4.7 Article

Antihyperlipidemic and hepatoprotective effects of Gardenin A in cellular and high fat diet fed rodent models

Journal

CHEMICO-BIOLOGICAL INTERACTIONS
Volume 269, Issue -, Pages 9-17

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.cbi.2017.03.013

Keywords

Gardenia resinifera; Gardenia lucida; Fatty Liver; Adipocyte hypertrophy; FXR alpha

Funding

  1. Loyola College - Times of India Research Grant [7LCTOIERI004]
  2. University Grants Commission, New Delhi
  3. King Saud University through ISPP [0020]
  4. Rajiv Gandhi National Fellowship [F1-17.1/2014-15/RGNF-2014-15-ST-JHA-59310/(SA-111)/25/02/2015]

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The gum of Gardenia resinifera Roth., is one of the important drugs used in the Indian system of medicine and a source of unique polymethoxylated flavones. This study was aimed to evaluate the anti-hyperlipidemic and anti-NAFLD effects of Gardenin A (Gar-A) from G. resinifera gum using in vitro and in vivo models. Gar-A was isolated from G. resinifera gum and was identified on the basis of the physical and spectral data. Toxicity of Gar-A to HepG2 cells was evaluated using MTT assay. The ability of Gar-A to reduce steatosis was assessed using oleate-palmitate induced HepG2 cell lines by estimating the lipid levels by ORO staining and by estimating the intracellular triglyceride content. Effect of Gar-A on amelioration of lipotoxicity was measured by estimating the LDH levels. The doses for in vivo experiments were fixed by Irwin test, between 50 and 100 mg/kg concentrations, through oral route. The acute antihyperlipidemic effect of Gar-A was assessed in Triton WR-1339 induced hyperlipidemic animals. The chronic antihyperlipidemic and anti-NAFLD effects of Gar-A were evaluated in HFD fed rats. In vitro experiments with HepG2 cell line indicated that the cells treated with Gar-A did not show any significant reduction in the viability up to 70 mu g/mL concentration. Steatotic HepG2 cells treated with Gar-A showed a significant reduction in lipid accumulation at 2.5-10 mu g/mL concentrations. In triton induced hyperlipidemic rats, the treatment significantly reduced the lipid levels at the synthesis phase. The treatment with Gar-A to the HFD fed animals significantly lowered the steatosis and transaminase levels. The other biochemical parameters such as TC, TG, LDL-c, ALP and ACP were also decreased significantly. Treatment with Gar-A significantly lowered the hyperlipidemia and fat accumulation in the liver; detailed molecular investigations are necessary to establish the antihyperlipidemic and hepatoprotective potentials of Gar-A. (C) 2017 Elsevier B.V. All rights reserved.

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