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人牙龈成纤维细胞收缩的胶原蛋白和纤维蛋白凝胶的形态计量学研究;与真皮成纤维细胞的比较。

Morphometric studies of collagen and fibrin lattices contracted by human gingival fibroblasts; comparison with dermal fibroblasts.

作者信息

Lorimier S, Hornebeck W, Godeau G, Pellat B, Gillery P, Maquart F X, Laurent-Maquin D

机构信息

Centre d'Etudes des Biomatériaux et Interfaces, EA 2068, IFR 53 Biomolécules, UFR d'Odontologie, Reims, France.

出版信息

J Dent Res. 1998 Sep;77(9):1717-29. doi: 10.1177/00220345980770090801.

Abstract

Cell shape variations and substratum re-organization during contraction of floating collagen and fibrin lattices seeded with human gingival fibroblasts were determined by computerized image analysis of light and scanning electron microscopic images. Data were compared with those obtained with lattices populated with human dermal fibroblasts. The extent of collagen lattice contraction was similar with both cell types, resulting in a two-fold decrease in the area fractions occupied by collagen fibers. Fibroblasts exhibited a rounded shape (form factors equal to 0.8 and 0.7 for gingival and dermal cells, respectively) at day 1 of culture; they possessed a more elongated appearance (with form factors equal to 0.3 and 0.15 for gingival and dermal cells, respectively) at day 7. Continuous (gingival) and discontinuous (dermal) layers of cells were evidenced at the cortex of lattices. Contractions were associated with a significant reduction of the diameters of collagen fibers. Re-organization of substratum, as analyzed by the "Rose of Directions" technique, was evidenced only at the vicinity of filopodia where fibers ran parallel to these protrusions. Several lysed matrix cavities were observed when fibrin lattices were populated with gingival but not dermal fibroblasts at day 5 of culture. Although cells in fibrin lattices exhibited morphometric parameters comparable with those in collagen lattices, no fibroblast layers could be demonstrated at gel peripheries. Fibrin matrices consisted of an isotropic network of entangled fibrin filaments from the start of culture, and only a slight reduction of the diameters of fibrin fibers could be evidenced in dermal fibroblast-populated lattices. Fibrinolysis at the vicinity of gingival fibroblasts led to an entire re-organization of substratum toward the formation of larger fibers. The differential behavior of gingival vs. dermal fibroblasts inside fibrin but not collagen matrices could therefore partly explain the increased rate of remodeling of gingiva as compared with dermis.

摘要

通过对光学显微镜和扫描电子显微镜图像进行计算机图像分析,确定了接种人牙龈成纤维细胞的漂浮胶原和纤维蛋白晶格收缩过程中的细胞形态变化和基质重组。将数据与接种人皮肤成纤维细胞的晶格所获得的数据进行比较。两种细胞类型导致的胶原晶格收缩程度相似,胶原纤维所占面积分数减少了两倍。培养第1天时,成纤维细胞呈圆形(牙龈细胞和皮肤细胞的形状因子分别等于0.8和0.7);培养第7天时,它们的外观更细长(牙龈细胞和皮肤细胞的形状因子分别等于0.3和0.15)。在晶格皮层可观察到连续(牙龈)和不连续(皮肤)的细胞层。收缩与胶原纤维直径的显著减小有关。通过“方向玫瑰图”技术分析,基质重组仅在丝状伪足附近得到证实,此处纤维与这些突起平行排列。在培养第5天时,接种牙龈成纤维细胞的纤维蛋白晶格中观察到几个溶解的基质腔,而接种皮肤成纤维细胞的纤维蛋白晶格中未观察到。尽管纤维蛋白晶格中的细胞表现出与胶原晶格中细胞相当的形态学参数,但在凝胶周边未发现成纤维细胞层。从培养开始,纤维蛋白基质就由缠结的纤维蛋白丝的各向同性网络组成,在接种皮肤成纤维细胞的晶格中,仅能证明纤维蛋白纤维直径略有减小。牙龈成纤维细胞附近的纤维蛋白溶解导致基质完全重组,形成更大的纤维。因此,牙龈成纤维细胞与皮肤成纤维细胞在纤维蛋白而非胶原基质中的不同行为,可能部分解释了牙龈与真皮相比重塑速率增加的原因。

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