The Effect of Methanolic Valeriana officinalis Root Extract on Adipocyte Differentiation and Adiponectin Production in 3T3-L1 Adipocytes

被引:0
作者
Kousuke Harada
Yuria Kato
Jun Takahashi
Hiyoko Imamura
Natsume Nakamura
Atsuyoshi Nishina
Nyunt Phay
Miki Tadaishi
Makoto Shimizu
Kazuo Kobayashi-Hattori
机构
[1] Tokyo University of Agriculture,Department of Nutritional Science, Faculty of Applied Bioscience
[2] Nihon University,Department of Materials and Applied Chemistry, College of Science and Technology
[3] Pathein University,Botany Department
来源
Plant Foods for Human Nutrition | 2020年 / 75卷
关键词
Adipocytes; Adipocyte differentiation; Adiponectin; PPARγ; Valerenic acid;
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摘要
Adipose tissue is an endocrine organ and its endocrine function is closely associated with type 2 diabetes mellitus. Valeriana officinalis (Valerian) exerts some physiological effects; however, its influence on adipocytes remains unclear. We investigated the effect of methanolic Valerian root extract (Vale) on 3T3-L1 adipocytes. Vale (1, 10, and 100 μg/mL) dose-dependently promoted adipocyte differentiation with increasing lipid accumulation. In addition, Vale significantly increased the mRNA levels in genes associated with adipocyte differentiation, including peroxisome proliferator-activated receptor γ (PPARγ), CCAAT/enhancer-binding protein α , and adipocyte protein 2, in dose-dependent manner. Vale also significantly enhanced mRNA and protein levels in adiponectin. A PPARγ antagonist assay and a PPARγ binding assay revealed that Vale-induced increased adipocyte differentiation and adiponectin production were partly associated with direct binding to PPARγ. Valerenic acid, a characteristic component in Valerian, also demonstrated the ability to induce adipocyte differentiation and adiponectin secretion, suggesting that it is one of the functional components in Vale.
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页码:103 / 109
页数:6
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  • [1] Beidokhti MN(2017)Review of antidiabetic fruits, vegetables, beverages, oils and spices commonly consumed in the diet J Ethnopharmacol 201 26-41
  • [2] Jäger AK(2013)Biochemistry of adipose tissue: an endocrine organ Arch Med Sci 9 191-200
  • [3] Coelho M(2011)Adiponectin receptor signaling: a new layer to the current model Cell Metab 13 123-124
  • [4] Oliveira T(2005)Adiponectin and adiponectin receptors Endocr Rev 26 439-451
  • [5] Fernandes R(2004)Update on adipocyte hormones: regulation of energy balance and carbohydrate/lipid metabolism Diabetes 53 S143-S151
  • [6] Kadowaki T(2006)Adiponectin-dependent and -independent pathways in insulin-sensitizing and antidiabetic actions of thiazolidinediones Diabetes 55 S32-S38
  • [7] Yamauchi T(2001)Thiazolidinediones and liver toxicity Diabetes Metab 27 305-313
  • [8] Kadowaki T(2010)Pioglitazone: side effect and safety profile Expert Opin Drug Saf 9 347-354
  • [9] Yamauchi T(2013)Honokiol: a non-adipogenic PPARγ agonist from nature Biochim Biophys Acta 1830 4813-4819
  • [10] Havel PJ(2013)Anti-diabetic effect of amorphastilbol through PPARα/γ dual activation in db/db mice Biochem Biophys Res Commun 432 73-79