未成熟柑橘提取物能增加人体皮肤成纤维细胞和角质细胞中的透明质酸含量

IF 2 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Tomoko Furukawa, Chisako Yokono, Yoshihiro Nomura
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引用次数: 0

摘要

未成熟柑橘在成熟过程中会变薄。为了将未成熟柑橘用作化妆品功能材料,我们研究了未成熟柑橘中橙皮甙和水苏糖含量的季节性波动变化,以及对人体皮肤细胞的影响。青岛柑橘、大津柑橘和湘南金柑橘的橙皮甙含量在花后一个月左右较高。湘南金的水苏糖含量高于青岛和大津。我们发现,在人类皮肤成纤维细胞和角质细胞中添加未成熟柑橘提取物,透明质酸合成酶的基因表达水平和培养基中的透明质酸含量均高于对照组。这表明未成熟柑橘中的橙皮甙能增强皮肤细胞产生透明质酸的能力。我们的研究结果表明,未成熟柑橘是化妆品和功能性食品的一种特色原料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Immature mandarin orange extract increases the amount of hyaluronic acid in human skin fibroblast and keratinocytes

Immature mandarin orange extract increases the amount of hyaluronic acid in human skin fibroblast and keratinocytes

Immature mandarin orange is thinned in order to maturation of orange. To use immature mandarin orange as a cosmetic functional material, we investigated the seasonal fluctuation changes in hesperidin and narirutin levels of immature mandarin oranges, and the effects on human skin cells. The contents of hesperidin from Aoshima, Otsu, and Shonan gold, is higher at about a month after flowering. Shonan gold has higher content of narirutin to compere that of Aoshima and Otsu. We found the addition of immature mandarin orange extracts to the human skin fibroblasts and keratinocytes, gene expression level of hyaluronic acid synthase and the hyaluronic acid contents in the medium are higher than that of the control. It was suggested that hesperidin in immature mandarin orange enhances the ability of skin cells to produce hyaluronic acid. Our findings indicate that the immature mandarin orange is a characteristic material on cosmetics and functional foods.

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来源期刊
Cytotechnology
Cytotechnology 生物-生物工程与应用微生物
CiteScore
4.10
自引率
0.00%
发文量
49
审稿时长
6-12 weeks
期刊介绍: The scope of the Journal includes: 1. The derivation, genetic modification and characterization of cell lines, genetic and phenotypic regulation, control of cellular metabolism, cell physiology and biochemistry related to cell function, performance and expression of cell products. 2. Cell culture techniques, substrates, environmental requirements and optimization, cloning, hybridization and molecular biology, including genomic and proteomic tools. 3. Cell culture systems, processes, reactors, scale-up, and industrial production. Descriptions of the design or construction of equipment, media or quality control procedures, that are ancillary to cellular research. 4. The application of animal/human cells in research in the field of stem cell research including maintenance of stemness, differentiation, genetics, and senescence, cancer research, research in immunology, as well as applications in tissue engineering and gene therapy. 5. The use of cell cultures as a substrate for bioassays, biomedical applications and in particular as a replacement for animal models.
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