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Screening of lipase inhibitors from Scutellaria baicalensis extract using lipase immobilized on magnetic nanoparticles and study on the inhibitory mechanism

机译:固定在磁性纳米粒子上的脂肪酶从黄S提取物中脂肪酶抑制剂的筛选及抑制机理的研究

摘要

Scutellaria baicalensis is a traditional Chinese medicinal plant possessing a wide variety of biological activities. In this work, lipase immobilized on magnetic nanoparticles (LMNPs) was used as solid phase extract absorbent for screening of lipase inhibitors from this plant. Three flavonoids were found to bind to LMNPs and were identified as baicalin, wogonin, and oroxylin A by liquid chromatography-mass spectrometry (HPLC-MS). Their IC50 values were determined to be 229.22 +/- 12.67, 153.71 +/- 9.21, and 56.07 +/- 4.90 mu M, respectively. Fluorescence spectroscopy and molecular docking were used to probe the interactions between these flavonoids and lipase. All the flavonoids quenched the fluorescence of lipase statically by forming new complexes, implying their affinities with the enzyme. The thermodynamic analysis suggested that van der Waals force and hydrogen bond were the main forces between wogonin and lipase, while hydrophobic force was the main force for the other two flavonoids. The results from a molecular docking study further revealed that all of them could insert into the pocket of lipase binding to a couple of amino acid residues.
机译:黄cut是具有多种生物活性的传统中草药植物。在这项工作中,固定在磁性纳米颗粒(LMNPs)上的脂肪酶被用作固相提取吸收剂,用于筛选该植物中的脂肪酶抑制剂。发现三种黄酮类化合物与LMNPs结合,并通过液相色谱-质谱法(HPLC-MS)鉴定为黄,苷,沃戈宁和奥昔林A。它们的IC50值分别确定为229.22 +/- 12.67、153.71 +/- 9.21和56.07 +/- 4.90μM.荧光光谱和分子对接被用来探测这些类黄酮和脂肪酶之间的相互作用。所有的类黄酮都通过形成新的复合物来静态淬灭脂肪酶的荧光,这表明它们与酶的亲和力。热力学分析表明,范德华力和氢键是沃戈宁和脂肪酶之间的主要作用力,而疏水力是另外两种类黄酮的主要作用力。分子对接研究的结果进一步表明,它们都可以插入与一对氨基酸残基结合的脂肪酶口袋。

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