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Bifunctional effects of O-methylated flavones from Scutellaria baicalensis Georgi on melanocytes: Inhibition of melanin production and intracellular melanosome transport

机译:黄S的O-甲基化黄酮对黑素细胞的双功能作用:黑色素生成和细胞内黑素体运输的抑制。

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摘要

The growing interest in skin lightening has recently renewed attention on the esthetic applications of Chinese herbal medicine. Although Scutellaria baicalensis Georgi is used for antipyretic and antiinflammatory purposes, its whitening effect remains unclear. This study reports three major findings: (1) S. baicalensis has a potent inhibitory effect on melanogenesis; (2) wogonin and its glycoside are the active components of S. baicalensis; and (3) O-methylated flavones from S. baicalensis, such as wogonin, inhibit intracellular melanosome transport. Using a melanin quantification assay, we showed that S. baicalensis potently inhibits melanogenesis in B16F10 cells. Componential analyses revealed that the main components of S. baicalensis are baicalin, wogonoside, baicalein, wogonin, and oroxylin A. Among these five flavones, wogonin and wogonoside consistently inhibited melanogenesis in both B16F10 melanoma cells and primary melanocytes. Wogonin exhibited the strongest inhibition of melanin production and markedly lightened the color of skin equivalents. We identified microphthalmia-associated transcription factor and tyrosinase-related proteins as potential targets of wogonin- and wogonoside-induced melanogenesis suppression. In culture, we found that the melanosomes in wogonin-treated B16F10 cells were localized to the perinuclear region. Immunoblotting analyses revealed that wogonin significantly reduced in melanophilin protein, which is required for actin-based melanosome transport. Other actin-based melanosome transport-related molecules, i.e., Rab27A and myosin Va, were not affected by wogonin. Cotreatment with MG132 blocked the wogonin-induced decrease in melanophilin, suggesting that wogonin promotes the proteolytic degradation of melanophilin via the calpain/proteasomal pathway. We determined that the structural specificities of the mono-O-methyl group in the flavone A-ring and the aglycone form were responsible for reducing melanosome transport. Furthermore, wogonin and two wogonin analogs, mono-O-methyl flavones, strongly suppressed melanosome transport. Our findings suggest the applicability of S. baicalensis in the esthetic field. Thus, we propose a novel pharmacologic approach for the treatment of hyperpigmentation.
机译:人们对美白皮肤的兴趣日益浓厚,最近引起了人们对中草药美学应用的关注。尽管黄cut(Scutellaria baicalensis Georgi)用于解热和消炎目的,但其增白效果仍不清楚。这项研究报告了三个主要发现:(1)黄ical对黑素生成具有有效的抑制作用; (2)沃戈宁及其糖苷是黄ba的活性成分。 (3)来自黄ical的O-甲基化的黄酮,例如wogonin,抑制细胞内黑素体的运输。使用黑色素定量分析,我们表明黄ba能够有效地抑制B16F10细胞中的黑色素生成。成分分析表明,黄ical的主要成分是黄ical苷,wogonoside,黄ical素,wogonin和oroxylinA。在这五个黄酮中,wogonin和wogonoside始终抑制B16F10黑色素瘤细胞和原代黑色素细胞的黑色素生成。 Wogonin表现出对黑色素生成的最强抑制作用,并显着减轻了皮肤等效物的颜色。我们确定了小眼科相关的转录因子和酪氨酸酶相关的蛋白质作为wogonin和wogonoside诱导的黑色素生成抑制的潜在目标。在文化中,我们发现沃戈宁处理过的B16F10细胞中的黑素体位于核周区域。免疫印迹分析表明,wogonin显着减少了黑色素蛋白的含量,这是基于肌动蛋白的黑素体转运所必需的。其他基于肌动蛋白的黑素体运输相关分子,即Rab27A和肌球蛋白Va,不受wogonin影响。与MG132共同治疗阻止了wogonin诱导的黑色素减少,这表明wogonin通过钙蛋白酶/蛋白酶体途径促进了黑色素的蛋白水解降解。我们确定黄酮A环和糖苷配基形式中的单O-甲基的结构特异性是造成黑素体转运减少的原因。此外,沃戈宁和两个沃戈宁类似物,单-O-甲基黄酮,强烈抑制黑素体转运。我们的发现表明黄ical在美学领域中的适用性。因此,我们提出了一种新的药理学方法来治疗色素沉着过度。

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