Biological Chemistry
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    • v.40 no.1
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    • pp.85-88
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    • 1997
  • In orther to isolate antibacterial substances from the flower of Chrysanthemum zawadskii Herbich var. latilobum Kitam., the chloroform fraction was fractionated according to the activity against B. subtilis, S. aureus and V. parahaemolyticus. Two antibacterial substances were isolated and purified by preparative TLC and recrystallization. Compound I showed activity against all the tested bacteria and compound II exhibited the activity against B. subtilis and v. parahaemolyticus except S. aureus. Compared to benzoic acid and sorbic acid which are being used as food preservatives, compounds I and II showed about five-fold stronger antibacterial activity against B. subtilis and V. parahaemolyticus. On the basis of spectrometric studies including $^1H-NMR,\;^{13}C-NMR,\;DEPT,\;^1H-^1H\;COSY,\;^{13}C-^1H\;COSY$ and Mass, compounds I and II were identified as angeloylcumambrin B and cumambrin A, respectively. This is the first report of the isolation of angeloylcumambrin B and cumambrin A from this plant.

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