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从干李中选择多酚类化合物通过 BMP-2 信号增强成骨细胞活性。

Select polyphenolic fractions from dried plum enhance osteoblast activity through BMP-2 signaling.

机构信息

Department of Nutritional Sciences, Oklahoma State University, Stillwater, OK.

Department of Chemistry and Biochemistry, University of Oklahoma, Norman, OK.

出版信息

J Nutr Biochem. 2018 May;55:59-67. doi: 10.1016/j.jnutbio.2017.09.014. Epub 2017 Sep 29.

Abstract

Dried plum supplementation has been shown to enhance bone formation while suppressing bone resorption. Evidence from previous studies has demonstrated that these responses can be attributed in part to the fruit's polyphenolic compounds. The purpose of this study was to identify the most bioactive polyphenolic fractions of dried plum with a focus on their osteogenic activity and to investigate their mechanisms of action under normal and inflammatory conditions. Utilizing chromatographic techniques, six fractions of polyphenolic compounds were prepared from a crude extract of dried plum. Initial screening assays revealed that two fractions (DP-FrA and DP-FrB) had the greatest osteogenic potential. Subsequent experiments using primary bone-marrow-derived osteoblast cultures demonstrated these two fractions enhanced extracellular alkaline phosphatase (ALP), an indicator of osteoblast activity, and mineralized nodule formation under normal conditions. Both fractions enhanced bone morphogenetic protein (BMP) signaling, as indicated by increased Bmp2 and Runx2 gene expression and protein levels of phosphorylated Smad1/5. DP-FrB was most effective at up-regulating Tak1 and Smad1, as well as protein levels of phospho-p38. Under inflammatory conditions, TNF-α suppressed ALP and tended to decrease nodule formation (P=.0674). This response coincided with suppressed gene expression of Bmp2 and the up-regulation of Smad6, an inhibitor of BMP signaling. DP-FrA and DP-FrB partially normalized these responses. Our results show that certain fractions of polyphenolic compounds in dried plum up-regulate osteoblast activity by enhancing BMP signaling, and when this pathway is inhibited by TNF-α, the osteogenic response is attenuated.

摘要

李子干补充剂已被证明可以促进骨形成,同时抑制骨吸收。先前的研究证据表明,这些反应部分归因于水果中的多酚化合物。本研究的目的是鉴定李子干中具有生物活性的多酚类化合物的最有效部分,重点研究它们在正常和炎症条件下的成骨活性及其作用机制。利用色谱技术,从李子干粗提取物中制备了六种多酚化合物的馏分。初步筛选试验表明,两种馏分(DP-FrA 和 DP-FrB)具有最大的成骨潜力。随后使用原代骨髓源性成骨细胞培养物进行的实验表明,这两种馏分在正常条件下增强了细胞外碱性磷酸酶(ALP),这是成骨细胞活性的指标,以及矿化结节的形成。两种馏分均增强了骨形态发生蛋白(BMP)信号,如 Bmp2 和 Runx2 基因表达和磷酸化 Smad1/5 蛋白水平增加所表明的那样。DP-FrB 在上调 Tak1 和 Smad1 以及磷酸化 p38 蛋白水平方面最为有效。在炎症条件下,TNF-α 抑制 ALP 并倾向于减少结节形成(P=.0674)。这一反应与 Bmp2 基因表达的抑制以及 BMP 信号通路抑制剂 Smad6 的上调相吻合。DP-FrA 和 DP-FrB 部分使这些反应正常化。我们的结果表明,李子干中的某些多酚类化合物通过增强 BMP 信号来上调成骨细胞活性,当 TNF-α 抑制该途径时,成骨反应会减弱。

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