葛根汁和水提物对毛乳头细胞毛发生长相关基因差异影响的研究

Jeonhaili, 조남준, K. Kim, H. Sang
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引用次数: 2

摘要

目的:葛根提取物是影响肝脏抗氧化酶活性的异黄酮的丰富来源。然而,这些提取物对人类真皮乳头(DP)细胞毛发生长的影响尚不清楚。本研究的目的是比较葛根果汁和水提物对真皮乳头(DP)细胞毛发生长相关基因mRNA表达水平的影响。方法:采用ABTS法测定葛根汁和水提取物的抗氧化活性。采用MTS法对DP细胞进行细胞毒性分析。采用定量RT-PCR方法分析真皮乳头(DP)细胞中毛发生长相关基因mRNA的表达水平。结果:葛根汁和水提物具有较强的抗氧化活性。通过对DP细胞的MTS实验,证实了果汁提取物的细胞毒性高于水提取物。水提物处理后,CTNNB1、FGF7和BMP6 mRNA的表达水平显著升高,而汁提物处理后,对毛发生长相关基因的表达没有影响。结论:本研究证明葛根水提物通过促进毛发生长相关基因mRNA的表达水平,具有诱导毛发生长的作用。今后还需进一步研究葛根提取物对真皮乳头细胞各种毛发生长机制的影响。
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Investigation of the differential effect of juice or water extract from Puerariae Radix on hair growth related-genes in dermal papilla cells
Objectives : Puerariae Radix extracts are a rich source of isoflavones that affect the activity of hepatic antioxidant enzymes. However, the effect of these extracts on hair growth in human dermal papilla (DP) cells is unknown. The purpose of this study is to compare the effects between juice and water extracts of Puerariae Radix on the mRNA expression levels of hair growth-related genes in dermal papilla (DP) cells. Methods : The antioxidant activity of juice and water extracts of Puerariae Radix was analyzed using an ABTS assay. The cytotoxicity was analyzed using the MTS assay in DP cells. mRNA expression levels of hair growth-related genes in dermal papilla (DP) cells were analyzed using quantitative RT-PCR analysis. Results : Juice and water extracts of Puerariae Radix showed strong antioxidant activity. The cytotoxicity was confirmed to be higher in the juice extract than the water extract, using the MTS assay on DP cells. The mRNA expression levels of CTNNB1, FGF7, and BMP6 were significantly increased after treatment with water extract, whereas the juice extract did not affect the expression of hair growth-related genes. Conclusions : Our study provides evidence that water extract of Puerariae Radix is effective at inducing hair growth, by promoting the mRNA expression levels of hair growth-related genes. Also in the future, studies should be conducted to investigate the effects of Puerariae radix extracts on the various hair growth mechanisms of dermal papilla cells.
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