Type V and VI collagen for cohesion of dermal fibrillar structures.

T Kobayasi, T Karlsmark
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Abstract

Type V and VI collagen were capable to joint each other and with type I and IV collagen, as well as mucopolysaccharides. This capability suggested that these collagens function for cohesion of fibrillar tissue components of dermis. This study demonstrated the locality of these types of collagen in dermis. Fresh specimens of normal skin were fixed in 2% paraformaldehyde in phosphate-buffered saline, overnight. Besides, in order to loosen the twist of collagen fibril, some pieces of the skin specimens were treated by citrate buffer pH 3.0, prior to fixation. The specimens were embedded in Technovit 4100 and the ultrathin sections were stained by antibody to type V collagen and followed by antibody to type I, III, IV and VI collagen. The immune reactant was visualized by gold particles for electron microscopic observation. Type V and VI collagen formed networks in dermis and jointed to collagen fibrils, elastic fibre and basal lamina. Type V collagen was found inside collagen fibrils, broad elastic fibres and junctions. Dermo-epidermal junction showed type V collagen on the dermal aspects of basal lamina and at the sites where anchoring filaments joint to basal lamina, while in junction of mesenchymal tissues, no precise structural components for type V collagen were identified. Type VI collagen wove with type V collagen in dermis and associated with mucopolysaccharides. In conclusion, type V collagen formed networks in dermal interfibrillar space and participated in assembling collagen fibrils and forming broad elastic fibres. Epithelial and mesenchymal cells cohered to the underlying dermal matrix in the junction by type V collagen. Type VI collagen interwove with type V collagen in the interfibrous space and associated with mucopolysaccharides. Types V and VI collagen preserved architecture of dermal matrix.

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V型和VI型胶原用于真皮纤维结构的内聚。
V型和VI型胶原能够相互结合,也能与I型和IV型胶原以及粘多糖结合。这种能力表明这些胶原蛋白具有真皮纤维组织成分内聚的功能。本研究证实了这些类型的胶原蛋白在真皮中的位置。新鲜的正常皮肤标本被固定在2%多聚甲醛的磷酸盐缓冲盐水中过夜。此外,为了放松胶原纤维的扭曲,部分皮肤标本在固定前用pH 3.0的柠檬酸缓冲液处理。将标本包埋于Technovit 4100中,超薄切片分别用V型胶原抗体和I、III、IV、VI型胶原抗体进行染色。免疫反应物用金颗粒显像,电镜观察。V型和VI型胶原在真皮层形成网状,并与胶原原纤维、弹性纤维和基底层连接。V型胶原蛋白存在于胶原原纤维、宽弹性纤维和连接处。真皮-表皮交界处在基底层的真皮方面和锚定丝与基底层的连接处显示V型胶原,而在间充质组织交界处,没有确定V型胶原的精确结构成分。VI型胶原与V型胶原交织在真皮中,并与粘多糖相关。综上所述,V型胶原在真皮纤维间隙形成网状结构,参与胶原原纤维的聚集和宽弹性纤维的形成。上皮细胞和间充质细胞通过V型胶原在连接处与真皮基质结合。VI型胶原与V型胶原在纤维间隙交织,并与粘多糖相关。V型和VI型胶原保留了真皮基质的结构。
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