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Nitric Oxide Inhibition and Procollagen Type I Peptide Synthesis Activities of a Phenolic Amide Identified from the Stem of Lycium chinense Miller

机译:一氧化氮抑制和酚醛型I肽合成活性从枸杞米勒茎中鉴定的酚类酰胺

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摘要

The bioactivities of boxthron fruits, a source of oriental medicine, are well known, whereas phytochemical studies of the boxthorn stem are rare. In this study, the stem extract of boxthorn (Lycium chinense Miller) and its subfractions were evaluated for their effects on nitric oxide (NO) inhibition and procollagen type I peptide (PIP) synthesis. A phenolic amide isolated from the stem extract was also assayed for these effects. The compound, N-trans-feruloyltyramine, was identified by H-1, C-13, and 2D-nuclear magnetic resonance analyses. In NO inhibition, the chloroform fraction (CF) exhibited the strongest inhibitory activity (MIC50 = 24.69 mu g/ml) among the subfractions of the ethanol extract (EE). N-trans-feruloyltyramine isolated from the CF showed strong NO inhibitory activity, presenting with an MIC50 of 31.36 mu g/ml. The EE, CF, and N-trans-feruloyltyramine shown to have NO inhibition activity were assayed for the activity of PIP synthesis. The EE and CF showed relatively high PIP values of 38.8% and 24.21% at 100 mu g/ml, respectively. The PIP value for 20 mu g/ml N-trans-feruloyltyramine showed a 36% increase compared with the non-treated control, whereas that treated with 20 mu g/ml ascorbic acid as a positive control showed a 13% increase. The results suggest that the proper stem extract of boxthorn stem could be efficiently used to produce good cosmetic effects.
机译:Boxthron水果的生物活动是东方药物的来源,是众所周知的,而Boxtrthorn茎的植物化学研究是罕见的。在该研究中,评估了箱子(枸杞米勒)及其子交换的干提物对一氧化氮(NO)抑制和原胶原I肽(PIP)合成的影响。还测定了从茎提取物中分离的酚类酰胺用于这些效果。通过H-1,C-13和2D核磁共振分析鉴定化合物N-反式 - Forulylyramine。在无抑制中,氯仿级分(CF)在乙醇提取物(EE)的子片中表现出最强的抑制活性(MIC50 =24.69μg/ ml)。从CF中分离的N-反式二氧化酰胺显示出强的无抑制活性,呈现出31.36μg/ ml的MIC50。测定ee,Cf和N-反式二氧化氢氧化胺用于对PIP合成的活性进行测定。 EE和CF分别显示出相对高的PIP值,分别为38.8%和24.21%,为100μg/ ml。与未处理的对照相比,20μg/ ml N-反式二氧化氢萘胺的PIP值显示36%,而用20μg/ ml抗坏血酸处理的抗坏血酸为阳性对照表现为13%。结果表明,Boxthorn Step的适当干提物可以有效地用于产生良好的化妆品效果。

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