4.6 Article

Impact of Isoorientin on Metabolic Activity and Lipid Accumulation in Differentiated Adipocytes

期刊

MOLECULES
卷 25, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/molecules25081773

关键词

isoorientin; obesity; metabolic activity; lipid accumulation; 3T3-L1 adipocytes

资金

  1. National Research Foundation (NRF) Thuthuka Programme [80618, 113674]
  2. Biomedical Research and Innovation Platform of the South African Medical Research Council (SAMRC)
  3. University of Zululand
  4. SAMRC Research Capacity Development (RCD) program
  5. SAMRC through its division of Research Capacity Development under the Intra-Mural Postdoctoral Fellowship Programme from South African Treasury

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The current study explored the effect of isoorientin on the metabolic activity and lipid accumulation in fully differentiated 3T3-L1 adipocytes. To achieve this, the 3T3-L1 pre-adipocytes were differentiated for eight days and treated with various concentrations of isoorientin (0.1-100 mu M) for four hours. Subsequently, the metabolic activity, lipid accumulation, and mitochondrial respiration were assessed. Furthermore, to unravel the molecular mechanisms that might elucidate the bioactivity of isoorientin, protein expression of the genes involved in insulin signaling and energy expenditure, such as AKT and AMPK, were investigated. The results showed that isoorientin, at different doses, could block lipid storage and enhance glycerol release, with a concomitant improvement of the metabolic activity and mitochondrial function. Although the observed beneficial effects of isoorientin on these cultured 3T3-L1 adipocytes were not consistent at all concentrations, it was clear that doses between 1 and 10 mu M were most effective compared to the untreated control. Moreover, the activity of isoorientin was comparable to tested positive controls of CL-316,2431, isoproterenol, insulin, and metformin. Mechanistically, protein expression of AKT and AMPK, was enhanced with isoorientin exposure, suggesting their partial role in modulating lipid metabolism and mitochondrial biogenesis. Indeed, our results showed that isoorientin has the ability to enhance mitochondrial respiration, as we observed an increase in the ATP and oxygen consumption rate. Therefore, we concluded that isoorientin has a potential to impact mitochondrial activity, lipid metabolism and energy expenditure using an in vitro experimental model of obesity.

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