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角质形成细胞表达原纤维蛋白并组装微原纤维:对真皮基质组织的影响。

Keratinocytes express fibrillin and assemble microfibrils: implications for dermal matrix organization.

作者信息

Haynes S L, Shuttleworth C A, Kielty C M

机构信息

School of Biological Sciences, University of Manchester, U.K.

出版信息

Br J Dermatol. 1997 Jul;137(1):17-23.


DOI:
PMID:9274620
Abstract

Fibrillin-containing microfibrils are key architectural structures of the upper dermis and integral components of the dermal elastic fibre network. Microfibril bundles intercalate into the dermal-epithelial junction and provide an elastic connection between the dermal elastic fibre network and the epidermis. Immunohistochemical studies have suggested that they are laid down both at the dermal-epithelial junction and in the deep dermis. While dermal fibroblasts are responsible for deposition of the elastin and microfibrillar components that comprise the elastic fibres of the deep dermis, the cellular origin of the microfibril bundles that extrude from the dermal-epithelial junction is not well defined. We have used fresh tissues, freshly isolated epidermis and primary human and porcine keratinocyte cultures to investigate the possibility that keratinocytes are responsible for deposition of these microfibrils. We have shown that keratinocytes in vivo and in vitro synthesize both fibrillin-1 and fibrillin-2, and assemble beaded microfibrils concurrently with expression of basement membrane collagen. These observations suggest that keratinocytes co-ordinate the secretion, deposition and assembly of these distinct structural elements of the dermal matrix, and have important implications for skin remodelling.

摘要

含原纤维的微原纤维是真皮上层的关键结构框架,也是真皮弹性纤维网络的重要组成部分。微原纤维束插入真皮 - 上皮交界处,在真皮弹性纤维网络和表皮之间提供弹性连接。免疫组织化学研究表明,它们在真皮 - 上皮交界处和真皮深层均有形成。虽然真皮成纤维细胞负责合成构成真皮深层弹性纤维的弹性蛋白和微原纤维成分,但从真皮 - 上皮交界处伸出的微原纤维束的细胞来源尚不清楚。我们使用新鲜组织、新鲜分离的表皮以及原代人角质形成细胞和猪角质形成细胞培养物,来研究角质形成细胞是否负责这些微原纤维沉积的可能性。我们已经表明,体内和体外的角质形成细胞都能合成原纤维蛋白 -1 和原纤维蛋白 -2,并在表达基底膜胶原蛋白的同时组装成串珠状微原纤维。这些观察结果表明,角质形成细胞协调真皮基质这些不同结构成分的分泌、沉积和组装,对皮肤重塑具有重要意义。

相似文献

[1]
Keratinocytes express fibrillin and assemble microfibrils: implications for dermal matrix organization.

Br J Dermatol. 1997-7

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[3]
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[6]
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[7]
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[8]
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