4.7 Article

Potentilla rugulosa Nakai Extract Attenuates Bisphenol A-, S- and F-Induced ROS Production and Differentiation of 3T3-L1 Preadipocytes in the Absence of Dexamethasone

Journal

ANTIOXIDANTS
Volume 9, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/antiox9020113

Keywords

endocrine disrupting chemicals; bisphenol A; Lipid metabolism disorders; ROS production; Potentilla rugulosa Nakai

Funding

  1. NRF (National Research Foundation of Korea) - Korean Government [NRF-2018 H1A2A1062634]
  2. National Institute of Biological Resources (NIBR) - Ministry of Environment (MOE) of the Republic of Korea [NIBR201828101]
  3. Brain Pool program - Ministry of Science and ICT through the National Research Foundation of Korea [NRF-2019H1D3A2A01031987]
  4. Kangwon National University
  5. National Research Foundation of Korea [2019H1D3A2A01031987] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Endocrine disrupting chemicals (EDCs) disrupt the physiological metabolism, thus playing an important role in the development of obesity. EDCs, the so-called 'obesogens', might predispose some individuals to gain weight. This study investigated the effects of bisphenol A (BPA) and its alternatives (BPS and BPF) on adipocyte differentiation and the effects of the leaves of Potentilla rugulosa Nakai extract (LPE) as a functional food ingredient on obesogen-induced lipid production and adipogenesis in 3T3-L1 cells. The results showed that LPE has high total phenolic and flavonoid contents (77.58 +/- 0.57 mg gallic acid equivalents (GAE)/g and 57.31 +/- 1.72 mg quercetin equivalents (QE)/g, respectively). In addition, LPE exerted significant antioxidant effects in terms of DPPH radical scavenging activity, reducing power, ferric-ion reducing antioxidant power, and oxygen radical absorbance capacity. BPA, BPS, and BPF increased lipid accumulation, protein expressions of adipogenic transcription factors (PPAR-gamma, C/EBP-alpha, and aP2), and reactive oxygen species (ROS) production in 3T3-L1 cells. However, LPE suppressed the BPA-, BPS-, and BPF-induced effects on adipogenesis. Therefore, LPE has potential as a functional food supplement that can prevent bisphenol-induced lipid metabolism disorders.

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