首页> 美国卫生研究院文献>Antioxidants >Potentilla rugulosa Nakai Extract Attenuates Bisphenol A- S- and F-Induced ROS Production and Differentiation of 3T3-L1 Preadipocytes in the Absence of Dexamethasone
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Potentilla rugulosa Nakai Extract Attenuates Bisphenol A- S- and F-Induced ROS Production and Differentiation of 3T3-L1 Preadipocytes in the Absence of Dexamethasone

机译:地委陵菜中kai提取物在缺乏地塞米松的情况下减弱双酚AS和F诱导的ROS产生和3T3-L1前脂肪细胞的分化。

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摘要

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 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-γ, C/EBP-α, 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.
机译:内分泌干​​扰化学物质(EDC)破坏生理代谢,因此在肥胖的发展中起重要作用。 EDC,即所谓的“致肥胖物”,可能使某些人容易发胖。这项研究调查了双酚A(BPA)及其替代品(BPS和BPF)对脂肪细胞分化的影响以及作为功能性食品成分的Nakai提取物(LPE)的叶子对3T3中致肥胖物诱导的脂质产生和脂肪形成的影响L1细胞。结果表明,LPE具有较高的总酚和类黄酮含量(分别为77.58±0.57 mg没食子酸当量(GAE)/ g和57.31±1.72 mg槲皮素当量(QE)/ g)。另外,LPE在DPPH自由基清除活性,还原能力,铁离子还原抗氧化剂能力和氧自由基吸收能力方面发挥了显着的抗氧化作用。 BPA,BPS和BPF增加了3T3-L1细胞的脂质积累,成脂转录因子(PPAR-γ,C /EBP-α和aP2)的蛋白质表达以及活性氧(ROS)的产生。但是,LPE抑制了BPA,BPS和BPF诱导的脂肪形成。因此,LPE作为功能性食品补充剂具有潜力,可以预防双酚引起的脂质代谢紊乱。

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