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鉴定人皮肤中的晚期糖基化终产物黄褐素。

Identification of Yellow Advanced Glycation End Products in Human Skin.

机构信息

The Procter & Gamble Company, Mason Business Center, Mason, OH 45040, USA.

出版信息

Int J Mol Sci. 2024 May 21;25(11):5596. doi: 10.3390/ijms25115596.

Abstract

Skin yellowness is a hallmark of dull or unhealthy skin, particularly among Asians. Previous research has indicated a link between skin glycation and skin yellowness. However, the specific glycated chemicals contributing to yellowish skin appearance have not been identified yet. Using HPLC-PDA-HRMS coupled with native and artificially glycated human epidermal explant skin, we identified intensely yellow colored glycated chromophores "(1R, 8aR) and (1S, 8aR)-4-(2-furyl)-7-[(2-furyl)-methylidene]-2-hydroxy-2H,7H,8AH-pyrano-[2,3-B]-pyran-3-one" (abbreviated as AGEY) from human skin samples for the first time. The abundance of AGEY was strongly correlated with skin yellowness in the multiple skin explant tissues. We further confirmed the presence of AGEY in cultured human keratinocytes and 3D reconstructed human epidermal (RHE) models. Additionally, we demonstrated that a combination of four cosmetic compounds with anti-glycation properties can inhibit the formation of AGEY and reduce yellowness in the RHE models. In conclusion, we have identified specific advanced glycation end products with an intense yellow color, namely AGEY, in human skin tissues for the first time. The series of study results highlighted the significant contribution of AGEY to the yellow appearance of the skin. Furthermore, we have identified a potential cosmetic solution to mitigate AGEY formation, leading to a reduction in yellowness in the in vitro RHE models.

摘要

皮肤发黄是暗沉或不健康皮肤的一个特征,尤其是在亚洲人中。先前的研究表明皮肤糖化与皮肤发黄之间存在关联。然而,导致皮肤发黄的特定糖化化学物质尚未被确定。本研究使用 HPLC-PDA-HRMS 结合天然和人工糖化的人表皮外植体皮肤,首次从人皮肤样本中鉴定出强烈黄色糖化生色团“(1R, 8aR) 和 (1S, 8aR)-4-(2-呋喃基)-7-[(2-呋喃基)-亚甲基]-2-羟基-2H,7H,8AH-吡喃并[2,3-B]-吡喃-3-酮”(简称 AGEY)。AGEY 的丰度与人表皮外植体组织中的皮肤发黄程度呈强烈相关。我们进一步在培养的人角质形成细胞和 3D 重建的人表皮(RHE)模型中证实了 AGEY 的存在。此外,我们还证明了四种具有抗糖化特性的化妆品化合物的组合可以抑制 AGEY 的形成,并减少 RHE 模型中的黄色。总之,我们首次在人皮肤组织中鉴定出具有强烈黄色的特定晚期糖基化终产物 AGEY。这一系列研究结果强调了 AGEY 对皮肤发黄外观的重要贡献。此外,我们还确定了一种潜在的化妆品解决方案,可以抑制 AGEY 的形成,从而减少体外 RHE 模型中的黄色。

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