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成纤维细胞与完整胶原蛋白的相互作用减少,这是光损伤皮肤中胶原蛋白合成受抑制的一种机制。

Reduced fibroblast interaction with intact collagen as a mechanism for depressed collagen synthesis in photodamaged skin.

作者信息

Varani James, Schuger Lucia, Dame Michael K, Leonard Christina, Fligiel Suzanne E G, Kang Sewon, Fisher Gary J, Voorhees John J

机构信息

Department of Pathology, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

J Invest Dermatol. 2004 Jun;122(6):1471-9. doi: 10.1111/j.0022-202X.2004.22614.x.

Abstract

This report provides evidence from a number of different approaches (i.e., comparison of cell shape in 1-microm sections of photodamaged versus healthy skin at the light microscopic level; comparison of cell shape and apposition to collagen fibrils in ultrathin sections of the same tissues examined by transmission electron microscopy, and fluorescence staining for adhesion site protein expression and actin filament architecture in frozen tissue sections) that dermal cells in healthy skin are attached to collagen fibrils over a large part of the cell border, have a flattened/spread (two-dimensional) appearance and have abundant actin in their cytoplasm. In contrast, cells in photodamaged skin are often in contact with fragmented collagen or amorphous debris rather than intact collagen, have a collapsed/elongated shape, and have a lower amount of actin. Collagen synthesis is reduced in severely photodamaged skin relative to collagen synthesis in corresponding sun-protected skin (N Engl J Med 329:530, 1993). We hypothesize that fibroblasts in severely damaged skin have less interaction with intact collagen and as a result experience a reduction in mechanical tension. Decreased collagen synthesis is (presumed to be) the result.

摘要

本报告通过多种不同方法提供了证据(即,在光学显微镜水平上比较光损伤皮肤与健康皮肤1微米切片中的细胞形状;通过透射电子显微镜检查相同组织超薄切片中的细胞形状以及细胞与胶原纤维的附着情况,以及对冷冻组织切片中粘附位点蛋白表达和肌动蛋白丝结构进行荧光染色),表明健康皮肤中的真皮细胞在细胞边界的大部分区域与胶原纤维相连,呈扁平/伸展(二维)外观,且细胞质中有丰富的肌动蛋白。相比之下,光损伤皮肤中的细胞常常与破碎的胶原或无定形碎片接触,而非完整的胶原,呈塌陷/拉长形状,且肌动蛋白含量较低。与相应的防晒皮肤中的胶原合成相比,严重光损伤皮肤中的胶原合成减少(《新英格兰医学杂志》329:530, 1993)。我们推测,严重受损皮肤中的成纤维细胞与完整胶原的相互作用较少,结果是机械张力降低。胶原合成减少(据推测)就是其结果。

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