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用于解码面部皮肤中太阳诱导蛋白质组变化的个体内配对质谱数据集。

Intra-Individual Paired Mass Spectrometry Dataset for Decoding Solar-Induced Proteomic Changes in Facial Skin.

作者信息

Camillo-Andrade Amanda C, Santos Marlon D M, Nuevo Patrícia S, Lajas Ana B L, Sales Lucas A, Leyva Alejandro, Fischer Juliana S G, Duran Rosario, Carvalho Paulo C

机构信息

Laboratory for Structural and Computational Proteomics, Carlos Chagas Institute, Curitiba, Paraná, Brazil.

Analytical Biochemistry and Proteomics Unit, Instituto de Investigaciones Biológicas Clemente Estable, Institut Pasteur de Montevideo, Montevideo, Uruguay.

出版信息

Sci Data. 2024 May 3;11(1):441. doi: 10.1038/s41597-024-03231-1.

Abstract

Photoaging is the premature aging of the skin caused by prolonged exposure to solar radiation. The visual alterations manifest as wrinkles, reduced skin elasticity, uneven skin tone, as well as other signs that surpass the expected outcomes of natural aging. Beyond these surface changes, there is a complex interplay of molecular alterations, encompassing shifts in cellular function, DNA damage, and protein composition disruptions. This data descriptor introduces a unique dataset derived from ten individuals, each with a minimum of 18 years of professional experience as a driver, who are asymmetrically and chronically exposed to solar radiation due to their driving orientation. Skin samples were independently collected from each side of the face using a microdermabrasion-like procedure and analyzed on an Exploris 240 mass spectrometer. Our adapted proteomic statistical framework leverages the sample pairing to provide robust insights. This dataset delves into the molecular differences in exposed skin and serves as a foundational resource for interdisciplinary research in photodermatology, targeted skincare treatments, and computational modelling of skin health.

摘要

光老化是由于长期暴露于太阳辐射而导致的皮肤过早老化。其视觉变化表现为皱纹、皮肤弹性降低、肤色不均,以及其他超过自然老化预期结果的迹象。除了这些表面变化外,还存在分子变化的复杂相互作用,包括细胞功能的改变、DNA损伤和蛋白质组成的破坏。本数据描述介绍了一个独特的数据集,该数据集来自十名个体,他们每人都有至少18年的驾驶专业经验,由于驾驶方向的原因,他们不对称且长期暴露于太阳辐射下。使用类似微晶磨皮的程序从面部两侧独立采集皮肤样本,并在Exploris 240质谱仪上进行分析。我们改编的蛋白质组学统计框架利用样本配对提供可靠的见解。该数据集深入研究了暴露皮肤中的分子差异,并作为光皮肤病学跨学科研究、靶向护肤治疗和皮肤健康计算建模的基础资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc40/11068864/e5b961204a57/41597_2024_3231_Fig1_HTML.jpg

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