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正常人牙槽黏膜中V型和VI型胶原蛋白的分布:一项使用超薄冰冻切片的免疫电子显微镜研究

Distribution of collagens type V and VI in the normal human alveolar mucosa: an immunoelectronmicroscopic study using ultrathin frozen sections.

作者信息

Rabanus J P, Gelderblom H R, Schuppan D, Becker J

机构信息

Department of Oral Surgery, Faculty of Dentistry, Free University of Berlin, Germany.

出版信息

J Periodontal Res. 1991 May;26(3 Pt 1):138-43. doi: 10.1111/j.1600-0765.1991.tb01637.x.

Abstract

The ultrastructural localization of collagens type V and VI in normal human gingival mucosa was investigated by immunoelectron microscopy. Twenty biopsies were fixed in dimethylsuberimidate and shock-frozen in slush nitrogen. Collagen type V was mainly located to meshworks of uniform nonstriated microfibrils of 12 to 20 nm width, which preferentially appeared in larger spaces between cross-striated major collagen fibrils. Occasionally single microfibrils of collagen type V fanned out from the ends of major collagen fibrils, which may indicate a role as a core fibril. Collagen type V was not found in the subepithelial basement membrane and the immediately adjacent stroma. Collagen type VI was detected in a loose reticular network of unbanded microfilaments that were morphologically distinguishable by knoblike protrusions every 100-110 nm. These microfilaments were found in the vicinity, but not as an intrinsic component, of the subepithelial basement membrane. Single filaments of collagen type VI filaments appeared to form bridges between neighboring cross-striated major collagen fibrils, suggesting an interconnecting role for this collagen type. The method presented appears to be excellently suited to study the normal and pathological supramolecular organization of the oral extracellular matrix.

摘要

通过免疫电子显微镜研究了正常人牙龈黏膜中V型和VI型胶原蛋白的超微结构定位。20份活检组织用亚胺基二甲酯固定,在液氮中速冻。V型胶原蛋白主要定位于宽度为12至20纳米的均匀无横纹微原纤维网络,这些微原纤维优先出现在横纹状主要胶原纤维之间的较大间隙中。偶尔,V型胶原蛋白的单个微原纤维从主要胶原纤维的末端呈扇形散开,这可能表明其作为核心原纤维的作用。在上皮下基底膜和紧邻的基质中未发现V型胶原蛋白。在无带微丝的疏松网状网络中检测到VI型胶原蛋白,这些微丝在形态上可通过每100 - 110纳米的球状突起区分。这些微丝出现在上皮下基底膜附近,但不是其固有成分。VI型胶原纤维的单丝似乎在相邻的横纹状主要胶原纤维之间形成桥梁,表明该型胶原蛋白具有相互连接的作用。所介绍的方法似乎非常适合研究口腔细胞外基质的正常和病理超分子组织。

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