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类黄酮通过诱导缺氧诱导因子-1α的积累,诱导培养的胚胎干细胞中转录编码促红细胞生成素的 mRNA。

The flavonoids induce the transcription of mRNA encoding erythropoietin in cultured embryonic stem cells via the accumulation of hypoxia-inducible factor-1α.

机构信息

Division of Life Science and Center for Chinese Medicine, The Hong Kong University of Science and Technology, Hong Kong, China.

Division of Life Science and Center for Chinese Medicine, The Hong Kong University of Science and Technology, Hong Kong, China; Shenzhen Key Laboratory of Edible and Medicinal Bioresources, HKUST Shenzhen Research Institute, Shenzhen, China.

出版信息

Chem Biol Interact. 2023 Sep 1;382:110609. doi: 10.1016/j.cbi.2023.110609. Epub 2023 Jun 20.

Abstract

Flavonoids are the most common phytochemicals in vegetables and herbal products. The beneficial functions of flavonoids in the brain and erythropoietic system have been proposed. Erythropoietin (EPO) is a potent protective agent in the brain; but which has difficulty to cross the blood brain barrier (BBB). Here, about 60 flavonoids were screened for their potential activation on the transcription of EPO mRNA in the neuronal embryonic stem cell lines, NT2/D1 and PC12. Amongst the screened flavonoids, formononetin, calycosin, ononin, chrysin, baicalein and apigenin showed robust up regulation of EPO production via enhancement of hypoxia response element (HRE) activity in cultured embryonic stem cells. In addition, the flavonoids showed activation of HRE activity by having increased accumulation of HIF-1α, but not on level of HIF-1β, in the cultures. The accumulation of HIF-1α was attributed to up regulation of HIF-1α mRNA and blockade of HIF-1α degradation upon treatment of the flavonoids. These results suggested a promising trend of developing commercial products of flavonoids as food supplements tailored for brain health.

摘要

类黄酮是蔬菜和草药产品中最常见的植物化学物质。已经提出了类黄酮在大脑和红细胞生成系统中的有益功能。促红细胞生成素 (EPO) 是大脑中的一种有效保护剂;但它很难穿过血脑屏障 (BBB)。在这里,我们筛选了大约 60 种类黄酮,以研究它们在神经元胚胎干细胞系 NT2/D1 和 PC12 中转录 EPO mRNA 的潜在激活作用。在所筛选的类黄酮中,芒柄花素、毛蕊异黄酮、大豆苷元、白杨素、黄芩素和芹菜素通过增强缺氧反应元件 (HRE) 活性,显著上调 EPO 的产生。此外,这些类黄酮通过增加培养物中 HIF-1α 的积累而不是 HIF-1β 的水平来激活 HRE 活性。HIF-1α 的积累归因于 HIF-1α mRNA 的上调和类黄酮处理后 HIF-1α 降解的阻断。这些结果表明,开发类黄酮作为针对大脑健康的商业食品补充剂具有广阔的前景。

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