Department of Biomedical Engineering, University of Cincinnati, Cincinnati, Ohio, USA.
J Invest Dermatol. 2011 Feb;131(2):320-8. doi: 10.1038/jid.2010.309. Epub 2010 Oct 14.
The hair follicle has a unique dynamic property to cyclically regenerate throughout life. Despite significant progress in hair structure and hair shape determination using animal models, the mechanisms controlling the architecture and the shape of the human hair remain largely unexplored. In this study, comparison of the genetic expression of several human genes, especially those involved in growth, development, and differentiation, between Caucasian curly hair and naturally straight hair was performed. Thereafter, analyses using human recombinant and lentiviral vector technologies were conducted to further dissect and elucidate a molecular mechanism that regulates hair growth and development, particularly in controlling the shape of the hair shaft. Overexpression of IGF-binding protein 5 (IGFBP-5) in the human hair xenografts obtained from straight- and curly-haired individuals was found to result in the decreased expression of several extracellular matrix proteins and disassembly of adhesional junctions, resulting in twisted hair shafts as well as an unusual deposition of hair cuticle that may be derived from the disturbance of normal proliferation and differentiation. This study provides evidence that IGFBP-5 has an effect on human hair shape, and that lentiviral transduction regimen can be used for functional analysis of genes involved in human hair morphogenesis.
毛囊具有独特的动态特性,可以在整个生命周期中周期性地再生。尽管使用动物模型在毛发结构和毛发形状的确定方面取得了重大进展,但控制人类毛发结构和形状的机制在很大程度上仍未得到探索。在这项研究中,比较了几种人类基因的遗传表达,特别是那些涉及生长、发育和分化的基因,在白种人卷发和自然直发之间的表达情况。此后,使用人重组和慢病毒载体技术进行了分析,以进一步剖析和阐明调节毛发生长和发育的分子机制,特别是在控制毛发轴形状方面。发现 IGFBP-5 在来自直发和卷发个体的人毛发异种移植物中的过度表达导致几种细胞外基质蛋白的表达减少和黏附连接的解体,导致扭曲的毛发轴以及异常的毛发角质层沉积,这可能是由于正常增殖和分化的干扰所致。这项研究提供了证据表明 IGFBP-5 对人类头发形状有影响,并且慢病毒转导方案可用于参与人类毛发形态发生的基因的功能分析。