学龄前儿童头皮头发中的蛋白质

Psych Pub Date : 2024-01-29 DOI:10.3390/psych6010009
C. Rovnaghi, Kratika Singhal, Ryan D Leib, M. Xenochristou, N. Aghaeepour, Allis S. Chien, D. Dinakarpandian, Kanwaljeet J. S. Anand
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引用次数: 0

摘要

背景。幼儿时期的经历会对以后的身心健康、教育和就业产生长期影响。对这些影响的测量依赖于不敏感的行为体征、成人观察者的主观评估、神经影像学或神经生理学研究或流行病学的回顾性结果。尽管进行了大量研究,但这些发育和健康状况长期变化的内在机制仍不为人知。研究方法我们使用无偏见的蛋白质组学平台,结合串联质谱法、超高效液相色谱法和碰撞诱导解离法,分析了健康儿童及其母亲的头皮毛发,以揭示常见的光谱计数为 3 或更高的毛发蛋白质。结果。我们在儿童和母亲中分别观察到 1368 种和 1438 种非结构性毛发蛋白质,其中 1288 种蛋白质具有个体差异性。与儿童相比,母亲的肽谱匹配和毛发蛋白质数量更高,母亲和儿童之间存在重要的年龄差异。在儿童中也观察到了与年龄有关的差异,年龄较小(2 岁及以下)的儿童和年龄较大(3-5 岁)的儿童之间的蛋白质表达模式有所不同。与母亲和无血缘关系的孩子相比,我们观察到母亲和其亲生孩子的头发蛋白质模式有更大的相似性。导致群体变异的前 5%蛋白质代表了与大脑发育、免疫信号转导和应激反应调节相关的生物通路。结论在头皮头发中观察到的非结构性蛋白质是研究与幼年经历相关的长期发育变化和健康状况的有前途的生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proteins in Scalp Hair of Preschool Children
Background. Early childhood experiences have long-lasting effects on subsequent mental and physical health, education, and employment. The measurement of these effects relies on insensitive behavioral signs, subjective assessments by adult observers, neuroimaging or neurophysiological studies, or retrospective epidemiologic outcomes. Despite intensive research, the underlying mechanisms of these long-term changes in development and health status remain unknown. Methods. We analyzed scalp hair from healthy children and their mothers using an unbiased proteomics platform combining tandem mass spectrometry, ultra-performance liquid chromatography, and collision-induced dissociation to reveal commonly observed hair proteins with a spectral count of 3 or higher. Results. We observed 1368 non-structural hair proteins in children and 1438 non-structural hair proteins in mothers, with 1288 proteins showing individual variability. Mothers showed higher numbers of peptide spectral matches and hair proteins compared to children, with important age-related differences between mothers and children. Age-related differences were also observed in children, with differential protein expression patterns between younger (2 years and below) and older children (3–5 years). We observed greater similarity in hair protein patterns between mothers and their biological children compared with mothers and unrelated children. The top 5% of proteins driving population variability represented biological pathways associated with brain development, immune signaling, and stress response regulation. Conclusions. Non-structural proteins observed in scalp hair include promising biomarkers to investigate the long-term developmental changes and health status associated with early childhood experiences.
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