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Bee Pollen Extracts Modulate Serum Metabolism in Lipopolysaccharide-Induced Acute Lung Injury Mice with Anti-Inflammatory Effects

机译:蜜蜂花粉提取物调节脂多糖诱导的急性肺损伤小鼠的血清代谢,具有抗炎作用

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Bee pollen (BP) collected from different floras possesses various potential bioactivities, but the mechanism-related research on anti-inflammatory effects is limited. Here, three types of BP originating from Camellia sinensis L. (BP-Cs), Nelumbo nucifera Gaertn. (BP-Nn), and Brassica campestris L. (BP-Bc) were assessed using molecular and metabolomics methods to determine their anti-inflammatory effects. The differences in polyphenolic abundance of three types of BP extracts were determined by HPLC-DAD/QTOF-MS. In vitro anti-inflammatory effects of three BP extracts were evaluated in a lipopolysaccharide (LPS)-induced RAW 264.7 cells model. BP-Cs extract with the most abundant polyphenols was found to be the most effective in reducing inflammation by downregulating inflammatory-related genes expression and blocking the activation of MAPK and NF-kappa B signaling pathways. Polyphenol-rich BP-Cs was further evaluated for their in vivo anti-inflammatory effect in a LPS-induced acute lung injury mouse model. An UPLC-QTOF/MS-based metabolomics approach was applied to analyze metabolite changes in mouse serum. Weshowed that the pretreated BP-Cs extract alleviated inflammation and regulated glycerophospholipid metabolism significantly. Our findings provide a foundation for developing and justifying BP as a potential anti-inflammatory ingredient in functional foods or nutraceutical formulations.
机译:来自不同植物群收集的蜜蜂花粉(BP)具有各种潜在的生物活性,但有关抗炎作用的机制相关研究是有限的。在这里,来自山茶花L.(BP-CS)的三种类型的BP,Nelumbo Nucifera Gaertn。 (BP-NN)和Brassica Campestris L.(BP-BC)使用分子和代谢组学方法评估,以确定其抗炎作用。通过HPLC-DAD / QTOF-MS测定三种类型的BP提取物的多酚丰度的差异。在脂多糖(LPS)中评估三种BP提取物的体外抗炎作用 - 诱导的原料264.7细胞模型。发现具有最丰富的多酚的BP-CS提取物是通过下调炎症相关的基因表达并阻断MAPK和NF-Kappa B信号通路的激活来减少炎症的最有效。进一步评价多酚的BP-CS,用于在LPS诱导的急性肺损伤小鼠模型中进行体内抗炎作用。应用了基于UPLC-QTOF / MS的代谢组种方法,用于分析小鼠血清中的代谢物变化。 WheshowEd预处理的BP-CS提取物显着降低炎症和调节甘油磷脂代谢。我们的调查结果为开发和证明BP作为功能性食品或营养制剂中的潜在抗炎成分进行了奠定基础。

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