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弹性蛋白在自然老化和光老化过程中的变化:溶菌酶的重要作用。

Elastin changes during chronological and photo-ageing: the important role of lysozyme.

作者信息

Seite S, Zucchi H, Septier D, Igondjo-Tchen S, Senni K, Godeau G

机构信息

L'Oréal Recherche, Clichy, France.

出版信息

J Eur Acad Dermatol Venereol. 2006 Sep;20(8):980-7. doi: 10.1111/j.1468-3083.2006.01706.x.

Abstract

Cutaneous ageing, as a result of combined chronological and photo-ageing in sun-exposed areas, is accompanied by major modifications of the elastic fibres. We aimed to investigate qualitative and quantitative changes of dermal elastin fibres during cutaneous chronological and photo-ageing and the involvement of lysozyme in these processes. Morphological, age-related changes and variations in the relative elastin content in sun-protected (buttock) and sun-exposed (forearm and face) skin of healthy volunteers were studied (145 samples). The deposition of lysozyme in elastin fibres was studied using light and immuno-electron microscopy and taking into consideration the relative efficacy of different UV wavebands (UVA or SSR (solar simulated radiation)). Our studies also included the proteolytic degradation of elastin by human leucocyte elastase (HLE) in situ. Our results indicate a reduction of elastin content with age in sun-protected and sun-exposed skin, associated for the latter with high elastin content, resulting in elastosis. Total UVA (320-400 nm), and in particular long wave UVA (UVA-1, 340-400 nm), induces lysozyme deposition in elastin fibres to a higher extent than solar simulated radiation (SSR, 280-400 nm). Immuno-electron microscopy revealed lysozyme association with the electron-dense granular amorphous elastin structures, corresponding to a basophilic degeneration induced by sun exposure. Lysozyme has no elastolytic activity in situ; however, its binding to elastin limits elastin degradation by human leucocyte elastase (HLE). In addition, a direct inhibitory effect of lysozyme on HLE was observed. Our data suggest that lysozyme prevents elastin degradation by HLE after binding to the damaged parts of the elastin network and by direct lysozyme-HLE interaction, which reduces HLE proteolytic activity. These observations contribute to a better understanding of the chronological and photo-induced changes of the dermal elastic network.

摘要

在阳光暴露部位,由于自然老化和光老化共同作用导致的皮肤老化,伴随着弹性纤维的重大改变。我们旨在研究皮肤自然老化和光老化过程中真皮弹性蛋白纤维的定性和定量变化,以及溶菌酶在这些过程中的作用。我们研究了健康志愿者受阳光保护部位(臀部)和阳光暴露部位(前臂和面部)皮肤中与年龄相关的形态学变化以及相对弹性蛋白含量的差异(145个样本)。利用光学显微镜和免疫电子显微镜,考虑不同紫外线波段(UVA或太阳模拟辐射(SSR))的相对效应,研究了溶菌酶在弹性纤维中的沉积情况。我们的研究还包括人白细胞弹性蛋白酶(HLE)在原位对弹性蛋白的蛋白水解降解。我们的结果表明,在受阳光保护和阳光暴露的皮肤中,弹性蛋白含量均随年龄增长而降低,对于后者而言,高弹性蛋白含量会导致弹性组织变性。总的UVA(320 - 400nm),尤其是长波UVA(UVA - 1,340 - 400nm),比太阳模拟辐射(SSR,280 - 400nm)更能诱导溶菌酶在弹性纤维中的沉积。免疫电子显微镜显示溶菌酶与电子致密的颗粒状无定形弹性蛋白结构相关联,这对应于阳光暴露引起的嗜碱性变性。溶菌酶在原位没有弹性溶解活性;然而,它与弹性蛋白的结合限制了人白细胞弹性蛋白酶(HLE)对弹性蛋白的降解。此外,还观察到溶菌酶对HLE有直接抑制作用。我们的数据表明,溶菌酶在与弹性蛋白网络的受损部分结合后,通过溶菌酶与HLE的直接相互作用,防止HLE对弹性蛋白的降解,从而降低HLE的蛋白水解活性。这些观察结果有助于更好地理解真皮弹性网络的自然老化和光诱导变化。

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