天然植物化合物在骨合成代谢中的作用。
Naturally plant-derived compounds: role in bone anabolism.
机构信息
Nestle Research Center, Nutrition and Health, Vers Chez les Blanc, 1000 Lausanne 26, Switzerland.
出版信息
Curr Mol Pharmacol. 2012 Jun;5(2):205-18. doi: 10.2174/1874467211205020205.
From a nutritional point of view, several factors are involved in ensuring optimal bone health. The most documented of these are calcium and vitamin D. However, it is now well acknowledged that some phytochemicals, also known as phytonutrients, which are plant-based compounds that are present in our daily diet, can positively regulate a number of physiological functions in mammalian systems involved in chronic diseases such as osteoporosis. Indeed, emerging data in animal models of postmenopausal osteoporosis has shown that exposure to some of these naturally plant-derived compounds (e.g. flavonoids) positively influences bone metabolism through preserved bone mineral density. In vitro experiments with bone cells have reported cellular and molecular mechanisms of phytonutrients involved in bone metabolism. Indeed, phytonutrients and especially polyphenols can act on both osteoblasts and osteoclasts to modulate bone metabolism, a balance between both cell type activities being required for bone health maintenance. To date, most studies investigating the effects of polyphenols on osteoblast cells have reported involvement of complex networks of anabolic signalling pathways such as BMPs or estrogen receptor mediated pathways. This review will report on the interaction between phytochemicals and bone metabolism in cell or animal models with a particular focus on the molecular mechanisms involved in the bone anabolic response.
从营养角度来看,有几个因素涉及确保最佳的骨骼健康。其中最有文献记载的是钙和维生素 D。然而,现在人们已经充分认识到,一些植物化学物质,也称为植物营养素,它们是存在于我们日常饮食中的植物化合物,可以积极调节哺乳动物系统中涉及骨质疏松症等慢性疾病的许多生理功能。事实上,绝经后骨质疏松症动物模型中的新数据表明,接触其中一些天然植物来源的化合物(如类黄酮)可以通过保持骨矿物质密度来积极影响骨代谢。骨细胞的体外实验报告了植物营养素参与骨代谢的细胞和分子机制。事实上,植物营养素,尤其是多酚类物质,可以作用于成骨细胞和破骨细胞,调节骨代谢,维持骨骼健康需要这两种细胞类型的活动之间达到平衡。迄今为止,大多数研究多酚类物质对成骨细胞影响的研究报告都涉及到 BMP 或雌激素受体介导途径等合成代谢信号通路的复杂网络的参与。本综述将报告细胞或动物模型中植物化学物质与骨代谢之间的相互作用,特别关注骨合成代谢反应中涉及的分子机制。