Global Medical Research Center Ltd., Seoul, Korea.
Department of Dermatology, Yonsei University College of Medicine, Severance Hospital, Cutaneous Biology Research Institute, Seoul, Korea.
Skin Res Technol. 2021 Sep;27(5):940-947. doi: 10.1111/srt.13046. Epub 2021 Apr 23.
Skin aging can be described as a combination of intrinsic and extrinsic aging. Various parameters for evaluating skin characteristics have been proposed. However, an accurate biomarker for skin aging and the relationship between biomarkers and biomechanical parameters of the skin is yet to be explored.
This study included 20 subjects by age. Skin aging was measured using non-invasive devices. Skin tissues were acquired through punch biopsy for immunohistochemistry and qRT-PCR of skin aging biomarkers, and analyzed correlation both, validated their use.
Biomechanical properties of skin aging decreased with age. Among the biomarkers previously reported, we found that the expression of Moesin, TXNDC5, RhoGDI, and RSU1 decreased, while that of Vimentin and FABP5 increased with age. Pearson correlation showed that the expression levels of TXNDC5, RhoGDI, RSU1, and Vimentin were significantly correlated with the results of non-invasive measurements. In addition, the expression of TXNDC5, RhoGDI, and RSU1 increased, while that of Vimentin decreased, in skin explants upon treatment with one of the anti-aging compounds, retinoic acid.
From this study, we identified practical molecular biomarkers of skin aging, TXNDC5, RhoGDI, RSU1, and Vimentin, which correlated with the skin biomechanical properties of skin aging.
皮肤衰老可描述为内在性和外在性衰老的综合。已经提出了各种评估皮肤特性的参数。然而,皮肤衰老的准确生物标志物以及生物标志物与皮肤生物力学参数之间的关系仍有待探索。
本研究纳入了 20 名按年龄分组的受试者。使用非侵入性设备测量皮肤衰老。通过皮肤活检获取皮肤组织,用于皮肤衰老生物标志物的免疫组化和 qRT-PCR 分析,并分析相关性,验证其用途。
皮肤衰老的生物力学特性随年龄增长而下降。在先前报道的生物标志物中,我们发现 Moesin、TXNDC5、RhoGDI 和 RSU1 的表达随年龄增长而降低,而 Vimentin 和 FABP5 的表达随年龄增长而增加。Pearson 相关性分析显示,TXNDC5、RhoGDI、RSU1 和 Vimentin 的表达水平与非侵入性测量结果显著相关。此外,在皮肤外植体中用一种抗衰老化合物维甲酸处理后,TXNDC5、RhoGDI 和 RSU1 的表达增加,而 Vimentin 的表达减少。
从这项研究中,我们确定了皮肤衰老的实用分子生物标志物 TXNDC5、RhoGDI、RSU1 和 Vimentin,它们与皮肤衰老的皮肤生物力学特性相关。